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Dynamic simulation of river water environmental capacity based on the subsection summation model

机译:基于分段求和模型的河流水环境容量动态模拟

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There are noteworthy problems in current strategies to calculate river water environmental capacity (WEC), including the generalization of tributaries and water intakes, which results in inaccurate calculation results of the WEC, and the difficulty in adapting to dynamic changes in demands and hydrological conditions in terms of practical application. To address these flaws, the subsection summation model (SSM) was built for river WEC calculation. The SSM increases the number of control sections according to drain outlets, water intakes, and tributaries and acquires the WEC of the functional area section by section. The Wei River was taken as the study area for verification and application of the SSM. Supported by a comprehensive integration platform, the WEC simulation system of the Wei River was constructed. The results show that the SSM enhances the accuracy of the WEC calculation, and the results are closer to the actual situation. The simulation system could obtain the WEC according to the demands and changes in the hydrological conditions, thus providing technical means for policymakers.Practitioner points The subsection summation model provides a more accurate water environmental capacity (WEC) calculation method considering tributaries and water intakes avoiding generalization. The simulation system should be established to make the WEC calculation adapt to the demands or changes in the hydrological conditions. The model and system could supply the basis and technical means for decision-making.
机译:当前计算河流水环境容量(WEC)的策略中存在值得注意的问题,包括支流和取水口的泛化,这导致WEC的计算结果不准确,以及难以适应河流中需求和水文条件的动态变化。实际应用条款。为了解决这些缺陷,建立了分段汇总模型(SSM)进行河流WEC计算。 SSM根据排水口,进水口和支流增加控制区的数量,并逐节获取功能区的WEC。以渭河为研究对象,对SSM进行了验证和应用。在综合集成平台的支持下,构建了渭河WEC仿真系统。结果表明,SSM提高了WEC计算的准确性,结果更接近实际情况。该仿真系统可以根据需求和水文条件的变化获得WEC,从而为决策者提供技术手段。练习者要点该小节汇总模型提供了一种更加精确的考虑支流和取水量的水环境容量(WEC)计算方法,从而避免了泛化。应建立模拟系统以使WEC计算适应水文条件的要求或变化。该模型和系统可以为决策提供依据和技术手段。

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