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Millennium Telescope Meeting 2 Requirements and Design Goals
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Millennium Telescope Meeting 2 Requirements and Design Goals.

Apr 01, 2015

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Elissa Popple
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Page 1: Millennium Telescope Meeting 2 Requirements and Design Goals.

Millennium Telescope

Meeting 2

Requirements and Design Goals

Page 2: Millennium Telescope Meeting 2 Requirements and Design Goals.

Requirements...

Page 3: Millennium Telescope Meeting 2 Requirements and Design Goals.

Portability

The telescope unlikely to be used in dome or on balcony- so must be portable. This also implies it must be de-mountable and easily assembled.

Page 4: Millennium Telescope Meeting 2 Requirements and Design Goals.

Mirror

The mirror spec is fixed; the cell must be designed to support the 'thin' 19" mirror without significantly degrading optical performance.

Page 5: Millennium Telescope Meeting 2 Requirements and Design Goals.

Height

Primarily fixed by mirror focal length and diameter- otherwise the lower the better, minimises the climb up a ladder. Will be approx 7 feet.

Page 6: Millennium Telescope Meeting 2 Requirements and Design Goals.

Footprint

The disassembled telescope should fit into a hatchback- e.g. Golf or Focus.

Must be easily stored at OASI e.g. in storage area at bottom of dome steps.

Page 7: Millennium Telescope Meeting 2 Requirements and Design Goals.

Weight

All de-mounted components should be capable of unaided lifting and manoeuvring by two (unexceptional) persons; imposes an upper limit of about 60 pounds per component.

Page 8: Millennium Telescope Meeting 2 Requirements and Design Goals.

Open Structure

Avoids fans and promotes rapid cooling of the primary. Less prone to wind vibration. Minimises weight.

Page 9: Millennium Telescope Meeting 2 Requirements and Design Goals.

Struts/Truss-Tubes

Short enough to fit into a hatchback; look into multi-section struts; struts cannot exceed a certain length (subject to design).

Can we use 6 struts rather than 8; this simplifies telescope balance and reduces weight?

Page 10: Millennium Telescope Meeting 2 Requirements and Design Goals.

Stiffness

Minimise flexure with rigid structures.

Page 11: Millennium Telescope Meeting 2 Requirements and Design Goals.

Rocker/Mirror Box

Rocker may be more elegant, simpler to make and achieve weight targets - but design is more speculative.

Mirror box is proven design but much heavier- and may not meet design requirements.

Page 12: Millennium Telescope Meeting 2 Requirements and Design Goals.

Secondary Cage

Keep as light as possible- consistent with mechanical rigidity.

Design should consider (optically) best available eyepieces- probably 2".

Secondary mirror pre-alignment should be designed-in.

Design needs to be safe for transportation.

Page 13: Millennium Telescope Meeting 2 Requirements and Design Goals.

Optical System

Mechanical assembly must be repeatable such that telescope is approximately pre-aligned.

Telescope must be capable of easy remote-site fine-alignment.

Page 14: Millennium Telescope Meeting 2 Requirements and Design Goals.

Baffling

Upper cage and primary mirror baffles need to be de-mountable and easily installed.

Page 15: Millennium Telescope Meeting 2 Requirements and Design Goals.

Drive System

Although initially envisioned to be manually tracking, it would be highly desirable to be capable of upgrading to automatic tracking, at a later date.

Page 16: Millennium Telescope Meeting 2 Requirements and Design Goals.

Economy of Materials

Minimise costs by keeping material weight down.

Use plywood + steel where possible and standard components if available.

Page 17: Millennium Telescope Meeting 2 Requirements and Design Goals.

Economy of Machining

Design as many non-standard components as possible that can be produced "in-house". Consider use of plywood, for rocker or mirror box, etc; and Martin's metal working expertise for other components.

Page 18: Millennium Telescope Meeting 2 Requirements and Design Goals.

FAS Website Trawl...

Page 19: Millennium Telescope Meeting 2 Requirements and Design Goals.

John Cross, Bristol AS14” F/4.5 Dobsonian

Page 20: Millennium Telescope Meeting 2 Requirements and Design Goals.

Jim Brace, Wadhurst AS18” F/5 Dobsonian

Page 21: Millennium Telescope Meeting 2 Requirements and Design Goals.

Gary Poyner, Heart of Eng AS18” F/4.4 Dobsonian

Page 22: Millennium Telescope Meeting 2 Requirements and Design Goals.

Wadhurst AS, Norfolk

Page 23: Millennium Telescope Meeting 2 Requirements and Design Goals.

Other Designs…Alternative materials

Page 24: Millennium Telescope Meeting 2 Requirements and Design Goals.

Gary Wolanski, USA16” F/5 Dobsonian, 40 Pound, all-metal construction

Page 25: Millennium Telescope Meeting 2 Requirements and Design Goals.

Gary Wolanski, USA16” F/5 Dobsonian, 40 Pound, all-metal construction

Page 26: Millennium Telescope Meeting 2 Requirements and Design Goals.

Gary Wolanski, USA16” F/5 Dobsonian, 40 Pound, all-metal construction

Page 27: Millennium Telescope Meeting 2 Requirements and Design Goals.

Charlie Wicks, USA20” F/4.5 Dobsonian - all-metal construction

Page 28: Millennium Telescope Meeting 2 Requirements and Design Goals.

Jaques Civetta, France465mm Dobsonian, fibreglass construction

Page 29: Millennium Telescope Meeting 2 Requirements and Design Goals.

Doug Tanaka, USA12.5” F/6 String-Truss Dobsonian

Page 30: Millennium Telescope Meeting 2 Requirements and Design Goals.

Michael Koch, Germany8” F/4 “Folding Ruler” Airline Travel Scope