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Experimental and numerical investigation of heat transfer performance and sustainability of deep borehole heat exchangers coupled with ground source heat pump systems

机译:散孔热交换器耦合与地源热泵系统的实验和数值研究及深层钻孔换热器

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摘要

Deep borehole heat exchangers (DBHEs) are a state-of-the-art and feasible apparatus for building heating and renewable energy utilization. Conventional BHEs with long-term operation may experience notable performance degradation, DBHE may provide an alternative way to overcome this issue. In this paper, a numerical model was developed by considering the ground temperature gradient in the axial direction and multilayer thermal properties of rock and soil and was used to simulate the temperature distribution and the performance characteristics of coaxial DBHEs. The effectiveness of the model was validated against the experimental data collected from a demonstration project. It was shown that the simulation results agreed well with the experimental data. The DBHEs could offer a higher heat exchange capacity in comparison to conventional BHEs. In the intermittent operation for 10 years, the decreasing proportions of the outlet temperature under four different operation modes with the run-stop ratio (i.e. the ratio of the running time to the stopping time in a day) of 8:16, 12:12, 16:8 and 24:0, were no more than 3.57%. The rock temperature profiles in the heating mode of both commercial and residential buildings were presented and the annual decreasing proportions were less than 4.0%. The findings obtained from this study could be used as a reference for sustainability research of DBHEs under different working conditions and operation modes.
机译:深层钻孔热交换器(DBHOS)是用于建立加热和可再生能源利用的最先进的和可行的设备。具有长期操作的传统烟可能会遇到显着的性能下降,DBHE可以提供克服这个问题的替代方法。在本文中,通过考虑岩石和土壤的轴向和多层热性质的地温梯度来开发了数值模型,并用于模拟同轴骰子的温度分布和性能特性。根据从示范项目收集的实验数据验证了模型的有效性。结果表明,仿真结果与实验数据很好。与传统烟丝相比,DBHES可以提供​​更高的热交换能力。在10年间歇性操作中,在8:16,12:12的延迟停止比下减少四种不同操作模式下的四种不同操作模式的比例(即运行时间与停止时间的比率) ,16:8和24:0,不超过3.57%。提出了商业和住宅建筑的加热模式下的岩石温度曲线,年下降比例小于4.0%。本研究中获得的发现可作为不同工作条件和操作模式下的DBHES的可持续性研究的参考。

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