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量化阿查法拉亚河下游疏浚利用项目对野生动物和导航的益处:自然工程的示范。

Quantifying Wildlife and Navigation Benefits of a Dredging Beneficial-Use Project in the Lower Atchafalaya River: A Demonstration of Engineering with Nature®.

机构信息

US Army Engineer Research and Development Center, Concord, Massachusetts.

US Army Engineer Research and Development Center, Vicksburg, Mississippi.

出版信息

Integr Environ Assess Manag. 2018 Nov;14(6):759-768. doi: 10.1002/ieam.4084. Epub 2018 Jul 31.

Abstract

The US Army Corps of Engineers (USACE) operates and maintains numerous projects in support of its various civil works missions including flood damage risk reduction, navigation, and ecosystem restoration. Originally authorized on an economic basis, these projects may produce a broad array of unaccounted for ecosystem services (ESs) that contribute to overall human, societal, and environmental well-being. Efforts are underway to capture the full array of environmental, economic, and social impacts of these projects. Methods are needed to identify relevant ESs generated by these nature-based projects and to measure their contribution to societal well-being with an emphasis placed on use of readily available data. Performance metrics were collected to capture the benefits of strategic placement of dredged material in river systems to allow formation of islands that produce a wide array of ESs. These performance metrics can be converted to ESs with market value or combined in a decision analytical approach to demonstrate the relative gain in utility. This approach is demonstrated on a riverine island created on the Atchafalaya River, Louisiana, as a result of the strategic placement of dredged material. The outcomes foster integration of ES assessment into project design and management practices and support more comprehensive project evaluation and widespread application. Integr Environ Assess Manag 2018;14:759-768. Published 2018. This article is a US Government work and is in the public domain in the USA.

摘要

美国陆军工程兵团(USACE)负责运营和维护众多项目,以支持其各种土木工程任务,包括减少洪灾风险、导航和生态系统恢复。这些项目最初是基于经济原因授权的,它们可能会产生广泛的未被计入的生态系统服务(ESs),这些服务有助于人类、社会和环境的整体福祉。目前正在努力捕捉这些项目的全部环境、经济和社会影响。需要找到方法来识别这些基于自然的项目产生的相关 ESs,并衡量它们对社会福祉的贡献,重点是利用现成的数据。已经收集了绩效指标,以捕捉在河流系统中战略性地放置疏浚材料以形成产生广泛 ESs 的岛屿的好处。这些绩效指标可以转换为具有市场价值的 ESs,或者在决策分析方法中结合起来,以展示相对的效用增益。这种方法在路易斯安那州阿查法拉亚河上因战略性地放置疏浚材料而创建的一个河流岛屿上得到了验证。这些结果促进了将 ES 评估纳入项目设计和管理实践,并支持更全面的项目评估和广泛应用。

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