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首页> 外文期刊>International Journal of Heat and Mass Transfer >A new analytical heat transfer model for deep borehole heat exchangers with coaxial tubes
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A new analytical heat transfer model for deep borehole heat exchangers with coaxial tubes

机译:具有同轴管的深层钻孔热交换器的新分析传热模型

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摘要

Deep borehole heat exchangers (DBHE) provide an effective solution for ground coupled heat pump (GCHP) systems in cold climate region where heating is dominant. Concerning the analytical heat transfer models, the simplification that borehole wall temperature is constant along the depth of ground heat exchangers (GHE) which the existing quasi-three-dimensional models have assumed in the application of shallow borehole GHE, can no longer be accepted in the application of DBHE due to the geothermal gradient in deep ground. Making this simplification cannot give the real temperature distribution of circulating fluid along the depth of DBHE. Therefore, this paper developed a new analytical model for DBHE with coaxial pipes by successfully addressing the increasing borehole wall temperature using the convolution theorem, so that the widely employed quasi-three-dimensional models for shallow borehole GHE is extended for DBHE with coaxial pipes for the first time. The new analytical model is validated by comparing with an existing numerical model. Using the newly developed analytical model, the trends revealing the relationships between thermal performance of DBHE and various parameters are firstly plotted. Because of the high accuracy and quick calculation, this new analytical model can be used as a benchmark for numerical models. More importantly, the proposed analytical model can be an effective tool for the design and optimization of DBHE, since current numerical models are always calculation-demanding, time-consuming and difficult for engineers and designers to use. Also, the method this paper proposed to address the varying borehole wall temperature can certainly be employed to improve the existing quasi-three-dimensional models for shallow borehole GHE so that they can be applicable in some other cases, for example, GHE installed in layered soils, or affected by underground seepage flow in partial depth. (C) 2019 Elsevier Ltd. All rights reserved.
机译:深层钻孔热交换器(DBHE)为加热优势的冷气候区域提供了有效的地面耦合热泵(GCHP)系统解决方案。关于分析传热模型,钻孔壁温度沿着地面热交换器(GHE)的深度恒定的简化,在应用浅层钻孔GHE的应用中,不再接受了现有的准三维模型。 DBHE由于深地地热梯度的应用。使这种简化不能沿着DBHE的深度提供循环流体的实际温度分布。因此,本文通过卷积定理成功解决了增加的钻孔壁温度,开发了一种具有同轴管的DBHE的新分析模型,从而广泛采用的浅层钻孔GHE的准三维模型为DBHE进行同轴管第一次。通过与现有数值模型进行比较,验证了新的分析模型。利用新开发的分析模型,首先绘制了DBHE热性能与各种参数之间关系的趋势。由于高精度和快速计算,这种新的分析模型可用作数值模型的基准。更重要的是,所提出的分析模型可以是DBHE的设计和优化的有效工具,因为当前数值模型始终计算苛刻,耗时和难以用于工程师和设计师。此外,本文提出解决变化的钻孔壁温度的方法肯定可以用于改善浅层钻孔GHE的现有的准三维模型,使得它们可以适用于其他情况,例如,安装在分层中的GHE土壤,或受到部分深度的地下渗流的影响。 (c)2019 Elsevier Ltd.保留所有权利。

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