Partitioning the Indian Ocean based on surface fields of physical and biological properties

Comprehensively sampling the ocean in situ remains a challenge, even in the current era of rapid technological development. In less than a decade, the deployment of thousands of autonomous profiling floats increased the number of ocean temperature profiles by an order of magnitude compared to ship-b...

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Main Authors: Huot, Y., Antoine, David, Daudon, C.
Format: Journal Article
Language:English
Published: PERGAMON-ELSEVIER SCIENCE LTD 2019
Subjects:
Online Access:http://hdl.handle.net/20.500.11937/79151
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author Huot, Y.
Antoine, David
Daudon, C.
author_facet Huot, Y.
Antoine, David
Daudon, C.
author_sort Huot, Y.
building Curtin Institutional Repository
collection Online Access
description Comprehensively sampling the ocean in situ remains a challenge, even in the current era of rapid technological development. In less than a decade, the deployment of thousands of autonomous profiling floats increased the number of ocean temperature profiles by an order of magnitude compared to ship-based sampling in the past. But expendable floats cannot sample all the physical and biogeochemical regimes in the global ocean. A promising avenue that could guide in situ sampling is to partition oceans based on selected properties in order to identify “homogeneous” areas. This approach greatly reduces the number of measurements needed to represent the state of the ocean. However, homogeneous areas can be partitioned in many ways: depending on whether a single or several properties are considered; and on whether the definition of boundaries is left to expert knowledge or derived from objective analysis techniques. Here, we use a clustering method to map and partition many surface variables, and we further examine how this partitioning is affected by various ways of averaging or normalizing the input data. We performed this study using 15 different surface fields of physical and biological properties derived from satellite remote sensing observations and from global model outputs at a monthly resolution. The area of study is the Indian Ocean - one of the least-sampled oceans - which is the focus of a global research effort under the auspices of the second International Indian Ocean Expedition (IIOE-2). We show a strong effect of the average absolute values of the data, which can be removed to better examine the phenology of the properties. However, normalization is not mandatory; the technique selected should depend on the scientific questions at hand. Our clusters did generally did not match closely the regions identified by Longhurst in his seminal work on ocean provinces.
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spelling curtin-20.500.11937-791512021-01-15T07:49:44Z Partitioning the Indian Ocean based on surface fields of physical and biological properties Huot, Y. Antoine, David Daudon, C. Science & Technology Physical Sciences Oceanography TEMPERATURE-MEASUREMENTS PROVINCES SEA GROWTH Comprehensively sampling the ocean in situ remains a challenge, even in the current era of rapid technological development. In less than a decade, the deployment of thousands of autonomous profiling floats increased the number of ocean temperature profiles by an order of magnitude compared to ship-based sampling in the past. But expendable floats cannot sample all the physical and biogeochemical regimes in the global ocean. A promising avenue that could guide in situ sampling is to partition oceans based on selected properties in order to identify “homogeneous” areas. This approach greatly reduces the number of measurements needed to represent the state of the ocean. However, homogeneous areas can be partitioned in many ways: depending on whether a single or several properties are considered; and on whether the definition of boundaries is left to expert knowledge or derived from objective analysis techniques. Here, we use a clustering method to map and partition many surface variables, and we further examine how this partitioning is affected by various ways of averaging or normalizing the input data. We performed this study using 15 different surface fields of physical and biological properties derived from satellite remote sensing observations and from global model outputs at a monthly resolution. The area of study is the Indian Ocean - one of the least-sampled oceans - which is the focus of a global research effort under the auspices of the second International Indian Ocean Expedition (IIOE-2). We show a strong effect of the average absolute values of the data, which can be removed to better examine the phenology of the properties. However, normalization is not mandatory; the technique selected should depend on the scientific questions at hand. Our clusters did generally did not match closely the regions identified by Longhurst in his seminal work on ocean provinces. 2019 Journal Article http://hdl.handle.net/20.500.11937/79151 10.1016/j.dsr2.2019.04.002 English http://creativecommons.org/licenses/by-nc-nd/4.0/ PERGAMON-ELSEVIER SCIENCE LTD fulltext
spellingShingle Science & Technology
Physical Sciences
Oceanography
TEMPERATURE-MEASUREMENTS
PROVINCES
SEA
GROWTH
Huot, Y.
Antoine, David
Daudon, C.
Partitioning the Indian Ocean based on surface fields of physical and biological properties
title Partitioning the Indian Ocean based on surface fields of physical and biological properties
title_full Partitioning the Indian Ocean based on surface fields of physical and biological properties
title_fullStr Partitioning the Indian Ocean based on surface fields of physical and biological properties
title_full_unstemmed Partitioning the Indian Ocean based on surface fields of physical and biological properties
title_short Partitioning the Indian Ocean based on surface fields of physical and biological properties
title_sort partitioning the indian ocean based on surface fields of physical and biological properties
topic Science & Technology
Physical Sciences
Oceanography
TEMPERATURE-MEASUREMENTS
PROVINCES
SEA
GROWTH
url http://hdl.handle.net/20.500.11937/79151