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首页> 外文期刊>Science and Technology for the Built Environment >Improvements on the American Society of Heating, Refrigeration, and Air-Conditioning Engineers Handbook equations for sizing borehole ground heat exchangers
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Improvements on the American Society of Heating, Refrigeration, and Air-Conditioning Engineers Handbook equations for sizing borehole ground heat exchangers

机译:美国加热,制冷和空调工程师手册方程的改进,用于钻孔钻孔地换热器

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摘要

There is much room for improvement in the method of ground heat exchangers design presented in the ASHRAE handbook. This article reports on an alternative equation for sizing ground heat exchangers, anchored to recently developed quasi-three dimensional and full-scale line source models. The theoretically complete models not only simplify the form of the design equation but improve the ASHRAE equations in calculating the short-term thermal resistance and tackling the effect of the variation in fluid temperature along U-shaped pipes (including the effect of flow rate). The authors provide a set of charts (G-charts), allowing engineers to conveniently calculate short- and long-term ground thermal resistances. The new equation always yields less conservative design lengths than the ASHRAE equations. The new equation is validated by in situ data, which are carefully monitored from four ground-coupled heat pump systems in the world, confirming that less conservative designs are more close to actual borehole depths, at least, in the three of the four systems. Moreover, the current article presents a sensitivity analysis and Monte Carlo simulation to explore the sensitivity and robustness of the new equation.
机译:在Ashrae手册中呈现的地面热交换器设计方法有很多空间。本文报告了校验型换热器的替代方程,锚定到最近开发的准三维和全尺寸线源模型。理论上完整的模型不仅简化了设计方程的形式,而且改善了ASHRAE方程,计算了短期热阻,并解决了沿U形管道的流体温度变化的效果(包括流速的效果)。作者提供了一套图表(G-SCHARE),允许工程师方便地计算短期和长期地热阻。新方程总是产生比ASHRAE方程更少的保守设计长度。新的等式通过原位数据验证,这些数据从世界上的四个地面耦合的热泵系统仔细监测,确认较少的保守设计更靠近实际钻孔深度,至少在四个系统中的三个系统中。此外,本文提出了灵敏度分析和蒙特卡罗模拟,以探讨新方程的灵敏度和鲁棒性。

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