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1985 - 2017年大堡礁非生物环境与干扰状况的高分辨率特征分析

High-resolution characterization of the abiotic environment and disturbance regimes on the Great Barrier Reef, 1985-2017.

作者信息

Matthews Samuel A, Mellin Camille, MacNeil Aaron, Heron Scott F, Skirving William, Puotinen Marji, Devlin Michelle J, Pratchett Morgan

机构信息

AIMS@JCU, James Cook University, Townsville, Queensland, 4811, Australia.

ARC Centre of Excellence for Coral Reef Studies, James Cook University, Townsville, Queensland, 4811, Australia.

出版信息

Ecology. 2019 Feb;100(2):e02574. doi: 10.1002/ecy.2574. Epub 2019 Jan 15.

DOI:10.1002/ecy.2574
PMID:30645776
Abstract

This data compilation synthesizes 36 static environmental and spatial variables, and temporally explicit modeled estimates of three major disturbances to coral cover on the Great Barrier Reef (GBR): (1) coral bleaching, (2) tropical cyclones, and (3) outbreaks of the coral-eating crown-of-thorns starfish Acanthaster cf. solaris. Data are provided on a standardized grid (0.01° × 0.01° ~ 1 × 1 km) for reef locations along the GBR, containing 15,928 pixels and excluding the northernmost sections (<12° S) where empirical data were sparse. This compilation provides a consistent and high-resolution characterization of the abiotic environment and disturbance regimes for GBR reef locations at a fine spatial scale to be used in the development of complex ecosystem models. Static estimates of environmental variables (e.g., depth, bed shear stress, average temperature, temperature variation) originally developed by the Commonwealth of Australia's Environment Research Facility (CERF) Marine Biodiversity Hub were provided by Geoscience Australia. Annual (1985-2017) disturbance estimates were either interpolated from empirical data (A. cf. solaris), predicted from proxy indicators (e.g., degree heating weeks [DHW] as a proxy for bleaching severity), or explicitly modeled (e.g., wave height model for each cyclone). This data set synthesizes some of the most recent advances in remote sensing and modeling of environmental conditions on the GBR; yet it is not exhaustive and we highlight areas that should be expanded through future research. The characterization of abiotic and disturbance regimes presented here represent an essential tool for the development of complex regional scale models of the GBR; preventing redundancy between working groups and promoting collaboration, innovation, and consistency. When using the data set, we kindly request that you cite this article and/or the articles cited in the reference section, recognizing the work that went into compiling the data together and the original authors' willingness to make it publicly available.

摘要

本数据汇编综合了36个静态环境和空间变量,以及对大堡礁(GBR)珊瑚覆盖的三种主要干扰的时间明确的模型估计:(1)珊瑚白化,(2)热带气旋,以及(3)食珊瑚的棘冠海星(Acanthaster cf. solaris)的爆发。数据以标准化网格(0.01°×0.01°~1×1千米)的形式提供给GBR沿线的珊瑚礁位置,包含15928个像素,并排除了最北部(<12°S)经验数据稀少的区域。该汇编在精细空间尺度上为GBR珊瑚礁位置提供了非生物环境和干扰状况的一致且高分辨率的特征描述,可用于开发复杂的生态系统模型。澳大利亚联邦环境研究设施(CERF)海洋生物多样性中心最初开发的环境变量(如深度、床面剪应力、平均温度、温度变化)的静态估计值由澳大利亚地球科学局提供。年度(1985 - 2017年)干扰估计值要么是根据经验数据(A. cf. solaris)进行插值,要么是根据代理指标(如加热周数[DHW]作为白化严重程度的代理)进行预测,要么是明确建模(如每个气旋的波高模型)。该数据集综合了GBR环境条件遥感和建模方面的一些最新进展;然而它并不详尽,我们强调了应通过未来研究加以扩展的领域。这里呈现的非生物和干扰状况的特征描述是开发GBR复杂区域尺度模型的重要工具;可避免各工作组之间的重复工作,并促进合作、创新和一致性。使用该数据集时,恳请您引用本文和/或参考文献部分引用过的文章,认可为汇编数据所做的工作以及原始作者将其公开的意愿。

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