地下水源热泵,抽灌井优化,温度场变化,参数灵敏度,石家庄
," /> 地下水源热泵,抽灌井优化,温度场变化,参数灵敏度,石家庄
,"/> groundwater source heat pump,optimal layout of pumping and recharging wells,temperature field changes,parameter sensitivity,Shijiazhuang

  ,"/> <span>地下水源热泵抽灌井优化布置及参数灵敏度</span>

吉林大学学报(地球科学版) ›› 2023, Vol. 53 ›› Issue (1): 218-229.doi: 10.13278/j.cnki.jjuese.20210222

• 地质工程与环境工程 • 上一篇    下一篇

地下水源热泵抽灌井优化布置及参数灵敏度

闫佰忠1,2,3,徐文杰1,2,3,李玉涵1,2,3,4,孙剑1,2,3,毕攀1,2,3,李瑶1,2,3,张旭5   

  1. 1.河北地质大学水资源与环境学院/河北省高校生态环境地质应用技术研发中心,石家庄050031

    2.河北省水资源可持续利用与开发重点实验室,石家庄050031

    3.河北省水资源可持续利用与产业结构优化协同创新中心,石家庄050031

    4.吉林大学新能源与环境学院,长春130021

    5.河北省地矿局第四水文工程地质大队,河北沧州061000

  • 收稿日期:2021-07-18 出版日期:2023-01-26 发布日期:2023-04-11

Optimal Layout of Pumping and Recharging Wells for Groundwater Source Heat Pump and Parameter Sensitivity

Yan Baizhong1,2,3, Xu Wenjie1,2,3, Li Yuhan1,2,3,4, Sun Jian1,2,3, Bi Pan1,2,3, Li Yao1,2,3, Zhang Xu5   

  1. 1. School of Water Resources & Environment, Hebei GEO University/ Hebei Center of Ecological and Environmental

    Geology Research, Shijiazhuang 050031, China

    2. Hebei Province Key Laboratory of Sustained Utilization & Development of Water Resources, Shijiazhuang 050031, China

    3. Hebei Province Collaborative Innovation Center for Sustainable Utilization of Water Resources and Optimization of

    Industrial Structure, Shijiazhuang 050031, China

    4. College of New Energy and Environment, Jilin University, Changchun 130021, China

    5. Fourth Hydrogeological Engineering Geological Brigade of Hebei Bureau of Geology and Mineral Resources,Cangzhou 061000,Hebei,China

  • Received:2021-07-18 Online:2023-01-26 Published:2023-04-11

摘要:

为了确定地下水源热泵的最佳布井方式,探明含水层温度场变化特征以及水文地质参数灵敏性,以石家庄地下水源热泵适宜区肖家营—东兆通为研究区,基于热储层的地热地质条件和热物性参数,利用FEFLOW软件构建了三维水-热耦合数值模拟模型。在2 000 m3/d的抽灌量下对不同井间距、不同布井模式-含水层温度场变化进行模拟,探讨发生热突破的可能性,并探讨温度场关于热导率、渗透系数、孔隙率等参数的灵敏度。研究结果表明:1)在单抽双灌模式下,方案C(两眼回灌井连线与地下水流向垂直,一眼回灌井位于抽水井正下游,另一眼回灌井位于沿地下水流向45°方向,即两回灌井与抽水井组成等腰直角三角形,抽水井正下游的回灌井为直角顶点)的布井方案对含水层温度场影响最小,为最优方案;2)单抽双灌模式下,抽灌量为2 000 m3/d时,方案C抽灌井间距设置在40~50 m较为合理;3)抽灌过程中,温度场对于渗透系数的改变灵敏度较高,而对孔隙率以及热导率的改变灵敏度较低。


关键词: 地下水源热泵')">

地下水源热泵, 抽灌井优化, 温度场变化, 参数灵敏度, 石家庄

Abstract:

In order to determine the best well layout of groundwater source heat pump, to explore the variation characteristics of aquifer temperature field and the sensitivity of hydrogeological parameters. Based on the geothermal geological conditions and thermophysical parameters of the thermal reservoir, a three-dimensional water heat coupling numerical simulation model was constructed by using FEFLOW software in Xiaojiaying-Dongzhaotong groundwater source heat pump suitable area of Shijiazhuang. Under the pumping and irrigation capacity of 2 000 m3/d, the temperature field of aquifer with different well spacing, different well layout mode was simulated to explore the possibility of thermal breakthrough, and the sensitivity of thermal conductivity, permeability coefficient, porosity and other parameters of the temperature field were studied. The results showed that: 1) For the single pumping and double irrigation mode, Scheme C (the reinjection well was located at the downstream of the pumping well and the connecting line was perpendicular to the groundwater flow direction, and the two reinjection wells and the pumping well form an isosceles right triangle), the well layout scheme had the least impact on the temperature field of the aquifer and was the optimal scheme; 2) Under the single pumping and double irrigation mode, when the pumping and irrigation volume was 2 000 m3/d, the spacing of pumping and irrigation wells in Scheme C was set at 40-50 m, which was more reasonable; 3) In the process of pumping and irrigation, the temperature field was more sensitive to the change of permeability coefficient, but less sensitive to the change of porosity and thermal conductivity.


Key words: groundwater source heat pump')">

groundwater source heat pump, optimal layout of pumping and recharging wells, temperature field changes, parameter sensitivity,   ')">Shijiazhuang

 

中图分类号: 

  • TP31
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