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Exploration on the reverse calculation method of groundwater velocity by means of the moving line heat source

机译:动线热源反演地下水速度的方法探讨

摘要

The research on the influence that groundwater exerts on borehole ground heat exchanger has been made progress. However, the investigation on how to obtain the groundwater velocity is a little. According to the line heat source model with groundwater flow, a new methodology is explored to obtain the value and direction of groundwater velocity while it flows through borehole. Some points are distributed around borehole and they have the same distance to the center line of borehole, and the temperature responses of these points are significant parameters which lay firm foundation for reverse-reasoning. The reverse-reasoning calculation can be conducted by establishing objective function. The comparisons of temperature responses between theoretical results and the simulative recorded data are made. The impact degree of groundwater flow can be displayed and then the velocity is estimated. Differences among points' temperature responses are made full use of to respectively indicate the direction and value ranges of velocity. The relativity between the points' location and the velocity intensity is investigated and then some cases are chosen as the trials to verify the rationality of reverse calculation method. To a large extent, the research work of this paper provides theoretical guidance or computing mode for getting velocity of groundwater. The methodology can be employed for obtaining the velocity in actual engineering projects or other cases.
机译:地下水对井下地面换热器影响的研究已取得进展。但是,关于如何获得地下水流速的研究很少。根据具有地下水流的线热源模型,探索了一种新的方法来获取地下水流经井眼时的速度值和方向。一些点分布在井眼周围,并且距井眼中心线的距离相同,这些点的温度响应是重要的参数,为反向推理奠定了坚实的基础。通过建立目标函数可以进行反向推理计算。对理论结果与模拟记录数据之间的温度响应进行了比较。可以显示地下水流的影响程度,然后估算速度。充分利用点之间的温度响应差异来分别指示速度的方向和值范围。研究了点的位置与速度强度之间的相关性,然后选择一些情况作为试验,以验证反向计算方法的合理性。本文的研究工作在很大程度上为获得地下水流速提供了理论指导或计算模式。该方法可用于在实际工程项目或其他情况下获得速度。

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