Gao Zehai, Liu Yang, Li Nan, Ma Kangjie
State Key Laboratory of Eco-Hydraulics in Northwest Arid Region of China, Xi'an University of Technology, Xi'an, 710048 China.
Shangnan Forestry Bureau, Shangnan, Shangluo, 726300 Shaanxi China.
Water Resour Manag (Dordr). 2022;36(8):2685-2702. doi: 10.1007/s11269-022-03169-2. Epub 2022 May 18.
Urban river not only has the important function in urban hydrological environment, but also is an area for entertainment. Water quality assessment is the core technique in water resource management. As the typical urban river, water samples were collected at 5 sampling points in Xi'an moat from January 2018 to December 2020, and 10 physicochemical parameters were analyzed. In this paper, a comprehensive water quality index (WQI) is designed based on the criterion of water quality classes and entropy weight method firstly. Secondly, the crucial water quality parameters is determined by using mutual information, coefficient of variation and the water quality difference. Finally, an enhanced beetle antennae search algorithm is proposed to optimize the weight values of the crucial parameters in the range 0 to 1, which represent the ratio of the crucial parameter in the minimum WQI (WQImin) model. The WQImin models with different number of crucial water quality parameters are implemented for water quality assessment. The effectiveness and superiority of the proposed enhanced beetle antennae search algorithm are validated in comparison with other evolutionary algorithms. The results show that the proposed WQImin model can assess the water quality accurately.
城市河流不仅在城市水文环境中具有重要作用,而且还是一个娱乐区域。水质评估是水资源管理的核心技术。作为典型的城市河流,于2018年1月至2020年12月在西安护城河的5个采样点采集了水样,并分析了10个理化参数。本文首先基于水质类别标准和熵权法设计了一种综合水质指数(WQI)。其次,利用互信息、变异系数和水质差异确定关键水质参数。最后,提出了一种改进的甲虫触角搜索算法,用于在0到1的范围内优化关键参数的权重值,该权重值代表关键参数在最小WQI(WQImin)模型中的比例。采用具有不同数量关键水质参数的WQImin模型进行水质评估。通过与其他进化算法比较,验证了所提出的改进甲虫触角搜索算法的有效性和优越性。结果表明,所提出的WQImin模型能够准确地评估水质。