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开放河流:水坝拆除规划与河流自然流态的恢复。

Open rivers: barrier removal planning and the restoration of free-flowing rivers.

机构信息

Kent Business School, University of Kent, Canterbury, Kent CT2 7PE, UK.

出版信息

J Environ Manage. 2011 Dec;92(12):3112-20. doi: 10.1016/j.jenvman.2011.07.027. Epub 2011 Aug 30.

Abstract

Restoration of unobstructed, free-flowing sections of river can provide considerable environmental and ecological benefits. It removes impediments to aquatic species dispersal and improves flow, sediment and nutrient transport. This, in turn, can serve to improve environmental quality and abundance of native species, not only within the river channel itself, but also within adjacent riparian, floodplain and coastal areas. In support of this effort, a generic optimization model is presented in this paper for prioritizing the removal of problematic structures, which adversely affect aquatic species dispersal and river hydrology. Its purpose is to maximize, subject to a budget, the size of the single largest section of connected river unimpeded by artificial flow and dispersal barriers. The model is designed to improve, in a holistic way, the connectivity and environmental status of a river network. Furthermore, unlike most previous prioritization methods, it is particularly well suited to meet the needs of potamodromous fish species and other resident aquatic organisms, which regularly disperse among different parts of a river network. After presenting an initial mixed integer linear programming formulation of the model, more scalable reformulation and solution techniques are investigated for solving large, realistic-sized instances. Results from a case-study of the Pike River Watershed, located in northeast Wisconsin, USA, demonstrate the computational efficiency of the proposed model as well as highlight some general insights about systematic barrier removal planning.

摘要

恢复畅通无阻、自由流动的河道段可以带来可观的环境和生态效益。它可以消除对水生物种扩散的障碍,改善水流、泥沙和养分输送。这反过来又可以提高环境质量和本地物种的丰富度,不仅在河道本身,而且在相邻的河岸、洪泛区和沿海地区。为了支持这一努力,本文提出了一种通用的优化模型,用于优先考虑去除对水生物种扩散和河流水文学有不利影响的问题结构。其目的是在预算限制内,使最大的单一不受人工水流和扩散障碍阻碍的连续河道段最大化。该模型旨在全面改善河网的连通性和环境状况。此外,与大多数先前的优先级排序方法不同,它特别适合满足洄游鱼类和其他常驻水生生物的需求,这些生物经常在河网的不同部分之间扩散。在提出模型的初始混合整数线性规划公式后,研究了更具可扩展性的重新制定和求解技术,以解决大型实际规模的实例。来自美国威斯康星州东北部 Pike 河流域的案例研究结果展示了所提出模型的计算效率,并突出了一些关于系统障碍消除规划的一般见解。

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