暖通空调>期刊目次>2021年>第7期

不同多孔介质及地下水源热泵运行方式对采能区热贯通的影响

Influence of different porous media and groundwater-source heat pump operation modes on thermal breakthrough in energy extraction area

那威 夏秋阳
北京建筑大学

摘要:

 为研究不同多孔介质对地下水源热泵采能区温度场的影响,建立了地下含水层水热耦合模型,对地下水源热泵在5种多孔介质条件下运行时地下温度场的变化进行了模拟分析,根据发生热贯通的时间及回灌水的温度扩散程度提出了合理井距和优化运行模式。结果表明:在地下水自然横流自抽水井一侧流向回灌井的条件下,细砂最易发生热贯通,其次为中砂、中粗砂,粗砂和砂砾最不易发生热贯通;回灌水热影响半径随着渗透系数增大而减小的明显程度由大到小为粗砂、中粗砂、砂砾、中砂、细砂,但砂砾热影响半径明显小于其他多孔介质;由拟合曲线可得出不同多孔介质在不同渗透系数下的合理井距;以大温差小流量模式运行有助于缓解或避免热贯通,多孔介质为细砂时优化效果更为明显。

关键词:多孔介质,地下水源热泵,采能区,热贯通,温度场,热影响半径,井距,运行模式

Abstract:

In order to study the influence of different porous media on the temperature field in the energy extraction area of the groundwater-source heat pump, establishes an aquifer water-thermal coupling model to simulate and analyse the changes of the groundwater temperature field when the groundwater-source heat pump operates under five kinds of porous media conditions.Proposes the reasonable well spacing and the optimal operation mode based on the time of thermal breakthrough and the temperature diffusion degree of recharging water. The results indicate that under the condition of natural cross flow of groundwater flowing from the pumping well to the recharge well, fine sand is the most prone to thermal breakthrough, followed by medium sand and medium coarse sand, and coarse sand and gravel are the least likely to prone thermal breakthrough. The obvious extent that the heat influence radius of recharging water decreases with the increase of permeability coefficient is ranked as coarse sand, medium coarse sand, gravel, medium sand and fine sand, but the heat influence radius of gravel is significantly smaller than that of other porous media. The reasonable well spacing of different porous media with different permeability coefficients can be obtained from the fitting curve. The operation mode of large temperature difference and small flow rate contributes to alleviate or avoid thermal breakthrough, and the optimization effect is more obvious when the porous media is fine sand.

Keywords:porousmedium,groundwater-sourceheatpump,energyextractionarea,thermalbreakthrough,temperaturefield,heatinfluenceradius,wellspacing,operationmode

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