School of Civil Engineering, College of Engineering, University of Tehran, Tehran, Iran.
Environ Monit Assess. 2013 Mar;185(3):2483-502. doi: 10.1007/s10661-012-2726-6. Epub 2012 Jul 10.
In this paper, a new methodology is developed for integrated allocation of water and waste-loads in river basins utilizing a fuzzy transformation method (FTM). The fuzzy transformation method is used to incorporate the existing uncertainties in model inputs. In the proposed methodology, the FTM, as a simulation model, is utilized in an optimization framework for constructing a fuzzy water and waste-loads allocation model. In addition, economic as well as environmental impacts of water allocation to different water users are considered. For equitable water and waste load allocation, all possible coalition of water users are considered and total benefit of each coalition, which is a fuzzy number, is reallocated to water users who are participating in the coalition. The fuzzy cost savings are reallocated using a fuzzy nucleolus cooperative game and the FTM. As a case study, the Dez River system in south-west of Iran is modeled and analyzed using the methodology developed here. The results show the effectiveness of the methodology in optimal water and waste-loads allocations under uncertainty.
本文提出了一种利用模糊变换方法(FTM)综合分配流域水资源和污染物负荷的新方法。模糊变换方法用于合并模型输入中的现有不确定性。在提出的方法中,FTM 作为模拟模型,用于构建模糊水和污染物负荷分配模型的优化框架中。此外,还考虑了水资源分配对不同用水户的经济和环境影响。为了公平分配水资源和污染物,考虑了所有可能的用水户联盟,并且将每个联盟的总收益(一个模糊数)重新分配给参与联盟的用水户。使用模糊核合作博弈和 FTM 重新分配模糊成本节约。作为案例研究,利用这里开发的方法对伊朗西南部的德兹河系统进行建模和分析。结果表明了该方法在不确定性下进行最优水资源和污染物负荷分配的有效性。