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Computer modeling of the energy performance of screw chillers.

机译:螺杆式冷水机组能源性能的计算机模型。

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摘要

The energy crisis and mandatory energy conservation standards together with the advancement in computer technology led to rapid development of the energy calculation procedures for the prediction of the performance and energy requirements of buildings. DOE-2 is one of the major public domain programs, which is used throughout North America, however this program does not contain computer models for screw compressor chillers.; The main objective of this study is to evaluate the energy performance of screw-compressor chillers, based on thermodynamic principles and parameter identification from the manufacturers' data. The thermodynamic model used in this study was based on the ASHRAE Toolkit-I for primary HVAC system energy calculations.; Results showed that the screw compressor chillers perform almost similar to centrifugal chillers at off-design conditions under full load; however at part load regime, screw chillers perform completely different from centrifugal chillers. It was observed that unlike the centrifugal chillers, the screw chillers have the best performance at part load ratio about 0.7, and at low part load ratio the COP is significantly low. After the energy performance correlation for screw compressor chillers were derived, they were used in the DOE-2 program to compare the energy performance of an office building in Montreal with that of centrifugal chillers. Results showed that the electric demand of screw chiller is significantly higher. Meanwhile the monthly peak electric demand is almost constant throughout the year, while that of centrifugal chillers shows a significant variation from month to month.; Beside the correlations for energy performance of screw compressor chiller based on the DOE-2 generic format, some other type of correlations were developed using the identified parameters, which can be used in the Fault Detection and Diagnostic (FDD) systems to check continuously the performance of chillers during the operation.
机译:能源危机和强制性节能标准以及计算机技术的进步,导致了用于预测建筑物性能和能源需求的能源计算程序的迅速发展。 DOE-2是主要的公共领域程序之一,在整个北美使用,但是该程序不包含螺杆压缩机冷却器的计算机模型。这项研究的主要目的是基于热力学原理和制造商数据中的参数识别,评估螺杆压缩机冷水机的能源性能。这项研究中使用的热力学模型是基于ASHRAE Toolkit-I进行的主要HVAC系统能量计算。结果表明,在非设计条件下,满负荷条件下,螺杆压缩机冷却器的性能几乎与离心式冷却器相似。但是,在部分负荷状态下,螺杆式冷水机的性能与离心式冷水机完全不同。观察到,与离心式冷却器不同,螺杆式冷却器在部分负载比约为0.7时具有最佳性能,而在部分负载比低时COP则非常低。得出螺杆压缩机冷水机的能源性能相关性后,将它们用于DOE-2程序,以比较蒙特利尔的一栋办公楼的能源性能与离心式冷水机的能源性能。结果表明,螺杆式冷水机组的用电需求明显更高。同时,全年的每月峰值用电需求几乎保持不变,而离心式冷水机组的每月用电需求则呈现逐月变化。除了基于DOE-2通用格式的螺杆压缩机冷却器的能源性能相关性外,还使用确定的参数开发了其他类型的相关性,这些相关性可用于故障检测和诊断(FDD)系统中以连续检查性能运行期间的冷却器数量。

著录项

  • 作者

    Solati, Babak.;

  • 作者单位

    Concordia University (Canada).;

  • 授予单位 Concordia University (Canada).;
  • 学科 Engineering Mechanical.; Energy.
  • 学位 M.A.Sc.
  • 年度 2002
  • 页码 261 p.
  • 总页数 261
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;能源与动力工程;
  • 关键词

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