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An improved hydronic loop system solution algorithm with a zone-coupled horizontal ground heat exchanger model for whole building energy simulation.

机译:具有区域耦合水平地面换热器模型的改进的水力循环系统求解算法,可用于整个建筑的能源模拟。

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摘要

Whole building energy simulation is a simulation platform which includes any number of aspects of a building. These tools are generally capable of simulating zones, air systems, hydronic systems, electric generation systems, among others. This simulation environment can be leveraged when investigating the integration between simulation domains. This research effort consists of three main foci, each of which is related to the concept of integration of simulation systems, within the context of whole building energy simulation.;A new hydronic system solution algorithm is developed and implemented in EnergyPlus which integrates the component and system simulation models, providing a flexible and robust simulation.;The effects of transport delay in a piping system are investigated, with experimental data being taken at a horizontal borehole test site. Experimental validation implies that transport delay effects can be predicted using a blended set of model results. Bounding studies demonstrate that the effects on a hydronic loop are less sensitive on a particular transport delay model, and more sensitive to the overall loop topology and configuration.;A ground heat exchanger model that integrates the hydronic simulation model, a ground simulation domain, and zone heat balance calculations is developed. The ground heat exchanger model was validated against experimental data to a high degree of accuracy using a coarse grid, providing a low computational burden suitable for implementation in a whole building energy simulation shell.
机译:整个建筑能源模拟是一个模拟平台,其中包括建筑物的许多方面。这些工具通常能够模拟区域,空气系统,水力系统,发电系统等。调查仿真域之间的集成时,可以利用此仿真环境。这项研究工作包括三个主要重点,在整个建筑能耗模拟的背景下,每个重点都与模拟系统集成的概念有关。;在EnergyPlus中开发并实现了一种新的水力系统解决方案算法,该算法将组件和系统模拟模型,提供了灵活而强大的模拟。研究了管道系统中运输延迟的影响,并在水平井眼测试现场获取了实验数据。实验验证表明,可以使用一组混合的模型结果来预测运输延迟效应。边界研究表明,对水力循环的影响在特定的运输延迟模型上较不敏感,而对整体回路拓扑和配置更敏感。;地面换热器模型,集成了水力模拟模型,地面模拟域和开发了区域热平衡计算。使用粗网格对地面换热器模型进行了高精度的实验数据验证,计算负荷低,适合在整个建筑能耗模拟框架中实施。

著录项

  • 作者

    Lee, Edwin Scott.;

  • 作者单位

    Oklahoma State University.;

  • 授予单位 Oklahoma State University.;
  • 学科 Engineering Mechanical.;Energy.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 325 p.
  • 总页数 325
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:41:17

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