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Numerical modeling airflow in soil with impact of groundwater

Numerical modeling airflow in soil with impact of groundwater
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摘要 In order to simulate the airflow in anhydrous case and the water-air flow in groundwater case, a numerical model of airflow in soil was developed. For the nonlinearity of the governing partial differential equation, the corresponding discretization and linearization methods were given. Due to the mass transfer between air-phase and water-phase, phase states of the model elements were constantly changing. Thus, parameters of the model were divided into primary ones and secondary ones, and the primary variables changing with phase states and the secondary variables can be obtained by their functional relationship with the primary variables. Additionally, the special definite condition of this numerical model was illustrated. Two examples were given to simulate the airflow in soil whether there was groundwater or not, and the effectiveness of the numerical model is verified by comparing the results of simulation with that of exoeriment. In order to simulate the airflow in anhydrous case and the water-air flow in groundwater case, a numerical model of airflow in soil was developed. For the nonlinearity of the governing partial differential equation, the corresponding discretization and linearization methods were given. Due to the mass transfer between air-phase and water-phase, phase states of the model elements were constantly changing. Thus, parameters of the model were divided into primary ones and secondary ones, and the primary variables changing with phase states and the secondary variables can be obtained by their functional relationship with the primary variables. Additionally, the special definite condition of this numerical model was illustrated. Two examples were given to simulate the airflow in soil whether there was groundwater or not, and the effectiveness of the numerical model is verified by comparing the results of simulation with that of experiment.
出处 《Journal of Central South University》 SCIE EI CAS 2013年第5期1405-1411,共7页 中南大学学报(英文版)
基金 Project(Y5080022) supported by the Natural Science Foundation of Zhejiang Province,China Project(RC1202) supported by Scientific and Technological Program of Water Resources Department of Zhejiang Province in 2012,China Project(Y201224384) supported by Scientific Research Program of Education Department of Zhejiang Province in 2012,China
关键词 GROUNDWATER water-air flow capillary pressure finite difference method compressed air 地下水影响 数值模拟 空气流 土壤 非线性偏微分方程 数值模型 线性化方法 物质转移
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