State Key Laboratory of Hydraulic Engineering Simulation and Safety, Tianjin University, Tianjin 300072, China E-mail:
Airport College, Civil Aviation University of China, Tianjin 300300, China.
Water Sci Technol. 2014;69(3):566-72. doi: 10.2166/wst.2013.743.
Many rivers in the region of northwest China are drying up, and the ecological environment is getting worse. Studying methods of calculating the ecological water requirement (EWR) for dried-up rivers will help to slow down the deterioration of the ecological environment and conserve biodiversity. The water requirement of vegetation and infiltration (WRVI) method is proposed in this paper. This method focuses on dried-up rivers and takes the water requirement of vegetation and river bed infiltration into consideration. This is different from the conventional methods, which only focus on the rivers that have a flow rate. Due to drying, the ecological environment is worsening year by year in the lower reaches of the Zhang River in the Haihe River Basin in northwest China. This river is used as an example to determine the EWR, and the results are compared with another method. The results show that the WRVI method can calculate the EWR more accurately by considering various factors in different years and months for dried-up rivers.
中国西北地区的许多河流正在干涸,生态环境日益恶化。研究干涸河流生态需水量(EWR)的计算方法有助于减缓生态环境恶化和保护生物多样性。本文提出了植被和入渗需水量(WRVI)方法。该方法侧重于干涸的河流,并考虑植被和河床入渗的需水量。这与传统方法不同,传统方法仅关注有水流的河流。由于干涸,中国西北海河流域漳河下游的生态环境逐年恶化。本文以该河流为例,确定了 EWR,并与另一种方法进行了比较。结果表明,WRVI 方法可以通过考虑不同年份和月份干涸河流的各种因素,更准确地计算 EWR。