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Performance evaluation of damper control settings for operation of multiple-zone variable air volume reheat system in different building applications and climate types

机译:在不同建筑应用和气候类型的多区域可变风量再热系统运行的阻尼器控制设置的性能评估

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摘要

Choosing the right control strategies is an important task for effective operation of variable air volume reheat (VAVR) system in commercial buildings. In this design, dampers’ position inside air terminal units (ATUs) are modulated to adjust the amount of air supply volume based on thermal zones’ cooling or heating demand. A minimum air flow fraction (MAFF) is set for damper settings of ATUs to avoid under-ventilation problem in thermal zones. This study investigated the impact of MAFF value on various performance aspects of multiple-zone VAVR design in different building applications and climate types. A five-storey commercial building for three applications of school, office and retail in four climate types of tropical monsoon, hot desert, Mediterranean and humid continental have been simulated in EnergyPlus building simulation software. The results of simulations have shown that lowering MAFF value in ATUs would reduce the required reheat coil energy to maintain precise air supply temperature at part load cooling scenarios. Nonetheless, this reduction could have some implications on thermal comfort and indoor air quality level of thermal zones in a multiple-zone arrangement. It was concluded that in general it is an energy efficient control strategy to keep MAFF value to as low as 0.1 for high ventilation rate spaces like classrooms in school buildings (except for hot desert climate). On the other hand, it is advisable to not reduce MAFF value below 0.3 for low ventilation rate spaces like office areas to avoid any air quality issues in thermal zones.
机译:选择正确的控制策略是在商业建筑中有效运行可变风量再热(VAVR)系统的重要任务。在这种设计中,调节风门在空气终端单元(ATU)内部的位置,以根据热区的制冷或制热需求来调节供气量。为ATU的风门设置设置了最小空气流量分数(MAFF),以避免在热区中出现通风不足的问题。这项研究调查了MAFF值对不同建筑应用和气候类型中多区域VAVR设计的各个性能方面的影响。在EnergyPlus建筑模拟软件中,已经模拟了五层商业建筑,用于学校,办公室和零售业在热带季风,沙漠热,地中海和潮湿大陆这四种气候类型中的三种应用。仿真结果表明,降低ATU中的MAFF值将减少所需的再热盘管能量,以在部分负载冷却情况下维持精确的供气温度。但是,这种减少可能会对多区域布置中的热区的热舒适性和室内空气质量水平产生某些影响。得出的结论是,对于高通风率空间(如学校建筑中的教室)(除炎热的沙漠气候以外),一般将MAFF值保持在0.1以下是一种节能控制策略。另一方面,建议不要将低通风率空间(如办公室区域)的MAFF值降低到0.3以下,以避免在热区中出现任何空气质量问题。

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    Saber, EM;

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