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对“设计河流流量以改善湄公河下游地区粮食安全前景”的评论的回应。

Response to Comments on "Designing river flows to improve food security futures in the Lower Mekong Basin".

机构信息

School of Aquatic and Fishery Sciences, University of Washington, Seattle, WA 98105, USA.

Department of Civil and Environmental Engineering, University of South Florida, Tampa, FL 33620, USA.

出版信息

Science. 2018 Jul 13;361(6398). doi: 10.1126/science.aat1477.

Abstract

Sabo presented an empirically derived algorithm defining the socioecological response of the Tonle Sap Dai fishery in the Cambodian Mekong to basin-scale variation in hydrologic flow regime. Williams suggests that the analysis leading to the algorithm is flawed because of the large distance between the gauge used to measure water levels (hydrology) and the site of harvest for the fishery. Halls and Moyle argue that Sabo 's findings are well known and contend that the algorithm is not a comprehensive assessment of sustainability. We argue that Williams' critique stems from a misunderstanding about our analysis; further clarification of the analysis is provided. We regret not citing more of the work indicated by Halls and Moyle, yet we note that our empirical analysis provides additional new insights into Mekong flow-fishery relationships.

摘要

萨博提出了一个经验衍生的算法,定义了柬埔寨洞里萨湖戴渔民对湄公河流域水文流量变化的社会生态响应。威廉姆斯认为,导致该算法的分析存在缺陷,因为用于测量水位(水文学)的测量仪和渔业收获地点之间的距离很大。哈尔斯和莫尔认为,萨博的发现是众所周知的,并认为该算法不是对可持续性的全面评估。我们认为,威廉姆斯的批评源于对我们分析的误解;进一步澄清了分析。我们很遗憾没有引用更多哈尔斯和莫尔所指出的工作,但我们注意到,我们的实证分析为湄公河流量与渔业关系提供了新的见解。

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