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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Application of artificial neural networks to near-instant construction of short-term g-functions
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Application of artificial neural networks to near-instant construction of short-term g-functions

机译:人工神经网络在短期G函数附近临时构建的应用

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摘要

The concept of a g-function is frequently used to simplify the simulation of a ground heat exchanger composed of several boreholes. The technique is suitable for modelling long-term thermal interactions, although it suffers from a lack of accuracy in the short term. Alternatively, models based on the theory of thermal resistances and capacities provide a more accurate solution for the short term but at the cost of a long solution time that prevents an efficient iterative use. In this work, an artificial neural network designed to rapidly and accurately construct the short-term g-function of a ground heat exchanger is presented. To assemble a large training set, 15 000 simulations are performed with an accurate thermal resistance and capacity model. The boundary conditions used to solve the model allow direct construction of the short-term g-function for the outlet fluid temperature. A multilayer perception architecture is proposed in conjunction with a methodology designed to reduce training time and increase the accuracy of the neural network. The output of the resulting network is compared with numerical and experimental data sets. The construction of a short-term g-function by an artificial neural network is 10 000 times faster and achieved in a few milliseconds. A source code combining efficiently a short- and long-term g-function is published with the paper.
机译:G函数的概念经常用于简化由几个钻孔组成的地热交换器的模拟。该技术适用于建模长期热相互作用,尽管它在短期内缺乏精度。或者,基于热阻理论和容量的模型为短期提供了更准确的解决方案,但在长的解决时间的成本中可以防止有效的迭代使用。在这项工作中,提出了一种设计用于快速准确地构造地面热交换器的短期G函数的人工神经网络。为了组装大型训练集,使用精确的热阻和容量模型进行15 000次模拟。用于解决模型的边界条件允许直接构造出口流体温度的短期G函数。结合多层感知架构,与旨在减少培训时间并提高神经网络的准确性的方法。将得到的网络的输出与数值和实验数据集进行比较。人工神经网络的短期G函数的构造速度快10 000倍,在几毫秒内实现。源代码与纸张发布了有效的短期和长期G函数。

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