文章摘要
张 琳, 程大伟, 詹红兵, 杨胜科, 梁修雨, 张晓斐, 晋浩颖.定位在进气值面的Boussinesq河流-地下水交互模型Journal of Water Resources and Water Engineering[J].,2024,35(6):54-62
定位在进气值面的Boussinesq河流-地下水交互模型
Boussinesq stream-groundwater interaction model positioned on the air entry plane
  
DOI:10.11705/j.issn.1672-643X.2024.06.06
中文关键词: 河流-地下水交互  进气值面  Boussinesq方程  Laplace变换  参数反演  解析解
英文关键词: stream-groundwater interaction  air entry plane  Boussinesq equation  Laplace transform  parameter inversion  analytical solution
基金项目:国家重点研发计划项目(2020YFC1808304); 国家自然科学基金项目(41602237); 陕西省创新能力支撑计划项目(2024RS-CXTD-54)
Author NameAffiliation
ZHANG Lin1,2, CHENG Dawei1,2, ZHAN Hongbing3, YANG Shengke1,2, LIANG Xiuyu4, ZHANG Xiaofei5, JIN Haoying1,2 (1.长安大学 水利与环境学院 陕西 西安 710064 2.长安大学 旱区地下水文与生态效应教育部重点实验室 陕西 西安 710064 3.德克萨斯农工大学 地理与地球物理系 德克萨斯 卡城TX 77843-3115美国4.南方科技大学 环境科学与工程学院 广东 深圳 518055 5.西安曲江渼陂湖投资建设有限公司 陕西 西安 710300) 
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中文摘要:
      河流-地下水交互对维持河流及周边生态系统功能、水资源可持续利用、水环境保护等方面具有重要影响。以定位在进气值面处的Boussinesq方程为控制方程,构建定位在进气值面的Boussinesq河流-地下水交互模型,采用Laplace变换获取了模型的解析解,并构建相应的参数反演模型;通过与饱和-非饱和渗流数值解对比,验证新模型的合理性;利用参数敏感性分析探讨进气值面高程的变化特征;基于进气值面处渗流连续性方程和水量均衡关系推导出进气值面处铅直方向渗流分速度解析解,并对比了进气值面处铅直方向渗流分速度解析解与数值解,讨论了进气值面处铅直方向渗流分速度变化特征。结果表明:定位在进气值面的Boussinesq河流-地下水交互模型的解析解与饱和-非饱和流数值模拟吻合度较高,其解析解是合理的;与其他模型相比,该模型能够克服自由面定在潜水面处的局限性,其理论基础更加坚实、参数的物理意义更加合理。
英文摘要:
      Stream-groundwater interactions are crucial for the stream and surrounding ecosystem conservation, which also have a great impact on sustainable water resources utilization and water environment protection. To address the limitations of previous studies in locating the free surface at the water table, this paper adopts the Boussinesq equation as the governing equation to construct a stream-groundwater interaction model located at the air entry plane. Laplace transform is used to obtain the analytical solution of the model, and a corresponding parameter inversion model is constructed in the meantime. By comparing the analytical solution with the numerical solution of saturated-unsaturated seepage, the validity of the proposed model is verified. Subsequently, a parameter sensitivity analysis is conducted to investigate the variations in air entry plane elevation. The calculation method and distinctive features of vertical velocity at the air entry plane are discussed based on the seepage continuity equation and water balance relationship. The findings demonstrate that the Boussinesq stream-groundwater interaction model is in excellent agreement with the numerical solution, thereby validating the effectiveness of the modified model. In contrast to previous models, the model addresses the limitations associated with the free surface at the water table, providing a more robust theoretical foundation and more logical physical interpretations of the parameters.
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