The application of the Pinch method for the analysis of the heat exchangers network in a ventilation system of a building
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The application of the Pinch method for the analysis of the heat exchangers network in a ventilation system of a building

机译:捏合方法在建筑物通风系统中的热交换器网络分析中的应用

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Highlights?Dependence of energy and exergy demand for heating of air on outdoor temperature is analysed.?The Pinch method is applied for a HEN of a building’s ventilation system for the first time.?Results show 26% energy and 45% exergy savings after system‘s integration.AbstractIntensive use of energy is related to the inefficient use of processes in building engineering systems. In well-insulated non-residential buildings ventilation systems are among the most energy intensive HVAC systems. The main components of an energy (and exergy) efficient ventilation system are heat exchangers. The paper presents the analysis of process integration possibilities in a ventilation system. Only air heating for ventilation purposes is analysed. The method of Pinch technology, mostly used for industrial process integration, is adopted for a ventilation system of a building for the first time. In the paper, several different cases of integration are analysed by using actual BMS data of a shopping centre. The results confirmed that process integration influences the thermodynamic efficiency of the system and that integrated systems consume less energy and exergy in comparison with the non-integrated ones. The case study shows that the seasonal energy demand of the system before integration is 26% higher compared to integrated system and the exergy demand is 45% higher.]]>
机译:<![cdata [ 亮点 能量和暴风对室外温度加热空气加热的需求的依赖性。 pinch方法首次应用于建筑物的通风系统的母鸡。 结果显示系统集成后的26%能量和45%放电节省。 抽象 密集使用能源与建筑工程系统中的过程的低效使用有关。在绝缘绝缘的非住宅楼宇的通风系统中是最能集中的HVAC系统之一。能量(和Deactgy)有效通风系统的主要部件是热交换器。本文介绍了通风系统中工艺集成可能性的分析。分析了通风目的的空气加热。第一次建筑物的通风系统采用了捏技术的方法,主要用于工业过程集成。在论文中,通过使用购物中心的实际BMS数据分析了几种不同的集成案例。结果证实,流程集成影响了系统的热力学效率,并且与非综合版本相比,集成系统消耗更少的能量和电流。案例研究表明,与集成系统相比,整合前系统的季节性能量需求比集成系统更高26%,并且低驱动需求较高45%。 ]]>

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