Song Tao, Kim Kyehyun
Natural Disaster Research Center, Room D503, Geographical and Environmental Building, Sun Yat-Sen University, Guangzhou 510275, PR China.
J Environ Manage. 2009 Mar;90(3):1534-43. doi: 10.1016/j.jenvman.2008.11.008. Epub 2008 Dec 19.
Water quality modeling is an ideal tool for simulating physical, chemical, and biological changes in aquatic systems. It has been utilized in a number of GIS-based water quality management and analysis applications. However, there is considerable need for a decision-making process to translate the modeling result into an understandable form and thereby help users to make relevant judgments and decisions. This paper introduces a water quality index termed QUAL2E water quality loading index (QWQLI). This new WQI is based on water quality modeling by QUAL2E, which is a popular steady-state model for the water quality of rivers and streams. An experiment applying the index to the Sapgyo River in Korea was implemented. Unlike other WQIs, the proposed index is specifically used for simulated water quality using QUAL2E to mainly reflect pollutant loading levels. Based on the index, an iterative modeling-judgment process was designed to make decisions to decrease input pollutants from pollutant sources. Furthermore, an indexing and decision analysis can be performed in a GIS framework, which can provide various spatial analyses. This can facilitate the decision-making process under various scenarios considering spatial variability. The result shows that the index can evaluate and classify the simulation results using QUAL2E and that it can effectively identify the elements that should be improved in the decision-making process. In addition, the results imply that further study should be carried out to automate algorithms and subsidiary programs supporting the decision-making process.
水质建模是模拟水生系统中物理、化学和生物变化的理想工具。它已被用于许多基于地理信息系统(GIS)的水质管理和分析应用中。然而,迫切需要一个决策过程,将建模结果转化为易于理解的形式,从而帮助用户做出相关判断和决策。本文介绍了一种水质指数,称为QUAL2E水质负荷指数(QWQLI)。这种新的水质指数基于QUAL2E的水质建模,QUAL2E是一种用于河流和溪流水质的流行稳态模型。在韩国的沙溪进行了一项应用该指数的实验。与其他水质指数不同,该指数专门用于使用QUAL2E模拟水质,主要反映污染物负荷水平。基于该指数,设计了一个迭代的建模-判断过程,以做出减少污染源输入污染物的决策。此外,可以在GIS框架中进行索引和决策分析,该框架可以提供各种空间分析。这可以促进在考虑空间变异性的各种情景下的决策过程。结果表明,该指数可以对使用QUAL2E的模拟结果进行评估和分类,并且可以有效地识别决策过程中应改进的因素。此外,结果意味着应进一步开展研究,以实现支持决策过程的算法和辅助程序的自动化。