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Combination of drainage, water supply and environmental protection as well as rational distribution of water resource in Zhengzhou mining district

机译:郑州矿区排水,供水与环境保护相结合,水资源合理配置

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摘要

The geological condition of coalfield is much complex in China. With increasing in mining depth and drainage amount, the contradiction of drainage, water supply and environmental protection is becoming more and more serious. However, the contradiction can be solved by the scientific management of optimizing combination of drainage, water supply and environmental protection. The Philip multiple objectives simplex method used in this article has searched for a possible solution at the first step, and then it goes on searching to find out whether there is a weight number that can lead the solution to the biggest. It can reduce the randomness and difficulty of traditional weight method which determine the weight number artificially. Some beneficial coefficients are vague and the number is larger in the model of water resource dispatch. So the vague layer analysis method can consider these vague factors fully, combining the qualitative and quantitative analysis together. Especially, this method can quantify the experiential judgement of policy decider, and it will turn to be more suitable if the structure of objective factors is complex or the necessary data are absent. In the paper, the two methods above are used to solve the plans of drainage, water supply and optimizing distribution of water resource in the Zhengzhou mining district.
机译:中国煤田的地质条件十分复杂。随着开采深度和排水量的增加,排水,供水与环境保护的矛盾日益严重。但是,通过优化排水,供水和环境保护相结合的科学管理可以解决矛盾。本文中使用的Philip多目标单纯形法在第一步中已经找到了可能的解决方案,然后继续进行搜索以找出是否存在可以使解决方案发挥最大作用的权数。它可以减少传统的权重方法的随机性和难度,而传统的权重方法是人为地确定体重数。在水资源调配模型中,一些有益系数含糊不清,且数量较大。因此,模糊层分析方法可以将定性和定量分析结合起来,充分考虑这些模糊因素。特别是,这种方法可以量化决策者的经验判断,如果客观因素的结构复杂或缺少必要的数据,它将变得更加合适。本文采用以上两种方法解决了郑州矿区的排水,给水方案和水资源优化分配问题。

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