首页> 外文会议>ASME international mechanical engineering congress and exposition >REVIEW AND EVALUATION OF USING R-C THERMAL MODELING OF COOLING LOAD PREDICTION FOR HVAC SYSTEM CONTROL PURPOSE
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REVIEW AND EVALUATION OF USING R-C THERMAL MODELING OF COOLING LOAD PREDICTION FOR HVAC SYSTEM CONTROL PURPOSE

机译:暖通空调系统控制目的制冷负荷预测的R-C热模型的回顾与评价

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Heating and cooling loads which are compensated by heating, ventilation, and air-conditioning (HVAC) systems, are the main reason for energy uses in buildings. Energy utilized by HVAC system accounts for two-thirds of a building's total energy consumption. Excessive energy is consumed when HVAC systems fail to operate as intended. This is often due to several factors such as inappropriate monitoring and control strategy, lack of understanding of the dynamics of thermal loads, and system complexity. Amidst several models, estimation of cooling load using Resistance Capacitance (RC) models have proved to provide more robust and accurate estimates of the building load based on measured data but the use of this method is not without challenges. This study aims to highlight common challenges associated with implementation of the RC method for thermal modeling of cooling load. Past and current research have handled some of the challenges by introducing simplifying assumptions which if not adequately selected can lead to significant deviation between model performance and measured data. Without proper understanding of the challenges, engineers may not be able to place a high degree of confidence in load calculation methods and the computer implementations that they use.
机译:由供暖,通风和空调(HVAC)系统补偿的供暖和制冷负荷是建筑物中能耗的主要原因。 HVAC系统使用的能源占建筑物总能耗的三分之二。当HVAC系统无法按预期运行时,会消耗过多的能量。这通常是由于多种因素造成的,例如不合适的监视和控制策略,对热负荷动态的缺乏了解以及系统的复杂性。在几种模型中,已证明使用电阻电容(RC)模型估算冷却负荷可以根据实测数据提供更可靠,更准确的建筑物负荷估算,但是这种方法的使用并非没有挑战。这项研究旨在强调与实施RC方法进行冷却负荷热建模有关的常见挑战。过去和当前的研究通过引入简化的假设来应对一些挑战,这些假设如果选择不当,可能会导致模型性能与测量数据之间出现重大偏差。如果没有对挑战的正确理解,工程师可能无法对他们所使用的负载计算方法和计算机实现方式充满信心。

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