ALOHA Cabled Observatory Will use components from the earlier ALOHA- MARS Mooring project at APL-UW...

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ALOHA Cabled Observatory • Will use components from the earlier ALOHA-MARS Mooring project at APL-UW • Seafloor secondary node • Bottom instrument package with science isntrument interface module (SIIM) and sensors (CTDO2, BB2F) • Cables and connectors • Underwater video camera

Transcript of ALOHA Cabled Observatory Will use components from the earlier ALOHA- MARS Mooring project at APL-UW...

Page 1: ALOHA Cabled Observatory Will use components from the earlier ALOHA- MARS Mooring project at APL-UW Seafloor secondary node Bottom instrument package with.

ALOHA Cabled Observatory

• Will use components from the earlier ALOHA-MARS Mooring project at APL-UW

• Seafloor secondary node• Bottom instrument package with science

isntrument interface module (SIIM) and sensors (CTDO2, BB2F)

• Cables and connectors• Underwater video camera

Page 2: ALOHA Cabled Observatory Will use components from the earlier ALOHA- MARS Mooring project at APL-UW Seafloor secondary node Bottom instrument package with.

ALOHA-MARS Mooring

• Implemented only on short scale – 30 m high in Puget Sound

• For ACO – use seafloor secondary node and bottom instrument package

• And cables

Bottom instrument packageBottom instrument package

Secondary node

Page 3: ALOHA Cabled Observatory Will use components from the earlier ALOHA- MARS Mooring project at APL-UW Seafloor secondary node Bottom instrument package with.

Seafloor bottom instrument package

• Here set up to goat base of mooring, on mooring line

Page 4: ALOHA Cabled Observatory Will use components from the earlier ALOHA- MARS Mooring project at APL-UW Seafloor secondary node Bottom instrument package with.

AMM Secondary seafloor node

• Test tank at MBARI

• Orange is syntactic foam to make near neutrally buoyant to facilitate ROV moving it on seafloor

• 5 ROV-mate Receptacle cables

Page 5: ALOHA Cabled Observatory Will use components from the earlier ALOHA- MARS Mooring project at APL-UW Seafloor secondary node Bottom instrument package with.

AMM Secondary node and SIIM

• Without syntactic foam (simple deployment Puget Sound

• Bottom instrument package/SIIM hard connected behind

Page 6: ALOHA Cabled Observatory Will use components from the earlier ALOHA- MARS Mooring project at APL-UW Seafloor secondary node Bottom instrument package with.

Bottom instrument package

• SIIM (left)• 2 CTDO2

• 1 BB2f fluorometer/backscatter (black unit)

• Syntactic foam to get near neutral buoyancy

• Green Falmut cable connecting to secondary node

Page 7: ALOHA Cabled Observatory Will use components from the earlier ALOHA- MARS Mooring project at APL-UW Seafloor secondary node Bottom instrument package with.

Science Instrument Interface Module (SIIM)

• 8 channels for sensors

• Industrial ethernet• One ROV plug cable• Titanium pressure

case 6000 m

Page 8: ALOHA Cabled Observatory Will use components from the earlier ALOHA- MARS Mooring project at APL-UW Seafloor secondary node Bottom instrument package with.

Electro-optical (EO) converters

• For seafloor cable, 1.5 km here (black)

• Converts electrical Ethernet to optical for long run, and back

• Runs off 48 V from local node

• Has a ROV-mate plug cable at each end