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3D transient heat transfer numerical analysis of multiple energy piles

机译:多个能量堆的3D瞬态传热数值分析

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摘要

This paper presents a three-dimensional (3D) transient heat transfer numerical model for multiple energy piles based on the finite volume method (FVM). The initial and boundary conditions are established and the effects of “thermal short-circulating” between two pipes of a U-tube in energy pile are investigated. Thermal partial differential equations are discretized at the spatial nodal points and solved by linear approximation method. Temperature variations of working fluid, energy pile and its surrounding soil from simulation program are compared with experimental data to validate the developed model. In addition, the influences of fluid flow rate and U-tube shank spacing are analysed. It is established that the shank spacing should be set in a range of 0.06m to 0.10m to reduce heat transfer between the two pipes and meet the structural requirement. Meanwhile, the flow rate should be controlled in a range of 0.5m3/h to 0.7m3/h to avoid the low outlet fluid temperature and decrease the influence of “thermal short-circuiting”.
机译:本文提出了一种基于有限体积法(FVM)的多能量堆三维(3D)瞬态传热数值模型。建立了初始和边界条件,并研究了能量桩中U形管的两根管之间的“热短循环”效应。热偏微分方程在空间节点处离散,并通过线性逼近法求解。将模拟程序中的工作流体,能量堆及其周围土壤的温度变化与实验数据进行比较,以验证所开发的模型。另外,分析了流体流速和U型管柄间距的影响。已经确定,杆间距应设置在0.06m至0.10m的范围内,以减少两根管之间的热传递并满足结构要求。同时,应将流量控制在0.5m3 / h至0.7m3 / h的范围内,以避免出口流体温度低,并减少“热短路”的影响。

著录项

  • 作者

    Cui Yuanlong; Zhu Jie;

  • 作者单位
  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 en
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