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Research on the aquifer temperature field of Groundwater Heat Pump with Pumping Recharging in the Same Well

机译:同井抽水回灌地下水热泵含水层温度场研究。

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Mathematical model of pumping and recharging well (PRW) for ground water heat pump(GWHP) was developed and two operating modes(one is operating only in winter and the other is continuous operating in winter and intermittent operating in summer) of the PRW in Shenyang for a office building was simulated and studied using the developed model. Simulation results showed that, when the GWHP operated only in winter, the largest temperature drop was about 8.3°C at the end of the first heating season. The temperature recovered only 1.2°C in the transition season when the heat pump stopped running and the groundwater will freeze in 2∼3 yeas if the system continuously running in operating only in winter mode. When the GWHP system runs in continuous operating in winter and intermittent operating in summer mode, the aquifer composed of temperature drop zone and the temperature raise zone, and the largest temperature drop and raise was about 4.5°C and 3.6°C respectively at the end of first running year. With the running of the ground water heat pump, the temperature drop zone enlarged gradually, while the temperature raise zone gradually shrunk. At the end of the fifth heating season, the temperature raise zone disappeared, the temperature drop of the aquifer was 7.5°C and the influence radius of PRW was about 58 m. It can be concluded that when the ground water heat pump operates in severe cold region, where the building heating and cold load was highly unbalanced, it was necessary to take varied seasonal thermal energy storage measures.
机译:建立了沉阳市地下水热泵抽水井(GWHP)的数学模型,并建立了两种运行模式(一种仅在冬季运行,另一种在冬季连续运行,夏季间歇运行)。使用开发的模型对办公楼进行了仿真和研究。模拟结果表明,当GWHP仅在冬季运行时,在第一个供暖季节结束时,最大的温度下降约为8.3°C。如果系统仅在冬季模式下连续运行,则在热泵停止运行的过渡季节温度仅恢复1.2°C,并且地下水将冻结2至3年。当GWHP系统在冬季连续运行和夏季模式间歇运行时,由降温区和升温区组成的含水层,最终的最大降温和升高分别为约4.5°C和3.6°C。的第一个运行年度。随着地下水热泵的运行,温度下降区逐渐扩大,而温度上升区逐渐缩小。在第五个加热季节结束时,温度升高区消失了,含水层的温度下降为7.5°C,PRW的影响半径约为58 m。可以得出结论,当地下水热泵在严寒地区运行时,建筑物的供暖和冷负荷高度不平衡,因此有必要采取各种季节性的热能存储措施。

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