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MISSOURI RIVER INNOVATIVE BANK STABILIZATION & AQUATIC & RIPARIAN HABITAT ENHANCEMENT @ LEWIS & CLARK REGIONAL WATER SYSTEM, VERMILLION, SD.
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MISSOURI RIVER INNOVATIVE BANK STABILIZATION & AQUATIC & RIPARIAN HABITAT ENHANCEMENT @ LEWIS & CLARK REGIONAL WATER SYSTEM, VERMILLION, SD.

Jan 13, 2016

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  • MISSOURI RIVER INNOVATIVE BANK STABILIZATION & AQUATIC & RIPARIAN HABITAT ENHANCEMENT @ LEWIS & CLARK REGIONAL WATER SYSTEM, VERMILLION, SD.

  • Aerial shot fall 2007. Looking US @ L & C project, approximately one mile between white arrows.

  • Our downstream key ties into the upstream section of a buried stone revetment for the highway bridge

  • Discussion of finer points inside & on-site.PRE-CON MEET-MISSOURI RIVER@L & C-TERRY STOLTENOW-11/1/07

  • CONCEPTUALLY Start with a standard bank protection plan that is well understood, well designed, & time tested (low degree of risk) Add to this the hydraulically rough & environmentally desirable Extreme Locked Logs (113) plus 49,000 unrooted willow pole plantings within & through the riprap, & 59,300 rooted stock plants for the lower, mid, & upper bank areas. Then cover (choke) all exposed stone with soil & seed !!

  • Stabilization / habitat cross-section from HDR, Inc.CONSTRUCTION -MISSOURI RIVER @ L & C

  • Rock box keeps rock clean & speeds production.CONSTRUCTION-MISSOURI RIVER@L & C-DERRICK-NOV 13, 2007

  • Tom Powell said they would wear it out, he was right!CONSTRUCTION-MISSOURI RIVER @ L & C-TERRY STOLTENOW-1-11-2008

  • MID-PROJECT KEYS {Straight trench perpendicular to high flow vectors, place willow poles on both sides in sloped bank area, fill with a 10 ft section of graded stone, backfill & compact 3 ft of soil, then seed}

  • Filling the key from the land side working toward the river.CONSTRUCTION-MISSOURI RIVER@L & C-TERRY STOLTENOW-11/29/07

  • Looking at Key #6, now stone filled & soil backfilled.CONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-Dec 13, 2007

  • LONGITUDINAL FILL STONE TOE PROTECTION {LFSTP}{Self-adjusting & self-filtering stone. Minimum 10 ft wide by 3 ft thick. Contractor placed 22,986 tons of stone for entire launchable toe.} (Amounts in actual construction have varied from 3.2 to 4.6 tons/ft. in concave & straight sections, to 6.3 to 8.4 tons/per ft. at convex areas (juts).

  • Looking US. 10 ft wide stone toe looking good!CONSTRUCTION-MISSOURI RIVER @ L & C-TERRY STOLTENOW-11/8/07

  • Looking US. Smoothing choke soil with the Bobcat.CONSTRUCTION-MISSOURI RIVER @ L & C-TERRY STOLTENOW-12/5/07

  • INSTALLATION OF THE EXTREME LOCKED LOGS

  • BANK CROSS-SECTION FROM HDR., INCLooking US at Station 11+00Self-Adjusting LFSTPLocked Log

  • FUZZY EXTREME LOCKED LOGCedar tree with lots of branches

  • Looking US. A cedar Fuzzy Extreme Locked LogCONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-NOV 15, 2007

  • Looking US. Scraping branches off of the lower 15 ft of the Fuzzy Extreme Locked Log so stone to trunk contact is made, & the Locked Log is truly locked in place.CONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-NOV 15, 2007

  • Looking US. Fuzzy Extreme Locked Log is locked in placeCONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-NOV 15, 2007

  • STONE TOE PROTECTION WITH INTEGRATED EXTREME LOCKED LOGS

  • Looking US. Note calm water between Locked Logs. CONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-NOV 15, 2007LFSTP 10 ft wide

  • Looking US. Soil choked toe stone in foreground, US stone not choked yet. Specs call for a minimum of 6 inches of soil over stone, contractor is placing one ft of soil to allow for settling. More soil is better.CONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-DEC 11, 2007

  • Looking US. Note slack water DS of all Locked Logs CONSTRUCTION -MISSOURI RIVER @ L & C-DERRICK-NOV 13, 2007

  • EXTREME LOCKED LOGS CAN BE RETROFITTED INTO EXISTING PROJECTS

  • Looking DS. Irregular bankline mimics natural shoreCONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-NOV 15, 2007

  • Looking US. Turbulence off ends of ExLL with flat water DS. Note uneven shore & soil choked stone.CONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-NOV 15, 2007

  • THE ENVIRONMENTAL AND HYDRAULIC ATTRIBUTES GO HAND-IN-HAND ON THIS PROJECT

  • Looking US @ self-adjusting toe stone & Extreme Locked Logs, natural bank US.CONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-NOV 15, 2007

  • EXTREME LOCKED LOGS WITH ICE

  • Looking DS at ice buildup US of natural jam.CONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-DEC 11, 2007

  • ICE MANAGEMENT FOR STABILIZATION/RESTORATION PROJECTSIncrease roughness of the bank and near-bank aquatic area!!!Ice will form first in slow waterIce will be thickest in the slower waterNext the entire stream has an ice coverThen the ice-out occursThe thickest ice near the bank will stay put so that plants are not sheared & smaller stones are not plucked

  • Ice surrounding ExLL fends off moving ice floes.CONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-DEC 11, 2007

  • Looking DS. Different thickness of ice show current directions and different velocities.CONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-DEC 11, 2007

  • Looking DS. Natural jam with ExLL US & DS.CONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-DEC 11, 2007

  • Looking DS. Natural jam with ExLL US & DS.CONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-DEC 11, 2007

  • Looking US. Close-up of ice surrounding ExLL.CONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-DEC 11, 2007

  • PLANT PLANTS WITH VERY LARGE YELLOW MACHINES

  • BANK CROSS-SECTION FROM HDR., INCLooking US at Station 11+00Self-Adjusting LFSTPRiprap blanket on 3 to 1 slope, 3 ft thick, with 49,000 integrated willow pole plantings in 4 rows Locked Log

  • Terry Stoltenow, construction inspector with HDR, Inc. with 6-7 ft long bundled willowsCONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-DEC 11, 2007

  • MISSOURI RIVER @ LEWIS & CLARK11271125112611301129112815 FT9 FTJune-Sept 2002-2008 24K= 1124.5 June-Sept 2008 26K= 1124.7 Target nav. stage 31K= 1125.3 June-Sept 1967-2004 34K= 1125.5 Height of toe stone 28K=1125.0 Field analysis-willows grow well from +3 to +7 ft above the 1122 ft flow=1125 to 1129Vadose zone-field analysis shows 3 ft above stage 1124.5 to 1127.5Use this oneBasal ends of willows should be at ele. 1125Min. 6 inches soil3 on 1 slopeRiver flow elevations during growing season4 on 1 slope

  • MISSOURI RIVER @ LEWIS & CLARK11251130Basal ends of willows should be at ele. 11253 on 1 slope4 on 1 slopeFirst two rows of willows are 6-7 ft longUphill two rows willows are 9 ft longSoil choke

  • THE BUCKET TEETH TICKLER SLIT TRENCH METHOD

  • Pull bucket back 8, lean willow poles against stone.CONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-Dec 13, 2007

  • Looking US. All 4 rows of willowsCONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-Dec 12, 2007

  • Looking US at willows & stone.CONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-DEC 11, 2007

  • All 4 rows of willow integrated into riprap & soil chokedCONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-Dec 12, 2007

  • ALL CONSTRUCTION COMPLETE EXCEPT FOR INSTALLATION OF THE UPPER BANK ROOTED-STOCK PLANTINGS(and the small area where the dredge boat is moored)

  • Looking DS. Ice jam has raised river at toe. CONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-Feb 25, 2008

  • Looking US. River frozen, some tops of Locked Logs visible, pole plantings, & upper bank sloped to 4 on 1.CONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-Feb 25, 2008

  • Looking US. Nature is curvaceous, us too !!CONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-Feb 25, 2008Edge of stone toe

  • Looking US. Rough grade slows downslope runoff.CONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-Feb 25, 2008

  • Looking downhill @ willow pole plantings.CONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-Feb 25, 2008

  • Looking US. Keyways (foreground) were not planted with willow poles but can be vegetated in the spring with rooted-stock willows, cottonwoods & dogwoods.CONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-Feb 25, 2008

  • PLANT PLANTS WITH A MUCH SMALLER MACHINE59,300 bare root plants {even amount of cottonwood & red osier dogwood} were installed on a 4 to 1 slope from elevation 1130 up to top of bank during March 26 - May 4, 2008 .

  • BANK CROSS-SECTION FROM HDR., INCBank sloped at 4 to 1 with 59,300 rooted-stock plants in anywhere from 6 to 16 rows (dependant on bank height).

  • Ancient two seat single row planter was used to plant 8,000 rooted stock plants per day, finished 4/3/2008CONSTRUCTION-MISSOURI RIVER@L & C-TERRY STOLTENOW-4/3/08

  • Lower bank was seeded by hand. Seed was hand raked in. All areas were mulched with straw (one large round bale for every 17,500 sq. ft)CONSTRUCTION-MISSOURI RIVER@L & C-TERRY STOLTENOW-4/24/08

  • 5 ft wide fluffy seed planter was used for the upper bank (uphill from the rows of willows), seeding completed 4/28/2008CONSTRUCTION-MISSOURI RIVER@L & C-TERRY STOLTENOW-6/12/08

  • PROJECT COMPLETE APRIL 28, 2008 3 MONTHS AHEAD OF SCHEDULE

  • Toms crew was installing 2,000 tons of stone & 2,000 willows a day!!! That is a dump truck every 3 minutes!!CONSTRUCTION-MISSOURI RIVER @ L & C-DERRICK-Nov 16, 2007

  • AERIAL PHOTOGRAPHS 3 MONTHS AFTER PROJECT COMPLETION {LOOKING US TO DS} August 1, 2008

  • From US looking DS @ our project & highway bridge3 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-1-2008

  • Close-up looking DS @ L & C project & highway bridge.3 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-1-2008

  • 3 MONTHS AFTER PROJECT COMPLETIONPhotos by Derrick August 1, 2008

  • Looking US @ 4 rows of willows 3 months after planting.3 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-1-2008

  • Close-up look @ rows of willows.3 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-1-2008

  • Close-up of willow, typical growth=22 to 54 during first 3 months3 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-1-2008

  • Mid to upper bank plantings. Cottonwoods 22 to 48 tall, Red Osier Dogwoods 16 to 31 tall. 3 ft between rows, anywhere from 12 to 18 spacing between plants in a row.3 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-1-2008

  • Red Osier Dogwood on mid & upper bank is 16 to 31 tall.3 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-1-2008

  • Looking DS @ some minor gullying. This should self-heal.3 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-1-2008

  • From upper section of project looking DS toward bridge. Willow, cottonwood & dogwood growth 3 months after planting is robust3 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-1-2008

  • Looking US @ Locked Logs (some are underwater)3 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-1-2008

  • Looking US @ Locked Logs. None of the 113 logs have been lost!!3 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-1-2008

  • Looking US @ uneven bankline, plantings & Extreme Locked Logs3 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-1-2008

  • THIS PROJECT WON THE DEPARTMENT OF THE INTERIORS PARTNERS IN CONSERVATION AWARD IN 2009

  • MONTHS AFTER PROJECT COMPLETION(1.5 GROWING SEASONS)Photos by Derrick AUGUST 6, 2009

  • 16 MONTHS LATER-Looking DS @ willow & cottonwood growth (up to 6 ft for both). 16 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-09

  • 16 MONTHS LATER-Looking DS @ dense & robust willow growth. Coverage of ground is excellent here. 16 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-09

  • 16 MONTHS LATER-Looking US @ willow & cottonwood growth. Growth & cover on ground not as robust here. Soil choke has fallen into voids between rocks, but not a significant problem. 16 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-09

  • 16 MONTHS LATER-Looking uphill @ cottonwood (some up to 6 ft tall) & red osier dogwood growth. 16 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-09

  • 16 MONTHS LATER-Looking DS. Stage is about 1.5 ft higher than in 2008 (1 ft over the longitudinal fill stone toe). Many Locked Logs are underwater, none have been lost. 16 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-09

  • 16 MONTHS LATER-Looking US. River stage is 1.5 ft higher than summer 2008. Many Locked Logs submerged, all are still in place. Overall vegetation growth is very good to excellent. 16 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-09

  • 16 MONTHS LATER-Looking US. Overall project performance has been very good to excellent. Some wave action has removed soil choke from stone at edge of river, but looks no worse than summer 2008 condition. 16 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-09

  • 16 MONTHS LATER-Looking US. Close-up of willow growth. 16 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-09

  • 16 MONTHS LATER-Looking DS @ shoreline. 16 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-09

  • 16 MONTHS LATER-Cottonwood seedlings everywhere, including at waters edge. Good shallow edge habitat here. 16 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-09

  • IMMEDIATELY DOWNSTREAM OF THE PROJECT 16 MONTHS LATERPhotos by Derrick AUGUST 6, 2009

  • 16 MONTHS LATER-Looking DS @ the downstream key rock self-adjusting into the river. 16 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-09

  • 16 MONTHS LATER-Looking DS of the project. Note stone from the highway bridge key is launching into the river. The left bank at the bridge eroded a measured 300 ft in 10 years. 16 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-09

  • 28 MONTHS (2.5 GROWING SEASONS) AFTER PROJECT COMPLETIONPhotos by Derrick August 6, 2010

  • 28 MONTHS LATER-Looking US @ the project. All green, note erosion DS of the project 28 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-10

  • 28 MONTHS LATER-From the bridge, looking US @ the robust project & the erosion DS of the project. 28 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-10

  • 28 MONTHS LATER-From bridge, looking US @ robust project & at DS erosion 28 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-10

  • 28 MONTHS LATER-Looking DS @ bank erosion immediately DS of the project that stretches all the way to the bridge. 28 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-10

  • 28 MONTHS LATER-Looking DS @ cottonwoods, willows, & good grass coverage. Some variation in survivability & size, but overall great veg coverage over the entire project. Most willows are 40 to 60, with some up to 100 inches tall. Cottonwoods average 50 to 70 inches tall, some up to 114 tall. 28 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-10

  • 28 MONTHS LATER-Looking DS @ riverside willows. Note the large amount of volunteer cottonwood seedlings. 28 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-10

  • 28 MONTHS LATER-Looking US @ willows underwater. High flow has inundated the 10 ft wide launchable toe stone. 28 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-10

  • 28 MONTHS LATER-Looking US. Note slower water over the top of the Locked Logs, faster water further out in the river. 28 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-10

  • 28 MONTHS LATER-Looking US @ robust willow growth & slower water over the top of the Locked Logs. 28 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-10

  • 28 MONTHS LATER-Looking US @ close-up of robust willows, high water over toe stone, & uneven bankline. 28 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-10

  • 28 MONTHS LATER-Looking US. Overall view of vegetated project bank & existing forest (mature trees) 28 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-10

  • 28 MONTHS LATER-Looking US @ robust cottonwood growth 28 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-10

  • 28 MONTHS LATER-Looking uphill @ cottonwoods. 28 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-10

  • 28 MONTHS LATER-Trunk diameter of up to 1 inches found on some cottonwoods 28 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-10

  • 28 MONTHS LATER-Looking DS. In areas where planted veg was not robust, typically grasses were performing well. 28 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-10

  • 28 MONTHS LATER-Looking US @ cottonwoods. Bare soil areas as shown here are relatively rare. 28 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-10

  • 28 MONTHS LATER-Looking @ edge of water with inundated willows. Some floating wood & many frogs here. 28 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-10

  • 28 MONTHS LATER-Looking DS @ planted willows & many volunteer cottonwood seedlings in water. 28 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-10

  • 28 MONTHS LATER-Looking DS @ uneven bankline with willows in water. Most Locked Logs are under high water. Hundreds of frogs living along the river, many more than on an eroding bank. 28 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-10

  • 28 MONTHS LATER-Looking US @ riverside willows. Note flat water around Locked Logs @ US end of project. 28 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-10

  • 28 MONTHS LATER-Looking US @ willows over riprap. I expected them to be taller, most are 40 to 60, with some up to 100 inches tall. 28 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-10

  • 28 MONTHS LATER-In some areas insects are eating leaves off of the willows, many small branches were bare. 28 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-10

  • 28 MONTHS LATER-Looking US @ robust growth over a long reach of the project. Uneven bankline looks good 28 MONTHS LATER- MISSOURI R.@L & C-PIX BY DERRICK 8-6-10

  • Stream Project Functions: Fully functioning both hydraulically & environmentally. Multiple protection redundancy. Extreme Locked Logs move scour & thalweg away from attacked bank & should recruit SWD & LWD. Self-adjusting toe stone provides protection against scour. Riprap revetment provides direct armor protection. Vegetation roughness reduces near-bank flow velocities & invites deposition. Plant roots strengthen bank & bind soil.

  • HOW WILL THIS PROJECT POSITIVELY EFFECT THE RECOVERY OF THE MISSOURI RIVER?Provides a positive alternative & guide for large-scale bank stabilizationSoil choking, rooted stock plants, & Extreme Locked Logs & can be retro-fitted to many existing projectsProject monitoring will provide insight into hydraulic & environmental functions of the techniques usedLessons learned can be used to refine future river projects

  • CONSTRUCTION-MISSOURI RIVER@L & C-TERRY STOLTENOW-11/29/07

  • The end55 pounds of high-speed trouble at rest!! Cleophus Speed Elvis Derrick

    Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.Based on the interagency publication, Stream Corridor Restoration: Principles, Processes, and Practices, this introductory training covers:

    Stream corridor ecosystems and their components Ecological processes, structure & functions Characterization and analysis of stream corridors Development of a restoration plan Design, implementation, monitoring, and Integrated, iterative, adaptive, flexible approaches.