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Enhancement of Heat Exchange Capacity of Ground Heat Exchangers by Injecting Water into Wells

机译:通过将水注入井中地下热交换器的热交换能力的增强

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Field experiments of cooling operation were conducted using a ground source heat pump (GSHP) system installed at greenhouse in Itoshima city, Fukuoka, Japan. There are water loss zones in the lower part of heat exchange wells which were completed without grouting. Groundwater was injected into the wells by varying the flow rate for evaluating the effects of its flow rate on enhancement of heat exchange capacity of ground heat exchangers. The results showed that significant enhancement of heat exchange capacity was achieved by injected water at the flow rate about 9 L/min in the field. Then, a numerical model was developed to simulate heat transport with injected water in the wells. Sensitivity studies were carried out with the model changing the flow rate and temperature of injected water. The results showed that injecting water at 1 L/min/well of 18°C could improve heat exchange rate by 1.7 times compared to that without injection case.
机译:使用安装在日本福冈市福冈市温室的地面源热泵(GSHP)系统进行冷却操作的现场实验。 热交换井下部有水损区,无需灌浆即可完成。 通过改变流速来注入地下水进入孔中,以评估其流速对地面热交换器的热交换能力的增强的影响。 结果表明,通过在田地中约9升/分钟的流速注入水,实现了热交换能力的显着增强。 然后,开发了一种数值模型来模拟井中注入水的热传输。 用模型改变喷射水的流速和温度进行敏感性研究。 结果表明,与没有注射箱的情况相比,1 L / min / min / min / min / min / min的注入水可以将热汇率提高1.7倍。

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