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Simulation and Validation of Vapor Compression System Faults and Start-up/Shut-down Transients

机译:蒸汽压缩系统故障和启动/关闭瞬态的仿真和验证

摘要

The statistics from the US Department of Energy show that about one-third of the total consumption of electricity in the households and industries is due to the Air Conditioning and Refrigeration (AC & R) systems. This wide usage has prompted many researchers to develop models for each of the components of the vapor compression systems. However, there has been very little information on developing simulation models that have been validated for the conditions of start-up/shutdown operations as well as vapor compression system faults. This thesis addresses these concerns and enhances the existing modeling library to capture the transients related to the above mentioned conditions. In this thesis, the various faults occurring in a vapor compressor cycle (VCC) have been identified along with the parameters affecting them. The transients of the refrigerant have also been studied with respect to the start-up/shutdown of a vapor compression system. All the simulations related to the faults and start-up/shutdown have been performed using the vapor compression system models developed in MATLAB/Simulink environment and validated against the 3-ton air conditioning unit present in the Thermo-Fluids Control Laboratory at Texas A & M University. The simulation and validation results presented in this thesis can be used to lay out certain rules of thumb to identify a particular fault depending on the unusual behavior of the system thus helping in creating certain fault diagnostic algorithms and emphasize the importance of the study of start-up/shutdown transient characteristics from the point of actual energy efficiency of the systems. Also, these results prove the capability and validity of the finite control volume models to describe VCC system faults and start-up/shutdown transients.
机译:美国能源部的统计数据表明,家庭和工业用电量中约有三分之一是由于空调和制冷(AC&R)系统引起的。这种广泛的用途促使许多研究人员为蒸气压缩系统的每个组件开发模型。但是,关于开发仿真模型的信息很少,这些仿真模型已针对启动/关闭操作以及蒸汽压缩系统故障的情况进行了验证。本文解决了这些问题,并增强了现有的建模库以捕获与上述条件有关的瞬态。在本文中,已经确定了在蒸气压缩机循环(VCC)中发生的各种故障以及影响它们的参数。还已经针对蒸气压缩系统的启动/关闭研究了制冷剂的瞬变。使用MATLAB / Simulink环境中开发的蒸汽压缩系统模型进行了所有与故障和启动/关闭有关的仿真,并已通过德克萨斯州A&T流体热控制实验室中的3吨空调单元进行了验证。 M大学。本文中提出的仿真和验证结果可用于根据系统的异常行为,制定某些经验法则来识别特定故障,从而有助于创建某些故障诊断算法,并强调开始研究的重要性。从系统的实际能源效率的角度来提高/关闭瞬态特性。而且,这些结果证明了有限控制体积模型描述VCC系统故障和启动/关闭瞬变的能力和有效性。

著录项

  • 作者

    Ayyagari Balakrishna;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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