...
首页> 外文期刊>Civil Engineering and Environmental Systems >ASSESSING THE STORMWATER IMPACT TO AN URBAN RIVER ECOSYSTEM USING ESTUARINE WATER QUALITY SIMULATION MODEL
【24h】

ASSESSING THE STORMWATER IMPACT TO AN URBAN RIVER ECOSYSTEM USING ESTUARINE WATER QUALITY SIMULATION MODEL

机译:利用河口水质模拟模型评估暴雨对城市生态系统的影响

获取原文
获取原文并翻译 | 示例
           

摘要

The reduced richness of fish species in the Love River has long been associated with the impact of storm flooding. During the 3-year time period of 1993-1995, it has been observed that the devastating conditions of low DO levels in the Love River frequently appear at a certain time after the emergence of peak rainfall. While the official investigation with regard to estuarine and river ecology indicates that more than 85 fish species could be found in the neighbouring river systems in South Taiwan, only 17 fish species appeared in the estuarine system of the Love River. To integrate the knowledge of environmental and ecological impacts in these extreme storm events, a two-dimensional numerical model - Love River Hydrodynamic and Water Quality model (LRHWQ) - was developed to simulate the fate and transport of contaminants in the Love River estuarine system. It eventually produces the responsive information of water quality and the dissolved oxygen deficit with respect to the combined sewer overflow (CSO) impacts along the river corridor. To justify the impact of DO level on the fish community, a laboratory analysis was conducted with respect to the living threshold of young Liza macrolepis and Chanos chanos that are two representative fish species in the group of abundant species in the Love River. The LC_(50) found in this study lies in between 0.8-1.1 mg/L; yet the saturated oxygen concentration is normally near 9.0 mg/L in the study area. The fish community is sensitive to the dissolved oxygen deficit and simulation studies confirm that simply building a sewage interceptor system to handle routine wastewater effluents without regard to the CSO issues in the storm events cannot fulfil the ultimate goal of environmental restoration in this urban river system.
机译:长期以来,洛夫河(Love River)中鱼类物种丰富度的下降与风暴洪水的影响有关。在1993年至1995年的三年期间,已经观察到在洛夫河低溶解氧水平的破坏性条件经常在出现峰值降雨之后的某个时间出现。关于河口和河流生态的官方调查表明,在台湾南部邻近的河流系统中可以发现85种以上的鱼类,而在爱河的河口系统中只有17种鱼类出现。为了整合在这些极端风暴事件中对环境和生态影响的知识,开发了二维数值模型-洛夫河水动力和水质模型(LRHWQ)-以模拟洛夫河河口系统中污染物的命运和迁移。最终生成关于沿河走廊的下水道溢流(CSO)综合影响的水质和溶解氧亏缺的响应信息。为了证明溶解氧水平对鱼类群落的影响,针对洛夫河丰富物种群中的两种代表性鱼类,年轻的丽莎大嘴and和斑潜蝇(Chanos chanos)的生活阈值进行了实验室分析。本研究中发现的LC_(50)在0.8-1.1 mg / L之间;然而,研究区域的饱和氧浓度通常接近9.0 mg / L。鱼群对溶解氧缺乏很敏感,模拟研究证实,仅仅建立一个污水拦截系统来处理常规废水,而不考虑暴风雨事件中的CSO问题,并不能实现该城市河流系统环境恢复的最终目标。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号