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Energy Performance and Optimal Control of Air-conditioned Buildings Integrated with Phase Change Materials.

机译:集成相变材料的空调建筑物的能源性能和最佳控制。

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摘要

This thesis presents an overview of the previous research work on dynamic characteristics and energy performance of buildings due to the integration of PCMs. The research work on dynamic characteristics and energy performance of buildings using PCMs both with and without air-conditioning is reviewed. Since the particular interest in using PCMs for free cooling and peak load shifting, specific research efforts on both subjects are reviewed separately.;A simplified physical dynamic model of building structures integrated with SSPCM (shaped-stabilized phase change material) is developed and validated in this study. The simplified physical model represents the wall by 3 resistances and 2 capacitances and the PCM layer by 4 resistances and 2 capacitances respectively while the key issue is the parameter identification of the model.;This thesis also presents the studies on the thermodynamic characteristics of buildings enhanced by PCM and on the investigation of the impacts of PCM on the building cooling load and peak cooling demand at different climates and seasons as well as the optimal operation and control strategies to reduce the energy consumption and energy cost by reducing the air-conditioning energy consumption and peak load.;An office building floor with typical variable air volume (VAV) air-conditioning system is used and simulated as the reference building in the comparison study. The envelopes of the studied building are further enhanced by integrating the PCM layers. The building system is tested in two selected cities of typical climates in China including Hong Kong and Beijing. The cold charge and discharge processes, the operation and control strategies of night ventilation and the air temperature set-point reset strategy for minimizing the energy consumption and electricity cost are studied. This thesis presents the simulation test platform, the test results on the cold storage and discharge processes, the air-conditioning energy consumption and demand reduction potentials in typical air-conditioning seasons in typical China cites as well as the impacts of operation and control strategies.
机译:本文概述了由于PCM的集成而对建筑物的动态特性和能源性能进行的先前研究工作。回顾了在有空调和无空调的情况下使用PCM的建筑物的动态特性和能源性能的研究工作。由于对使用PCM进行自然冷却和峰值负荷转移具有特别的兴趣,因此分别对这两个主题进行了具体研究。;开发并验证了与SSPCM(形状稳定的相变材料)集成的建筑结构的简化物理动力学模型。这项研究。简化的物理模型分别用3个电阻和2个电容表示墙,而PCM层则用4个电阻和2个电容表示,而关键是模型的参数识别。;本文还对增强建筑物的热力学特性进行了研究。 PCM并研究了PCM对不同气候和季节下建筑制冷负荷和峰值制冷需求的影响,以及通过降低空调能耗来降低能耗和能源成本的最佳运行和控制策略在比较研究中,使用具有典型可变风量(VAV)空调系统的办公楼地板,并将其模拟为参考建筑物。通过集成PCM层,可以进一步增强研究建筑的围护结构。该建筑系统已在中国两个典型气候典型城市中进行了测试,包括香港和北京。研究了冷充放电过程,夜间通风的操作和控制策略以及使能耗和电费最小化的空气温度设定点复位策略。本文提出了模拟测试平台,对中国典型空调季节的冷,蓄冷过程,空调能耗和需求减少潜力的测试结果,以及运行和控制策略的影响。

著录项

  • 作者

    Zhu, Na.;

  • 作者单位

    Hong Kong Polytechnic University (Hong Kong).;

  • 授予单位 Hong Kong Polytechnic University (Hong Kong).;
  • 学科 Engineering Civil.;Energy.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 191 p.
  • 总页数 191
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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