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The likelihood evaluation of the heat exchanger unit model design method in the ground source heat pump system utilizing heat exchanger piles

机译:热交换器桩地下源热泵系统中热交换器单元模型设计方法的似然评价

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A ground source heat pump system (GSHP) utilizing the foundation piles as heat exchangers is expected to reduce the initial cost compared with the borehole type of the conventional system because the heat exchanger piles is not needed to install anew. However, the arrangement of the piles is depend on the floor layout of a residence. Therefore, the thermal performance prediction of heat exchange piles has to strictly conduct three-dimensional analysis for every residence. Conducting such analysis, it is a heavy burden for a designer to perform performance prediction of the GSHP with satisfaction of the annual heating and cooling demand. Then, the two- dimensional heat unit model was proposed in order to ease a designer's burden. This model has the characteristic of originally not using the soil portion where the ground heat source is available. And if it is seemed to be the design likelihood, it makes the designer's load reduce. The introductory possibility of the GSHP, which uses the foundation pile in the semi-cold district of our country, is shown by the numerical analysis using this model. It is necessary to show clearly how much the analytical results calculated by use of this model has likelihood. Then, as compared with the higher-dimensional analysis results, the same heating demand conditions are employed at the thermal prediction. The rectangular and triangle arrangements of piles are inquired for the evaluations. The finite difference method is employed for the numerical analysis. It is shown that the evaluation using the proposed model has an average of 10 – 50% of likelihood compared with the higher dimensional analysis evaluation when single layer of piles surrounds the center piles. In the case of the arrangements in which multi layers of piles surround the center piles, the proposed thermal unit model leads the same analytical results by use of higher dimensional coordinates model.
机译:利用基础桩作为热交换器的地面热泵系统(GSHP)预计与传统系统的钻孔型相比,将初始成本降低,因为不需要热交换器桩重新安装。然而,桩的布置取决于住宅的地板布局。因此,热交换桩的热性能预测必须严格对每个住宅进行三维分析。进行这种分析,设计师对GSHP的性能预测进行了沉重的负担,以满足年度加热和冷却需求。然后,提出了二维热单元模型,以便于设计人员的负担。该模型具有最初不使用地热源可用的土壤部分的特点。如果似乎是设计可能性,它使设计人员的负载减少。使用该模型的数值分析显示了在我国半冷区中使用基础桩的GSHP的介绍性可能性。有必要清楚地显示通过使用该模型计算的分析结果有可能性。然后,与高尺寸分析结果相比,热预测采用相同的加热需求条件。征用矩形和三角形安排征用评估。有限差分法用于数值分析。结果表明,与单层桩围绕中心桩时,使用所提出的模型的评估平均值为10-50%的可能性较高的尺寸分析评估。在该布置的情况下,其中堆叠的多层围绕中心桩,所提出的热单元模型通过使用高维坐标模型来引入相同的分析结果。

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