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首页> 外文期刊>International Journal of Heat and Mass Transfer >Investigation on groundwater velocity based on the finite line heat source seepage model
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Investigation on groundwater velocity based on the finite line heat source seepage model

机译:基于有限线热源渗流模型的地下水速度研究

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Groundwater seepage can improve the heat transfer performance of borehole ground heat exchanger (BGHE), and the corresponding velocity is the significant parameter which shows the degree of seepage role. The paper presents the mathematical model while groundwater flows through BGHE, and the comparisons between pure conduction and the combined heat transfer including conduction and convection are made. Points are set around borehole to test the temperature response at different time and then the goal functions containing both model results and test results are established. Next, the back calculation method is employed to obtain the value and orientation of velocity and therefore the convection role can be expressed. The reasonable points' locations along both depth and radial directions are analyzed; the comparisons of points' temperature responses are made according to the variation of seepage orientation and value. The relativity between points' locations and velocity value is discussed to make the calculation result acceptable. In addition, a number of trials are made to check the validity of back calculation method. The temperature response curves of points are shown and the characteristics embodied are investigated. Accordingly, the finite line heat source seepage model is significant to realize groundwater velocity.
机译:地下水的渗流可以改善井下地面换热器的传热性能,相应的流速是表明渗流作用程度的重要参数。本文提出了地下水流经BGHE时的数学模型,并对纯传导与包括传热和对流在内的综合传热进行了比较。在钻孔周围设置点以测试不同时间的温度响应,然后建立包含模型结果和测试结果的目标函数。接下来,采用反向计算方法获得速度的值和方向,因此可以表达对流作用。分析沿深度和径向的合理点位置;根据渗流方向和渗流值的变化对各点的温度响应进行比较。讨论了点的位置与速度值之间的相关性,以使计算结果可接受。另外,进行了许多试验以检验反算方法的有效性。显示了点的温度响应曲线,并研究了所体现的特性。因此,有限线热源渗流模型对于实现地下水速度具有重要意义。

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