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9 november 2015 Web application for simulation of Secchi depth and Kpar UITZICHT DSD 2015 Pascal Boderie
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DSD-INT 2015 - Breakout session quick assment tool for under water light - Pascal Boderie

Apr 11, 2017

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Page 1: DSD-INT 2015 - Breakout session quick assment tool for under water light - Pascal Boderie

9 november 2015

Web application for simulation of

Secchi depth and Kpar UITZICHT

DSD 2015

Pascal Boderie

Page 2: DSD-INT 2015 - Breakout session quick assment tool for under water light - Pascal Boderie

Light under water

Importance of light and visibility (Secchi depth)

• ecology (primary production)

• photolysis – decay of pollutants by uv light

• water temperature – influx efficiency (ir) and visibility

• public

• Modelling light is quite complex

• many definitions - radiance (source) en irradiance (receiving)

• IOP en AOP

• Light reflection

• PAR (400-800 nm) not equal to human eye sensitivity

9 november 2015

Page 3: DSD-INT 2015 - Breakout session quick assment tool for under water light - Pascal Boderie

Light under water

Inherent Optical Property – independent of the light field:

• Scatter coefficient, b

• Absorption coefficient, a

• Beam Attenuation, c ( sum van a’s en b’s)

Apparent Optical Properties – depending on

light field

• Secchi disk depth (SD, m)

• Irradiance attenuation coefficient (Kd, 1/m)

9 november 2015

Page 4: DSD-INT 2015 - Breakout session quick assment tool for under water light - Pascal Boderie

Ecological key factors 2 - Light

9 november 2015

Page 5: DSD-INT 2015 - Breakout session quick assment tool for under water light - Pascal Boderie

Institute for

Environmental Studies (IVM)

5 Helsinki

RS summer

school

Optical active water quality parameters

Chlorophyll Pigments (mg/m3) CHL

Total Suspended Matter (g/m3) TSM

Inorganic fraction of TSM (g/m3) ISM

Coloured Dissolved Organic Matter CDOM

Water plants (macrophytes) floating - submerged

Bottom (depth: m)

Secchi Depth (m) SD

Page 6: DSD-INT 2015 - Breakout session quick assment tool for under water light - Pascal Boderie

6

*

*

*

C C

NAP NAP

y y

a a Chla

a a NAP

a a CDOM

*

/2

2 ( )sin( ) d

NAP NAP

b

b b NAP

b b b B

wavelength a*_H2O b*_H2O a*_CHL b*_CHL a*_NAP b*_NAP a*_CD

OM

413 0.01 0.007 0.023 0.005 0.035 0.43 1.28

442 0.01 0.005 0.025 0.005 0.026 0.41 0.98

490 0.02 0.003 0.015 0.018 0.017 0.38 0.64

510 0.03 0.003 0.012 0.019 0.014 0.37 0.54

560 0.07 0.002 0.006 0.024 0.011 0.35 0.34

617 0.28 0.001 0.006 0.018 0.008 0.32 0.2

665 0.4 0.001 0.011 0.008 0.006 0.31 0.13

681 0.43 0.001 0.009 0.013 0.007 0.3 0.12

708 0.71 0.001 0.002 0.033 0.005 0.29 0.09

PAR (400-700) 0.035 0.005 0.011 0.016 0.011 0.35 0.34

mm 1/m 1/m mg/m2 mg/m2 g/m2 g/m2 1/m

Absorption & scattering

B~0.03

Page 7: DSD-INT 2015 - Breakout session quick assment tool for under water light - Pascal Boderie
Page 8: DSD-INT 2015 - Breakout session quick assment tool for under water light - Pascal Boderie

Publication of Buiteveld (1995)

9 november 2015

Page 9: DSD-INT 2015 - Breakout session quick assment tool for under water light - Pascal Boderie

Institute for Environmental Studies (IVM) 10 Helsinki RS summer school

Reference books

Page 10: DSD-INT 2015 - Breakout session quick assment tool for under water light - Pascal Boderie

9 november 2015

Uitzicht publication (Buiteveld, 1995)

Page 11: DSD-INT 2015 - Breakout session quick assment tool for under water light - Pascal Boderie

Technical aspects

• Original Delwaq FORTRAN code to Javascript

• HTML with style-sheet

• GUI in Javascript

• All code is readable (ascii files)

• Runs on any (?) browser (IE > 8)

• “Light” easy to share

• Works on tablet and mobile phone

web demo http://www.andriks.net/uitzicht/nl/uitzicht.html

9 november 2015