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Improving land-based total nitrogen load allocation using a variable response matrix-based simulation-optimization approach: A case study

机译:使用基于变量响应矩阵的模拟优化方法改善陆地总氮负荷分配:一个案例研究

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摘要

Human activities have increased land-based pollutant loads, which have caused a significant variation in unit source concentration response matrices (USCRMs) of the coastal ocean. A variable response matrix approach (VRMA) for simulation–optimization load allocation is proposed and applied to solve the uncertainty caused by variations in USCRMs in calculating allocated load (AL). In contrast to the traditional fixed response matrix approach (FRMA), the USCRMs are iteratively updated by a simulation model using iterative solutions from an optimization model. The ALs of 48 main dischargers in Shandong Province, a typical coastal province in China, are calculated via the VRMA and FRMA. The water quality under each AL emission is simulated via a three-dimensional water quality simulation model. The advantages of applying the VRMA over the FRMA in waste load allocation are demonstrated by comparing the ALs and the correspondence between the simulated water quality and the water quality standards of the two methods. Results show that the VRMA can maintain better water quality than the FRMA when higher total nitrogen loads are allowed.
机译:人类活动增加了陆基污染物负荷,这导致沿海海洋的单位源浓度响应矩阵(USCRM)发生了显着变化。提出了一种用于仿真-优化负载分配的可变响应矩阵方法(VRMA),并解决了USCRM的变化在计算分配负载(AL)时引起的不确定性。与传统的固定响应矩阵方法(FRMA)相比,USCRM通过仿真模型使用来自优化模型的迭代解决方案进行迭代更新。山东省48个主要放电器的AL值是通过VRMA和FRMA计算得出的。通过三维水质模拟模型对每次AL排放下的水质进行模拟。通过比较ALs和两种方法的模拟水质与水质标准之间的对应关系,证明了在废物负荷分配中应用VRMA优于FRMA的优势。结果表明,当允许更高的总氮负荷时,VRMA可以比FRMA保持更好的水质。

著录项

  • 来源
    《Ecological indicators》 |2018年第8期|575-588|共14页
  • 作者单位

    Key Laboratory of Marine Chemistry Theory and Technology (Ocean University of China), Ministry of Education,Chemistry and Chemical Engineering Department, Ocean University of China,Environmental Science and Engineering Department, Ocean University of China;

    Key Laboratory of Marine Chemistry Theory and Technology (Ocean University of China), Ministry of Education,Chemistry and Chemical Engineering Department, Ocean University of China;

    Oceanic and Atmospheric Sciences Department, Ocean University of China;

    Key Laboratory of Marine Chemistry Theory and Technology (Ocean University of China), Ministry of Education,Chemistry and Chemical Engineering Department, Ocean University of China;

    Key Laboratory of Marine Chemistry Theory and Technology (Ocean University of China), Ministry of Education;

    Key Laboratory of Physical Oceanography (Ocean University of China), Ministry of Education;

    Environmental Science and Engineering Department, Ocean University of China,Key Laboratory of Physical Oceanography (Ocean University of China), Ministry of Education;

    Key Laboratory of Marine Chemistry Theory and Technology (Ocean University of China), Ministry of Education,Chemistry and Chemical Engineering Department, Ocean University of China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Load allocation; Total nitrogen; Variable response matrix approach; Simulation–optimization; Coastal ocean;

    机译:负荷分配总氮变量响应矩阵法模拟优化最近沿海;

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