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Modeling of vertical ground loop heat exchangers for ground source heat pump systems.

机译:用于地源热泵系统的垂直地面回路热交换器的建模。

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摘要

Scope and method of study. The purpose of this study was to examine the short time step behavior of vertical ground loop heat exchangers for ground source heat pump systems. A transient, two-dimensional finite volume model of the ground heat exchanger is developed for two purposes: (1) Non-dimensional temperature response factors for various ground heat exchanger borehole configurations are developed for hourly or less time steps. Such response curves provide a computationally efficient method of determining borefield thermal responses for building energy simulation. The short time step model is cast as a TRNSYS component model and is validated using actual field data from two example buildings. (2) The numerical model of the ground loop heat exchanger is used to develop a procedure to predict the effective thermal conductivity of ground formation surrounding the borehole. The procedure utilizes the downhill simplex parameter estimation technique of Nelder and Mead and is based on the inverse heat transfer approach. The objective function for the parameter estimation is defined to minimize the experimental and predicted borehole thermal responses. The effective thermal conductivity of the ground is found by minimizing the objective function.; Findings and conclusions. The transient, two-dimensional finite volume model of the ground heat exchanger borehole is a significant improvement over the currently available analytical (line source or cylinder source models) and numerical modeling approaches. It provides a significantly more accurate representation of the ground heat exchanger borehole by separately modeling the individual borehole components. The non-dimensional, short time-step response factors are a very useful extension of the long time-step response factors. The short time step response factors allow for an hour-by-hour or shorter time-step evaluation of system energy consumption and electrical demand. A more accurate and detailed assessment of the short-term behavior of ground-coupled heat pump systems can thus be made for the design of ground loop heat exchangers, energy analysis of ground source heat pump systems, and design and dynamic behavior of hybrid ground source systems.
机译:研究范围和方法。这项研究的目的是检查用于地源热泵系统的立式接地回路热交换器的短时间阶跃行为。出于以下两个目的,开发了地面热交换器的瞬态二维有限体积模型:(1)针对每小时或更少的时间步长开发了各种地面热交换器钻孔配置的无维温度响应因子。这样的响应曲线为确定建筑能量模拟提供了确定井场热响应的计算有效方法。短时间步长模型被转换为TRNSYS组件模型,并使用来自两个示例建筑物的实际现场数据进行了验证。 (2)使用地面回路热交换器的数值模型来开发程序,以预测井眼周围地层的有效导热系数。该程序利用了Nelder和Mead的下坡单纯形参数估计技术,并且基于逆传热方法。定义参数估计的目标函数是为了最大程度地减少实验和预测的井眼热响应。通过使目标函数最小化,可以找到地面的有效导热率。 发现和结论。地面换热器钻孔的瞬态二维有限体积模型是对当前可用的分析(线源或圆柱源模型)和数值建模方法的重大改进。通过单独建模各个井眼组件,可以显着更准确地表示地面热交换器井眼。无量纲的短时间步长响应因子是长时间步长响应因子的非常有用的扩展。较短的时间步长响应因子允许按小时或更短的时间步长评估系统能耗和电力需求。因此,可以对接地耦合热泵系统的短期行为进行更准确,更详细的评估,以用于接地回路热交换器的设计,接地源热泵系统的能量分析以及混合地面源的设计和动态行为。系统。

著录项

  • 作者

    Yavuzturk, Cenk.;

  • 作者单位

    Oklahoma State University.;

  • 授予单位 Oklahoma State University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 234 p.
  • 总页数 234
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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