地下水科学与工程:英文版 · 2021年第1期1-11,共11页

Aquifer hydraulic conductivity prediction via coupling model of MCMC-ANN

作者:GUI Chun-lei,WANG Zhen-xing,MA Rong,ZUO Xue-feng

摘要:Grain-size distribution data,as a substitute for measuring hydraulic conductivity(K),has often been used to get K value indirectly.With grain-size distribution data of 150 sets of samples being input data,this study combined the Artificial Neural Network technology(ANN)and Markov Chain Monte Carlo method(MCMC),which replaced the Monte Carlo method(MC)of Generalized Likelihood Uncertainty Estimation(GLUE),to establish the GLUE-ANN model for hydraulic conductivity prediction and uncertainty analysis.By means of applying the GLUE-ANN model to a typical piedmont region and central region of North China Plain,and being compared with actually measured values of hydraulic conductivity,the relative error ranges are between 1.55%and 23.53%and between 14.08%and 27.22%respectively,the accuracy of which can meet the requirements of groundwater resources assessment.The global best parameter gained through posterior distribution test indicates that the GLUEANN model,which has satisfying sampling efficiency and optimization capability,is able to reasonably reflect the uncertainty of hydrogeological parameters.Furthermore,the influence of stochastic observation error(SOE)in grain-size analysis upon prediction of hydraulic conductivity was discussed,and it is believed that the influence can not be neglected.

发文机构:The Institute of Hydrogeology and Environmental Geology

关键词:Grain-sizedistributionHydraulicconductivityANNGLUEMCMCStochasticObservationError(SOE)

分类号:

注:学术社仅提供期刊论文索引,查看正文请前往相应的收录平台查阅
相关文章