...
首页> 外文期刊>Journal of limnology >Sensitivity and uncertainty analysis on water quality modelling of Aguamilpa reservoir
【24h】

Sensitivity and uncertainty analysis on water quality modelling of Aguamilpa reservoir

机译:阿瓜米尔帕水库水质模型的敏感性和不确定性分析

获取原文
           

摘要

The use of water quality models is determined to a great extent by their ability to accurately reproduce observed data series and by their predictive capability without the need to adjust the calibrated parameters. However, the observed abiotic variables involved in a system are measured with a level of uncertainty. The sensitivity analysis concepts and generalized methodology of uncertainty analysis were used via a computer tool called UNCSIM. As a first step, a parametric optimization model of the Aguamilpa reservoir water quality was accomplished. The aforementioned analysis identified that the wind sheltering coefficient (WSC), Chezy bottom friction solution (FRICC), and coefficient of bottom heat exchange (CBHE) were the parameters of the CE-QUAL-W2 model that significantly influenced the behaviour of temperature and dissolved oxygen concentration in the reservoir. Afterwards, the uncertainty of the water quality model was evaluated through the modification of the hydrological and climatological information, which had a major influence on the simulation of the system. This analysis showed the possible changes in hydrodynamic and water quality characteristics of the reservoir, including an increase in the thermocline due to a possible air temperature increase and a rainfall decrease in the region. The innovative coupling routine of the different modules for the sensitivity and uncertainty analysis developed in this research establishes the basis for the future development of a modelling platform to conduct water quality simulations of the Aguamilpa reservoir in real time through continuous meteorological and water discharge information.
机译:水质模型的使用在很大程度上取决于其精确再现观测数据序列的能力以及其预测能力而无需调整校准参数。但是,系统中观察到的非生物变量的测量具有不确定性。通过称为UNCSIM的计算机工具使用了敏感性分析的概念和不确定性分析的通用方法。第一步,完成了阿瓜米尔帕水库水质参数优化模型。上述分析表明,风挡系数(WSC),Chezy底部摩擦解(FRICC)和底部热交换系数(CBHE)是CE-QUAL-W2模型的参数,这些参数显着影响温度和溶解行为储罐中的氧气浓度。之后,通过修改水文和气候信息来评估水质模型的不确定性,这对系统的仿真产生了重大影响。该分析表明,该水库的水动力和水质特征可能发生变化,包括由于可能的气温升高和该地区降雨减少而引起的温跃层增加。本研究中开发的用于灵敏度和不确定性分析的不同模块的创新耦合程序,为未来开发建模平台提供了基础,该平台将通过连续的气象和排水信息实时进行阿瓜米尔帕水库的水质模拟。

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