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首页> 外文期刊>Applied Energy >A novel design of a desiccant rotary wheel for passive ventilation applications
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A novel design of a desiccant rotary wheel for passive ventilation applications

机译:用于被动通风的干燥剂旋转轮的新颖设计

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Rotary desiccant wheels are used to regulate the relative humidity of airstreams. These are commonly integrated into Heating, Ventilation and Air-Conditioning units to reduce the relative humidity of incoming ventilation air. To maximise the surface area, desiccant materials are arranged in a honeycomb matrix structure which results in a high pressure drop across the device requiring fans and blowers to provide adequate ventilation. This restricts the use of rotary desiccant wheels to mechanical ventilation systems. Passive ventilation systems are able to deliver adequate ventilation air but cannot control the humidity of the incoming air. To overcome this, the traditional honeycomb matrix structure of rotary desiccant wheels was redesigned to maintain a pressure drop value below 2 Pa, which is required for passive ventilation purposes. In addition to this, the temperature of the regeneration air for desorption was lowered. Radial blades extending out from the centre of a wheel to the circumference were coated in silica gel particles to form a rotary desiccant wheel. Computational Fluid Dynamics (CFD) modelling of the design was validated using experimental data. Reduction in relative humidity up to 55% was seen from the system whilst maintaining a low pressure drop across the new design. As an outcome of the work presented in this paper, a UK patent GB1506768.9 has been accepted. (C) 2016 Elsevier Ltd. All rights reserved.
机译:旋转式干燥剂轮用于调节气流的相对湿度。这些通常集成到加热,通风和空调单元中,以降低进入的通风空气的相对湿度。为了最大化表面积,将干燥剂材料布置在蜂窝状矩阵结构中,这会导致整个设备上的高压降,从而需要风扇和鼓风机提供足够的通风。这将旋转干燥剂轮的使用限制为机械通风系统。被动通风系统能够输送足够的通风空气,但不能控制进入空气的湿度。为了克服这个问题,旋转式干燥剂轮的传统蜂窝状结构经过重新设计,可将压降值保持在2 Pa以下,这是被动通风目的所必需的。除此之外,用于解吸的再生空气的温度降低。从轮的中心向外延伸到圆周的径向叶片涂有硅胶颗粒以形成旋转式干燥轮。使用实验数据验证了设计的计算流体动力学(CFD)建模。从系统中可以看到相对湿度降低了55%,同时在整个新设计中保持了低压降。作为本文提出的工作的结果,已接受英国专利GB1506768.9。 (C)2016 Elsevier Ltd.保留所有权利。

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