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Deconvolution and convolution methods for thermal response tests on borehole heat exchangers

机译:钻孔热交换器热响应试验的解卷积与卷积方法

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A thermal response test (TRT) on a borehole evaluates ground and borehole properties, which are needed in the design of borehole fields for ground source heat pump systems. Variation in the heat input rate during a TRT complicates the data analysis, when the electrical power to the test equipment is unintentionally interrupted, or other unwanted changes in the power supply occur. Then, the measured transient temperature curve is a convolution of the varying rate and the constant-unit-rate response function. A deconvolution method has been developed to determine the borehole temperature response that would have occurred if the heat input rate would have remained fixed. The deconvolution technique and the conventional temporal superposition method are validated with TRT data sets with interruptions carried out in a laboratory sandbox. The methods are also applied to field TRT data sets. The deconvolution method has the advantage of generating a smoothed temperature derivative curve, which is used to identify three distinct time periods during a TRT to enhance the analysis.
机译:钻孔上的热响应试验(TRT)评估研磨和钻孔性质,这是在地源热泵系统的钻孔场设计中所需的。在TRT期间的热输入速率的变化使数据分析复杂化,当测试设备的电力无意中中断时,或者电源的其他不需要的变化发生。然后,测量的瞬态温度曲线是变化率和恒定单元速率响应函数的卷积。已经开发了一种解构方法来确定如果热量输入速率保持固定,则确定钻孔温度响应。 Deconvolulate技术和传统的时间叠加方法用TRT数据集验证,具有在实验室沙箱中进行的中断。该方法也应用于现场TRT数据集。解卷积方法具有产生平滑温度衍生曲线的优点,该曲线用于在TRT期间识别三个不同的时间段,以增强分析。

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