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The effects of mixing air distribution and heat load arrangement on the performance of ceiling radiant panels under cooling mode of operation

机译:冷却模式下混合空气分配和热负荷布置对天花板辐射板性能的影响

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摘要

The cooling power of radiant panels can be effected by the arrangement of heat loads and by the room air distribution system. This impact can be important because often the cooling output is the critical factor for the design and usability of radiant panels. In this study, the impact of heat load arrangement and air distribution generated in a room by linear slot diffuser, radial multi-nozzle diffuser and radial swirl induction unit on the cooling power of radiant panels was compared. The impact on the thermal environment was also studied. Measurements were carried out without and with supply air in a test chamber equipped with two ceiling radiant panels and air distribution units flush with the radiant panels. Heat load was generated through the walls and with heated cylinders. The cooling power of the radiant panels was increased with the studied air distribution methods. The increase was from 5% to 17% depending on the air distribution method and the heat load arrangement. The most significant effect of the heat load arrangement occured when heat loads are located unevenly and their convection flow turns or weakens the supply air jet flushing the radiant panels.
机译:辐射板的冷却能力可通过布置热负荷和室内空气分配系统来实现。这种影响可能很重要,因为冷却输出通常是辐射面板设计和可用性的关键因素。在这项研究中,比较了线性缝隙扩压器,径向多喷嘴扩压器和径向旋流感应单元在房间内产生的热负荷布置和空气分布对辐射板冷却功率的影响。还研究了对热环境的影响。在装有两个天花板辐射板和与辐射板齐平的空气分配装置的测试室内,在没有送风和有送风的情况下进行测量。通过墙壁和加热的圆柱体产生热负荷。通过研究空气分配方法,可以提高辐射板的冷却能力。根据空气分配方法和热负荷布置的不同,增加幅度为5%至17%。当热负荷的位置不均匀并且其对流流转向或削弱冲洗辐射板的供气射流时,就会发生热负荷布置的最显着效果。

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