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首页> 外文期刊>Harmful Algae >Applied simulations and integrated modelling for the understanding of toxic and harmful algal blooms (ASIMUTH): Integrated HAB forecast systems for Europe's Atlantic Arc
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Applied simulations and integrated modelling for the understanding of toxic and harmful algal blooms (ASIMUTH): Integrated HAB forecast systems for Europe's Atlantic Arc

机译:应用模拟和集成建模,以了解有毒和有害藻华(ASIMUTH):欧洲大西洋弧线的集成HAB预测系统

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摘要

Reasons for the emergent interest in HABs are abundant, including concerns associated with human health, adverse effects on biological resources, economic losses attributed to recreation, tourism and seafood related industries, and the cost of maintaining public advisory services and monitoring programs for shellfish toxins and water quality. The impact of HABs can potentially be mitigated by early warning of their development. In this regard the project ASIMUTH (Applied Simulations and Integrated Modelling for the Understanding of Toxic and Harmful algal blooms) was borne in order to develop short term HAB alert systems for Atlantic Europe. This was achieved using information on the most current marine conditions (weather, water characteristics, toxicity, harmful algal presence etc.) combined with high resolution local numerical predictions. This integrated, multidisciplinary, trans-boundary approach to the study of HABs developed during ASIMUTH led to a better understanding of the physical, chemical and ecological factors controlling these blooms, as well as their impact on human activities. The outcome was an appropriate alert system for an effective management of areas that are usually associated with HAB events and where these episodes may have a more significant negative impact on human activities. Specifically for the aquaculture industry, the information provided enabled farmers to adapt their working practices in time to prevent mortalities in finfish farms and/or manage their shellfish harvest more effectively. This paper summarises the modelling and alert developments generated by the ASIMUTH project. (C) 2015 Elsevier B.V. All rights reserved.
机译:人们对HAB产生了浓厚的兴趣,原因包括与人类健康,对生物资源的不利影响,娱乐,旅游和海鲜相关产业造成的经济损失以及维持公共咨询服务和贝类毒素和毒素监测计划的成本有关的担忧。水质。 HAB的发展可以通过对其发展进行预警来减轻其影响。在这方面,开展了ASIMUTH(用于理解有毒和有害藻华的应用模拟和集成建模)项目,目的是为欧洲大西洋开发短期HAB警报系统。这是通过使用有关最新海洋状况(天气,水质,毒性,有害藻类存在等)的信息以及高分辨率本地数值预测来实现的。这种在ASIMUTH期间开发的多学科,跨学科的综合方法研究了HAB,从而使人们对控制这些花开的物理,化学和生态因素及其对人类活动的影响有了更好的了解。结果是一个适当的警报系统,可以有效管理通常与HAB事件相关的区域,这些事件可能会对人类活动产生更大的负面影响。专门针对水产养殖业,所提供的信息使农民能够及时适应其工作习惯,以防止有鳍养殖场死亡和/或更有效地管理其贝类收获。本文总结了ASIMUTH项目生成的建模和警报开发。 (C)2015 Elsevier B.V.保留所有权利。

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