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Energy signatures for assessing the energy performance of chillers

机译:用于评估冷水机组能源绩效的能源特征

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This paper investigates how energy signatures can be used as an alternative to an energy use intensity (describing the annual electricity consumption of chillers in kWh per unit floor area of a building in m2) to assess the energy performance of chillers with various design options and operating strategies. An energy signature is a best-fit straight line relating chiller power to a climatic index when chillers operate for a building cooling load profile. Sixteen combinations of four design options and four operating strategies for chillers serving a hypothetical hotel are studied by simulation. For each combination, an energy signature for the chillers is determined. The slope and intercept of the energy signature can be used to accurately predict the annual electricity consumption of the chillers and to evaluate the extent to which this consumption can drop when chiller efficiency is improved. It is desirable to develop reference energy signatures in relation to different characteristics of building cooling load as a yardstick for the minimum requirement of chiller performance. With this yardstick, the effectiveness of energy efficient measures in the operation of chillers could be identified.
机译:本文研究了如何使用能源特征来替代能源使用强度(以每平方米建筑面积单位以kWh为单位的冷水机组的年耗电量,以平方米为单位)来评估具有各种设计方案和运行方式的冷水机组的能源性能策略。能量特征是一条最佳的直线,当冷水机组为建筑物的冷负荷曲线运行时,冷水机组的能量与气候指数相关。通过仿真研究了为一家假想酒店提供服务的冷水机组的四种设计选项和四种运行策略的十六种组合。对于每种组合,确定冷水机组的能量特征。能量特征曲线的斜率和截距可用于准确预测冷水机组的年电力消耗,并评估当冷水机组效率提高时,该电力消耗下降的程度。期望开发与建筑物制冷负荷的不同特性相关的参考能量特征,作为对制冷机性能的最低要求的准绳。以此为准绳,可以确定节能措施在制冷机运行中的有效性。

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