首页> 外文会议>International conference on energy sustainability;ES2010 >REDUCING ENERGY DEMAND IN COMMERCIAL BUILDINGS: BALANCING CONVECTION AND RADIANT COOLING
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REDUCING ENERGY DEMAND IN COMMERCIAL BUILDINGS: BALANCING CONVECTION AND RADIANT COOLING

机译:减少商业建筑中的能源需求:对流和辐射冷却

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Using Computational Fluid Dynamics (CFD) software, three different cooling systems used in contemporary office environments are modeled to compare energy consumption and thermal comfort levels. Incorporating convection and radiation technologies, full-scale models of an office room compare arrangements for (a) an all-air overhead system (mixing ventilation), (b) an all-air raised floor system (displacement ventilation), and (c) a combined air and hydronic radiant system (displacement ventilation with a chilled ceiling). The computational domain for each model consists of one isothermal wall (simulating an exterior wall of the room) and adiabatic conditions for the remaining walls, floor, and ceiling (simulating interior walls of the room). Two sets of computations were conducted. The first set of computations utilized a constant temperature isothermal exterior wall, while the second set utilized an isothermal wall that changed temperatures as a function of time simulating the temperature changes on the exterior wall of a building throughout a 24 hour period. Results show superior thermal comfort levels as well as substantial energy savings can be accrued using the displacement ventilation, especially the displacement ventilation with a chilled ceiling over the conventional mixing ventilation system.
机译:使用计算流体动力学(CFD)软件,在现代办公环境中使用的三种不同的冷却系统被建模以比较能量消耗和热舒适度。纳入对流和辐射技术,办公室室的全尺寸模型比较(a)全空气架空系统(混合通风),(b)全空气凸起地板系统(位移通风)和(c)综合空气和氢化辐射系统(用冷却天花板的位移通风)。每个模型的计算域包括一个等温壁(模拟房间的外墙)和剩余墙壁,地板和天花板的绝热条件(模拟房间的内壁)。进行两套计算。第一组计算利用恒温等温外墙,而第二组利用等温壁,其改变温度作为时间的时间,模拟在24小时内部建筑物的外墙上的温度变化。结果显示出卓越的热舒适度以及使用位移通风可以累积的大量节能,特别是具有传统混合通风系统的冷却天花板的位移通风。

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