RV Southern Surveyor. program. voyagesummaryss04/2008

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- 3 - PART 1 INTRODUCTION

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2008 RV Southern Surveyor program voyagesummaryss04/2008

SS04/2008 Deep-Ocean Tsunami Detection Buoy Scheduled Maintenance Voyage period start (set sail) 20/03/2008 to 26/03/2008 end (return to port) Port of departure Hobart, Tasmania, Australia Port of return Hobart, Tasmania, Australia Responsible laboratory Australian Bureau of Meteorology Damir Lenc 700 Collins Street, Docklands VIC 3008, Australia Chief Scientist(s) Damir Lenc, Bureau of Meteorology Objectives and brief narrative of voyage Perform Scheduled Maintenance of the DART II Tsunameter deployed April 2007 and to also deploy a new experimental Tsunameter ETD (Easy To Deploy). Scientific Objectives The Australian Tsunami Warning System (ATWS) is a national effort between the Australian Bureau of Meteorology, Geoscience Australia and Emergency Management Australia to provide a comprehensive tsunami warning system capable of delivering timely and effective tsunami warnings to the Australian population by 2009. The generation of a tsunami from seismic activity cannot be fully determined in realtime due to a number of uncertainties in the fault movement. Observations of sea level will be used to verify if a tsunami has been generated and its extent of propagation. Loading of the Southern Surveyor was completed on March 20, 2008 after completion of the DART buoy dock-side assembly and testing. The Southern Surveyor departed on schedule on March 20, 2008 en route to the ETD deployment site. Upon arrival at the ETD station 55013 (46o 39 S, 161o 0.1 E), the crew and science team prepared the ETD for deployment, as this is a prototype system a tag line was connected to the ETD to maintain an emergency recovery, if the deployment did not go to plan. The ETD was successfully deployed and monitored, until the pressure sensor mounted in the anchor slowly descended to the ocean floor (approximately 40 minutes). As the anchor reached the ocean floor, the tag line was removed and the ship was released from station and proceeded to the next site, station 55401. On arrival at station 55401 the bridge visually located the surface buoy and positioned the vessel so the buoy was on the starboard side, ready for the 2 VOYAGE SUMMARY SS04/2008

recovery process. Using a Happy Hooker the science team attached a lifting line to the buoy and connected the lifting line to a winch cable from the A-Frame. The buoy was then allowed to drift to the stern of the vessel and was then towed to the anchor location to remove tension on the mooring line. While the vessel held position over the anchor site, the old buoy was lifted onto the deck and the mooring line was attached to the stern of the vessel. The old buoy was detached from the mooring and moved away from the stern. The new replacement buoy was positioned to the stern, attached to the mooring line and lowered into the water. The science team performed some basic tests to ensure the new buoy was successfully communication with the original pressure sensor at the site, with a successful test the vessel was released from station and allowed to return to Hobart. Voyage Objectives The mission successfully completed the voyage objectives to deploy a new prototype ETD Tsunameter and to perform a scheduled preventative maintenance visit to the first Tsunameter DART II buoy located in the south east Tasman Sea (46o 55.9 S, 160o 27.7 E), some 600 nautical miles from Tasmania. Results ETD was successfully deployed and the DART II Tsunameter Buoy was successfully replaced. Voyage Narrative Due to bad weather in the area it was decided to reverse the order of activities as it was anticipated that the weather would improve for the more difficult DART II maintenance activity. Upon arrival at the ETD site we positioned and deployed the ETD Tsunameter (refer to photos provided at the end of this report). The ship was held at station to allow the monitoring of the BPR (Bottom Pressure Sensor) as it descended to the bottom. After a successful touchdown we positioned the ship at 3 triangular points around the BPR to enable accurate soundings to be performed to determine the precise position of the BPR. The ship was than released from site and moved to the DART II buoy location for the next phase of the mission. On arrival at the DART II site the ship was positioned next to the old DART II buoy to allow the placement of a lifting line around the buoy. The old Buoy was lifted on the deck and the mooring line was secured to the ship. The old buoy was moved away and replaced with a new buoy, the new buoy was connected to the mooring and lifted into the water then released. Summary The mission went according to plan, no surprises or difficulties encountered. Project (if applicable) The Australian Tsunami Warning System (ATWS) is a national effort between the Australian Bureau of Meteorology, Geoscience Australia and Emergency Management Australia to provide a comprehensive tsunami warning system capable of delivering timely and effective tsunami warnings to the Australian population by 2009. Principal investigators Damir Lenc, 700 Collins Street, Docklands, Vic. 3008, Australia 3 VOYAGE SUMMARY SS04/2008

Data collected 6 6 4 VOYAGE SUMMARY SS07/2007

MOORINGS, BOTTOM MOUNTED GEAR AND DRIFTING SYSTEMS Item No PI LATITUDE LONGITUDE DATA TYPE DESCRIPTION 1 See previous page deg min N/S deg min E/W 46 39.9 S 161 0.1 E D09 Bottom Pressure Recorder at 4920m. Deployed 23rd March 2008. 2 46 55.9 S 160 27.7 E D09 Bottom Pressure Recorder at 4949m. Deployed 17th April communication Buoy serviced on 23rd March 2008. SS04-2008 voyage track 5 VOYAGE SUMMARY SS07/2007

Personnel list Scientific Participants Name Affiliation Role Damir Lenc Bureau Chief Scientist Scott Stalin NOAA/PMEL Engineering Development ETD Christian Meinig NOAA/PMEL Director Engineering Development Stephen Quinn Bureau Deployment Observer Jack Macgregor SAIC Deployment Electrical Technician Richard Campagna SAIC Deployment Mooring Technician Hiski Kippo CMAR MNF Computing Support Stephen Thomas CMAR MNF Voyage Manager/ Electronics Support Marine Crew Name LES MORROW JOHN BARR ROB FERRIES ROGER THOMAS ROB CAVE SEAMUS ELDER TONY HEARNE JOHN HALL JOHN ALLWOOD MATT BARRETT ANDREW ROEBUCK ASHLEIGH POLLOCK ANDY GOSS ADAM O CONNOR NICK JONES Role Master Chief Officer 1st Officer Chief Engineer 1st Engineer 2nd Engineer Bosun I.R. I.R. I.R. I.R. Chief Steward Chief Cook 2nd Cook Deck Cadet 6 VOYAGE SUMMARY SS04/2008

APPENDICES Preparing the ETD Tsunameter Deploying the ETD Tsunameter DART II Buoy replacement ready to deploy ETD Tsunameter in Position DART II Tsunameter Buoy successfully deployed 7 VOYAGE SUMMARY SS06/2008

CSR/ROSCOP PARAMETER CODES METEOROLOGY M01 Upper air observations M02 Incident radiation M05 Occasional standard measurements M06 Routine standard measurements M71 Atmospheric chemistry M90 Other meteorological measurements PHYSICAL OCEANOGRAPHY H71 Surface measurements underway (T,S) H13 Bathythermograph H09 Water bottle stations H10 CTD stations H11 Subsurface measurements underway (T,S) H72 Thermistor chain H16 Transparency (eg transmissometer) H17 Optics (eg underwater light levels) H73 Geochemical tracers (eg freons) D01 Current meters D71 Current profiler (eg ADCP) D03 Currents measured from ship drift D04 GEK D05 Surface drifters/drifting buoys D06 Neutrally buoyant floats D09 Sea level (incl. Bottom pressure & inverted echosounder) D72 Instrumented wave measurements D90 Other physical oceanographic measurements CHEMICAL OCEANOGRAPHY H21 Oxygen H74 Carbon dioxide H33 Other dissolved gases H22 Phosphate H23 Total - P H24 Nitrate H25 Nitrite H75 Total - N H76 Ammonia H26 Silicate H27 Alkalinity H28 PH H30 Trace elements H31 Radioactivity H32 Isotopes H90 Other chemical oceanographic measurements MARINE CONTAMINANTS/POLLUTION P01 Suspended matter P02 Trace metals P03 Petroleum residues P04 Chlorinated hydrocarbons P05 Other dissolved substances P12 Bottom deposits P13 Contaminants in organisms P90 Other contaminant measurements MARINE BIOLOGY/FISHERIES B01 Primary productivity B02 Phytoplankton pigments (eg chlorophyll, fluorescence) B71 Particulate organic matter (inc POC, PON) B06 Dissolved organic matter (inc DOC) B72 Biochemical measurements (eg lipids, amino acids) B73 B08 B09 B03 B10 B11 B13 B07 B16 B17 B18 B25 B26 B14 B19 B20 B21 B28 B37 B64 B65 B90 G01 G02 G03 G04 G08 G71 G72 G73 G74 G24 G75 G76 G26 G27 G28 G90 Sediment traps Phytoplankton Zooplankton Seston Neuston Nekton Eggs & larvae Pelagic bacteria/micro-organisms Benthic bacteria/micro-organisms Phytobenthos Zoobenthos Birds Mammals & reptiles Pelagic fish Demersal fish Molluscs Crustaceans Acoustic reflection on marine organisms Taggings Gear research Exploratory fishing Other biological/fisheries measurements MARINE GEOLOGY/GEOPHYSICS Dredge Grab Core - rock Core - soft bottom Bottom photography In-situ seafloor measurement/sampling Geophysical measurements made at depth Single-beam echosounding Multi-beam echosounding Long/short range side scan sonar Single channel seismic reflection Multichannel seismic reflection Seismic refraction Gravity measurements Magnetic measurements Other geological/geophysical measurements 8 VOYAGE SUMMARY SS07/2007