标题: 地下水非均质等向性场之条件模拟与水层异向性分析
Conditional Simulation for Heterogeneous and Isotropic Conductivity Fields and Aquifer Anisotropy Analyses
作者: 詹易哲
Yi-Che Chan
叶弘德
Hund-Der Yeh
环境工程系所
关键字: MODFLOW;地质统计;空间相关随机场;模拟退火演算法;循序高斯法;MODFLOW;geostatistics;spatially-correlated random field;Simulated;Sequential Gaussian Simulation
公开日期: 2003
摘要: 传统上,Papadopulos’ approach (PA)常被用来推求含水层蓄水系数和异向性导水系数值,该方法基本上,是假设水层具均质、非等向性。一个现地为等向、非均质的地下水场址,若没有经过详细的水层特性调查,贸然假设含水层具均质、异向性,并以PA推求水层异向性参数,可能不适当,而求得的参数值,也不具代表性。前人的研究显示,针对一个具等向性的乱数导水系数场或具空间相关的随机导水系数场,作抽水试验数据分析时,会得到均质而具异向性的导水系数值。
给定一些现地的地质条件,如导水系数的平均值、变异数、及相关尺度,地质统计里的随机场产生器,可合成出具某种特性的导水系数场,以供各种研究分析用。事实上,随机场产生的数值是随机的,并没有包括或反映已知的现地值,较不具代表性;而具条件模拟的乱数随机场,产生的非均质场,可包含水层里某些地点已知的水文地质参数值。本文的目的,在探讨具条件模拟的非均质随机场,对含水层做均质异向性分析的影响。在分析水层异向性时,针对模拟退火演算法与循序高斯法,这两个具条件模拟乱场产生器所产生的随机场,作抽水试验数据异向性分析结果的比较。本研究工作,利用MODFLOW来模拟水层抽水泄降的行为,所得的数据,进一步利用PA推求水层具异向性的水文地质参数值。
若依蒙地卡罗方法,利用模拟退火演算法或循序高斯法,可大量产生具条件模拟与非均质的导水系数场,透过MODFLOW产生泄降数据,再利用PA求异向性参数,所得结果,可探讨水层导水系数场的变异数对含水层异向性的影响。本研究成果显示,具条件模拟的产生器产生等向非均质场,若经由上述步骤作异向性分析,可求得具异向性的导水系数,且异向性程度,随导水系数变异系数增加而增加;但具条件模拟非均质场的变异系数值,与所加入条件模拟数据之标准偏差不大时,其分析结果比不具条件模拟来的小。
Papadopulos’ approach (PA) was commonly employed to determine the aquifer anisotropic parameters for an aquifer under homogeneous and anisotropic assumptions. However, such assumptions and applications of PA are not suitable for heterogeneous and isotropic aquifers. A numerical method, named as PANM, developed based on PA and nonlinear least-squares and finite-difference Newton's method (NLN) was used to analyze the anisotropic parameters. To explore the effects of heterogeneous and isotropic aquifer on anisotropic analyses, geostatistical methods assist to generate heterogeneous conductivity fields for succeeding studies and PANM is used to analyze aquifer anisotropy. Simulated Annealing (SA) and Sequential Gaussian Simulation (SGS), used to generate conductivity fields, have the abilities of producing conditional fields without losing known geology information. The purpose of this thesis is to explore the effects of aquifer heterogeneity with conditioning information on the anisotropy analysis and discusses the analyzed results for conditional and unconditional cases. Four steps are taken in this study. First, SA and SGS were employed to generate conditional and unconditional random conductivity fields. Second, the ground-water flow model MODFLOW with heterogeneous transimissivity fields was used to simulate pumping test and generate the time-drawdown data. Third, the time-drawdown data was analyzed by PA to determine the aquifer storativity and anisotropic transmissivity. Finally, the Monte Carlo method was used to analyze the effects of the conductivity variance of generated fields on the anisotropy analysis. The results demonstrated that conditional/unconditional heterogeneous and isotropic conductivity fields also appeared anisotropic characters
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT009119519
http://hdl.handle.net/11536/51635
显示于类别:Thesis