利用凸壁射流的相互作用进行可变气流的通风

V. Korbut, V. Mileikovskyi, V. Dziubenko, I. Sachenko
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引用次数: 0

摘要

最节能的通风和空调是根据房间需要的可变空气流量(VAV)。为了避免因重力作用而破坏空气循环,大多数空气扩散器应通过附加的自动化来改变其几何形状和尺寸。相比之下,在可变气流条件下,凸壁射流在工作区域上相互作用的空气交换组织方案具有高稳定性。这种方案在不可能直接向工作区送风的情况下是有用的。模拟了基辅国际展览中心一个展览馆的空气交换组织,在整个可能的性能控制范围内进行了变风量(VAV)通风。建筑面积5258平方米,高19米。设计工况下(100%负荷)室外风量为21.667 m3/s (78000 m3/h)。最小负荷对应于没有太阳辐射和只有一些人在房间里。最小风量为设计风量的25%。建议的空气方案是单区域的,使用24个扩散器PES-D-8-10/15-0,在地板上方9.4 m处,空气从上部区域排出。空气分布器的直径为圆柱面,入口支管为8dm (800mm)。在每个分配器上,与水平面成π/12(15°)角的喷嘴有10排。它们上的出风口的总面积等于进风口截面积的0.9。由于射流在壁面上的真空保持力,重力的影响显著减小。这就避免了自动配风装置通过重力稳定室内空气循环的方案。在空气管道网络的分支上安装带有执行机构的阀门就足够了。因此,系统的经济效益在安装阶段和运行过程中都得到了肯定。
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The use of the interaction of convex wall jets for ventilation with variable air flow
The most energy efficient ventilation and air-conditioning is variable air flow (VAV) depending on the needs of a room. To avoid broken air circulation by gravitational forces, the most of air diffusers should change geometrical shape and sizes using additionall automation of them. In contrast, high stability of a scheme of air exchange organization with air supply over a working zone by convex wall jets that interact with each other under conditions of variable air flow, is confirmed. This scheme is useful in cases where it is impossible to supply air directly to the working zone. Simulation of the air exchange organization in an exhibition hall of International Exhibition Centre in Kyiv with ventilation at a variable air volume (VAV) in the entire possible range of performance control has been performed. The floor area is 5258 m2, the height is 19 m. The outdoor air-flow at design conditions (100 % load) is 21.667 m3/s (78000 m3/h). The minimum load corresponds to the absence of solar radiation and only some people in the room. The minimum air-flow is 25 % of the design one. The proposal air scheme is single-zonal using 24 diffusers PES-D-8-10/15-0,9 4 m above the floor and air removal from the upper zone. The air distributor have a diameter of a cylindrical surface and an inlet branch pipe of 8 dm (800 mm). There are 10 rows of nozzles at an angle π/12 (15 °) to the horizon on each distributor. The total area of the air outlet on them is equal to 0.9 of the cross-sectional area of the inlet pipes. Due to forces of the vacuum holding of jets on the wall surfaces, the influence of gravitational forces is significantly reduced. This avoids the automation of air distribution devices to stabilize the scheme of air circulation in the room by gravitational forces. It is enough to install valves with actuators on branches of a network of air ducts. Thus, the economic benefit of the system is confirmed both at the stage of installing and during operation.
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