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基于TOUGH软件模拟加拿大BORDEN含水层储能试验
引用本文:李晓光,张延军,于子望,王成,黄贤龙,瞿成松.基于TOUGH软件模拟加拿大BORDEN含水层储能试验[J].吉林大学学报(地球科学版),2011(Z1):214-220.
作者姓名:李晓光  张延军  于子望  王成  黄贤龙  瞿成松
作者单位:吉林大学建设工程学院;黑龙江省电力勘察设计研究院;上海长凯岩土工程有限公司;
基金项目:国家自然科学基金项目(40972172); 上海市科学技术委员会资助项目(10dz1202300)
摘    要:介绍了含水层储能地下温度场和地下流场(TH)耦合运移的机理;针对加拿大BORDEN含水层储能试验及观测数据,根据实际土层工程地质、水文地质和初始温度条件,建立了BORDEN储能试验的TH耦合3D数值模型。将模拟结果与实际观测数据进行对比,二者非常接近,符合理论和实际观测情况;模拟了热羽逐渐移动的规律,证明利用TOUGH软件在地下TH耦合模拟方面的准确性和实用性,为将来的地下含水层储能工程设计提供理论基础和参考依据。

关 键 词:含水层储能  TOUGH软件  TH耦合3D数值模型  模拟

Numerical Simulation of Aquifer Thermal Energy Storage Experiment of Canadian BORDEN Based on TOUGH Software
LI Xiao-guang,ZHANG Yan-jun,YU Zi-wang,WANG Cheng,HUANG Xian-long,QU Cheng-song .College of Construction Engineering,Jilin University,Changchun ,China .Heilongjiang Provincial Power Investigation , Design Institute,Harbin ,China.Numerical Simulation of Aquifer Thermal Energy Storage Experiment of Canadian BORDEN Based on TOUGH Software[J].Journal of Jilin Unviersity:Earth Science Edition,2011(Z1):214-220.
Authors:LI Xiao-guang  ZHANG Yan-jun  YU Zi-wang  WANG Cheng  HUANG Xian-long  QU Cheng-song College of Construction Engineering  Jilin University  Changchun  China Heilongjiang Provincial Power Investigation  Design Institute  Harbin  China
Institution:LI Xiao-guang1,ZHANG Yan-jun1,YU Zi-wang1,WANG Cheng2,HUANG Xian-long1,QU Cheng-song3 1.College of Construction Engineering,Jilin University,Changchun 130026,China 2.Heilongjiang Provincial Power Investigation and Design Institute,Harbin 150010,China 3.Shanghai Changkai Geotechnical Company,Ltd,Shanghai 200002,China
Abstract:The thermal-hydrologic(TH) coupled migration mechanism of underground temperature and fluid field of ATES was introduced.Aiming at the Canadian BORDEN storage energy site test and observation data,according to engineering geological,hydrological and initial temperature conditions of actual soil layers,the TH coupled 3D numerical model of BORDEN test was built by TOUGH software.It shows that the simulation results are very proximal to the observation data and agreement with theoretical and practical observat...
Keywords:aquifer thermal energy storage  TOUGH software  thermal-hydrologic coupled 3D numerical model  simulation  
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