Data

Sediment deposition data (NESP TWQ 2.1.9, AIMS)

eAtlas
Jones, Ross
Viewed: [[ro.stat.viewed]] Cited: [[ro.stat.cited]] Accessed: [[ro.stat.accessed]]
ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rfr_id=info%3Asid%2FANDS&rft_id=https://eatlas.org.au/data/uuid/16df6589-ad4d-4eec-8331-2eb485475456&rft.title=Sediment deposition data (NESP TWQ 2.1.9, AIMS)&rft.identifier=https://eatlas.org.au/data/uuid/16df6589-ad4d-4eec-8331-2eb485475456&rft.description=This dataset consists of 1 excel data files (.xlsx format) that contains the results from the in situ deployment of instruments in Cleveland Bay to measure sediment deposition from a trailer suction hopper dredge working in Platypus channel. The aim of the study was to measure sediment deposition rates caused by a working Trailer Suction Hopper dredge in Platypus channel in Cleveland Bay. Methods: Two deposition sensors were deployed on the seabed 100 m (-19.226083° 146.843500°) away from the edge of the Platypus channel in Cleveland Bay near marker beacon P11 at a depth of 5–8 m. Single deposition sensors were also placed on a transect line running at right angles from the shipping channel at distance of 200 m (19.225639° 146.842889°), 400 m (-19.224528° 146.841111), and 800 m (-19.222806° 146.837889°). The deposition sensors were calibrated according to methods described in Ridd et al. (2001), Thomas et al. (2003), Whinney et al. (2017). The deposition sensor uses infrared optical backscatters techniques to estimate the mass of sediment per unit area that deposits on the sensor surface every 10– 20 minutes. After 1 h the surface is wiped clean and the process repeated. Additional instruments were deployed alongside the sensors including a nephelometer measuring turbidity by means of optical backscatter, a pressure sensor for estimating wave activity, and a tilt current meter for estimating current speed. For instrument descriptions and calibration details see Macdonald et al. (2013), Marchant et al. (2014), Whinney et al. (2017). Limitation of the data: All data went through a quality assurance process involving an algorithm to remove occasional data spikes. This algorithm compares each reading to the average of the readings directly before and after it, and if the reading is greater than twice the average it is replaced by the average. Fouling of sensors was examined by looking for drift in values over the deployment period and from observations of the condition of the sensors at the time of retrieval. Data that have been affected by fouling were removed. Format: This data is in a single Excel file Data Dictionary: Site 1A - 100m from Channel Site 1B - 100m from Channel Site 2 – 200 m from Channel Site 3 – 400 m from Channel Site 4 – 800 m from Channel Columns B – F : hourly sensor readings of sediment deposition as mg/cm2/day per 10 minute intervals: Column I: 2 – NTU (Nephelometric turbidity unit) at Site 2 – 200 m from Channel Column J: m (metres, water depth) at Site 4 - 800 m from the Channel Column K: m/s (metres per second) current sensor readings at Site 4 - 800 m from the Channel Graphs of the data can be found in the Report in figures 16 B, 16 C, and 16 D: Ross Jones, Rebecca Fisher, David Francis, Wojciech Klonowski, Heidi Luter, Andrew Negri, Mari-Carmen Pineda, Gerard Ricardo, Matt Slivkoff James Whinney. Risk Assessing Dredging activities. Report to the National Environmental Science Program. Reef and Rainforest Research Centre Limited, Cairns (74 pp). References: Macdonald R, Ridd P, Whinney J, Larcombe P, Neil D (2013) Towards environmental management of water turbidity within open coastal waters of the Great Barrier Reef. Mar Pollut Bull 74:82-94 Marchant R, Stevens T, Choukroun S, Coombes G, Santarossa M, Whinney J, Ridd P (2014) A Buoyant Tethered Sphere for Marine Current Estimation. IEEE Journal of Oceanic Engineering 39:2-9 Ridd P, Day G, Thomas S, Harradence J, Fox D, Bunt J, Renagi O, Jago C (2001) Measurement of Sediment Deposition Rates using an Optical Backscatter Sensor. Estuar Coast Shelf Sci 52:155-163 Thomas S, Ridd PV, Day G (2003) Turbidity regimes over fringing coral reefs near a mining site at Lihir Island, Papua New Guinea. Mar Pollut Bull 46:1006-1014 Whinney J, Jones R, Duckworth A, Ridd P (2017) Continuous in situ monitoring of sediment deposition in shallow benthic environments. Coral Reefs 36:521–533 Ross Jones, Rebecca Fisher, David Francis, Wojciech Klonowski, Heidi Luter, Andrew Negri, Mari-Carmen Pineda, Gerard Ricardo, Matt Slivkoff James Whinney. Risk Assessing Dredging activities. Report to the National Environmental Science Program. Reef and Rainforest Research Centre Limited, Cairns (74 pp). Data Location: This dataset is filed in the eAtlas enduring data repository at: data\nesp2\2.1.9-dredging-marine-response&rft.creator=Jones, Ross &rft.date=2020&rft.coverage=146.8554202711027,-19.27436204943089 146.84955726855517,-19.273735198438715 146.84379079734757,-19.27248836436499 146.8381840361452,-19.27063520778478 146.83279841379704,-19.268196032269373 146.82769293630855,-19.265197561936134 146.82292354035954,-19.261672648653473 146.81854248045,-19.257659912109006 146.81459775638916,-19.253203316683994 146.81113258739927,-19.24835168977053 146.80818493859695,-19.24315818680836 146.80578710503931,-19.237679708902704 146.80396535789257,-19.231976279403995 146.80273965659973,-19.226110386279316 146.80212343020062,-19.22014629748125 146.80212343020062,-19.214149356814744 146.80273965659973,-19.208185268016678 146.80396535789257,-19.202319374892 146.80578710503931,-19.19661594539329 146.80818493859695,-19.191137467487664 146.81113258739927,-19.185943964525464 146.81459775638916,-19.181092337612014 146.81854248045,-19.176635742187003 146.82292354035954,-19.172623005642535 146.82769293630855,-19.16909809235989 146.83279841379704,-19.16609962202662 146.8381840361452,-19.1636604465112 146.84379079734757,-19.161807289931005 146.84955726855517,-19.160560455857294 146.8554202711027,-19.159933604865117 146.86131556870728,-19.159933604865117 146.8671785712548,-19.160560455857294 146.87294504246242,-19.161807289931005 146.87855180366478,-19.1636604465112 146.88393742601295,-19.16609962202662 146.88904290350143,-19.16909809235989 146.89381229945045,-19.172623005642535 146.89819335936,-19.176635742186974 146.90213808342085,-19.181092337612014 146.9056032524107,-19.185943964525464 146.90855090121303,-19.191137467487664 146.91094873477067,-19.19661594539329 146.91277048191742,-19.202319374892 146.91399618321026,-19.208185268016678 146.91461240960936,-19.214149356814744 146.91461240960936,-19.22014629748125 146.91399618321026,-19.226110386279316 146.91277048191742,-19.231976279403995 146.91094873477067,-19.237679708902704 146.90855090121303,-19.24315818680836 146.9056032524107,-19.24835168977053 146.90213808342085,-19.253203316683994 146.89819335936,-19.257659912109006 146.89381229945045,-19.261672648653473 146.88904290350143,-19.265197561936134 146.88393742601295,-19.268196032269373 146.87855180366478,-19.27063520778478 146.87294504246242,-19.27248836436499 146.8671785712548,-19.273735198438715 146.86131556870728,-19.27436204943089 146.8554202711027,-19.27436204943089&rft_rights=Creative Commons Attribution 3.0 Australia License http://creativecommons.org/licenses/by/3.0/au/&rft_subject=biota&rft.type=dataset&rft.language=English Access the data

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Creative Commons Attribution 3.0 Australia License
http://creativecommons.org/licenses/by/3.0/au/

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Full description

This dataset consists of 1 excel data files (.xlsx format) that contains the results from the in situ deployment of instruments in Cleveland Bay to measure sediment deposition from a trailer suction hopper dredge working in Platypus channel. The aim of the study was to measure sediment deposition rates caused by a working Trailer Suction Hopper dredge in Platypus channel in Cleveland Bay. Methods: Two deposition sensors were deployed on the seabed 100 m (-19.226083° 146.843500°) away from the edge of the Platypus channel in Cleveland Bay near marker beacon P11 at a depth of 5–8 m. Single deposition sensors were also placed on a transect line running at right angles from the shipping channel at distance of 200 m (19.225639° 146.842889°), 400 m (-19.224528° 146.841111), and 800 m (-19.222806° 146.837889°). The deposition sensors were calibrated according to methods described in Ridd et al. (2001), Thomas et al. (2003), Whinney et al. (2017). The deposition sensor uses infrared optical backscatters techniques to estimate the mass of sediment per unit area that deposits on the sensor surface every 10– 20 minutes. After 1 h the surface is wiped clean and the process repeated. Additional instruments were deployed alongside the sensors including a nephelometer measuring turbidity by means of optical backscatter, a pressure sensor for estimating wave activity, and a tilt current meter for estimating current speed. For instrument descriptions and calibration details see Macdonald et al. (2013), Marchant et al. (2014), Whinney et al. (2017). Limitation of the data: All data went through a quality assurance process involving an algorithm to remove occasional data spikes. This algorithm compares each reading to the average of the readings directly before and after it, and if the reading is greater than twice the average it is replaced by the average. Fouling of sensors was examined by looking for drift in values over the deployment period and from observations of the condition of the sensors at the time of retrieval. Data that have been affected by fouling were removed. Format: This data is in a single Excel file Data Dictionary: Site 1A - 100m from Channel Site 1B - 100m from Channel Site 2 – 200 m from Channel Site 3 – 400 m from Channel Site 4 – 800 m from Channel Columns B – F : hourly sensor readings of sediment deposition as mg/cm2/day per 10 minute intervals: Column I: 2 – NTU (Nephelometric turbidity unit) at Site 2 – 200 m from Channel Column J: m (metres, water depth) at Site 4 - 800 m from the Channel Column K: m/s (metres per second) current sensor readings at Site 4 - 800 m from the Channel Graphs of the data can be found in the Report in figures 16 B, 16 C, and 16 D: Ross Jones, Rebecca Fisher, David Francis, Wojciech Klonowski, Heidi Luter, Andrew Negri, Mari-Carmen Pineda, Gerard Ricardo, Matt Slivkoff James Whinney. Risk Assessing Dredging activities. Report to the National Environmental Science Program. Reef and Rainforest Research Centre Limited, Cairns (74 pp). References: Macdonald R, Ridd P, Whinney J, Larcombe P, Neil D (2013) Towards environmental management of water turbidity within open coastal waters of the Great Barrier Reef. Mar Pollut Bull 74:82-94 Marchant R, Stevens T, Choukroun S, Coombes G, Santarossa M, Whinney J, Ridd P (2014) A Buoyant Tethered Sphere for Marine Current Estimation. IEEE Journal of Oceanic Engineering 39:2-9 Ridd P, Day G, Thomas S, Harradence J, Fox D, Bunt J, Renagi O, Jago C (2001) Measurement of Sediment Deposition Rates using an Optical Backscatter Sensor. Estuar Coast Shelf Sci 52:155-163 Thomas S, Ridd PV, Day G (2003) Turbidity regimes over fringing coral reefs near a mining site at Lihir Island, Papua New Guinea. Mar Pollut Bull 46:1006-1014 Whinney J, Jones R, Duckworth A, Ridd P (2017) Continuous in situ monitoring of sediment deposition in shallow benthic environments. Coral Reefs 36:521–533 Ross Jones, Rebecca Fisher, David Francis, Wojciech Klonowski, Heidi Luter, Andrew Negri, Mari-Carmen Pineda, Gerard Ricardo, Matt Slivkoff James Whinney. Risk Assessing Dredging activities. Report to the National Environmental Science Program. Reef and Rainforest Research Centre Limited, Cairns (74 pp). Data Location: This dataset is filed in the eAtlas enduring data repository at: data
esp2\2.1.9-dredging-marine-response

Issued: 06 02 2020

Data time period: 2017-08-01 to 2017-08-31

This dataset is part of a larger collection

Click to explore relationships graph

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146.8583679199,-19.217147827148

Subjects
biota |

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Other Information
NESP TWQ Project page

url : https://nesptropical.edu.au/index.php/round-2-projects/project-2-1-9/

eAtlas Web Mapping Service (WMS) (AIMS)

url : https://eatlas.org.au/data/uuid/71127e4d-9f14-4c57-9845-1dce0b541d8d

Project web site

url : https://eatlas.org.au/nesp-twq-2/risk-assessing-dredging-activities-2-1-9

Excel File + Preview Image + Metadata [Zip 625 kB]

url : https://nextcloud.eatlas.org.au/apps/sharealias/a/qld-nesp-twq-2-1-9-aims-dredging-marine-response-dataset-2-deposition-20191128

global : f17a57c2-c7b2-4e06-92c6-ef7010417a18

ror : 03x57gn41

ror : 03x57gn41

NESP TWQ Project 2.1.9 - Risk assessing dredging activities, 2016-2018 (AIMS)

raid : 10.82210/130209cd

Identifiers
  • global : 16df6589-ad4d-4eec-8331-2eb485475456
ACN 633 798 857