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Empirical modeling of the impacts of faults on water-cooled chiller power consumption for use in building simulation programs

机译:故障对水冷式冷水机组能耗影响的经验模型,用于建筑仿真程序

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摘要

Empirical models of four chiller faults that can be applied within existing building models to study overall impacts are developed in this paper. The faults include overcharging, excess oil, non-condensables in refrigerant and water-side condenser fouling. A single generalized model structured was developed for these faults that forces predicted fault impacts to be zero with no fault and increase with increasing fault level. The models were trained and tested using available laboratory data for a water-cooled centrifugal chiller where all four faults were artificially introduced. The fault model behavior was studied and then they were integrated in hospital models from DOE commercial reference building models (Deru et al., 2011) and simulations were performed in different climates. The simulation results showed maximum increases of building electricity consumption, electricity peak demand and water consumption of the hospitals due to faults of 4.7%, 7.8% and 1.8% respectively. The fault impacts were found to be more severe in hotter and more humid climates.
机译:本文开发了可用于现有建筑模型中以研究整体影响的四个冷水机组故障的经验模型。故障包括过充,过多的机油,制冷剂中的非冷凝物以及水侧冷凝器结垢。针对这些故障开发了一个结构化的通用模型,该模型将预测的故障影响强制为零且无故障,并随着故障级别的增加而增加。使用现有的实验室数据对模型进行了训练和测试,该模型用于水冷式离心冷却器,其中四个故障都是人为引入的。研究了故障模型的行为,然后将其整合到DOE商业参考建筑模型的医院模型中(Deru等,2011),并在不同的气候下进行了模拟。仿真结果表明,由于故障,医院的建筑用电量,用电高峰需求和用水量的最大增加分别为4.7%,7.8%和1.8%。发现在更热和更潮湿的气候中,断层的影响更为严重。

著录项

  • 作者

    Cheung, H; Braun, JE;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类
  • 入库时间 2022-08-20 20:56:11

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