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Air-conditioning systems with dual ducts: An innovative approach to the design of the transport network of air

机译:双管道空调系统:空气传输网络设计的创新方法

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This article describes a method to dimension the transport networks of air, from the air handling unit to terminal units, for dual duct systems, which provide air distribution through the use of two parallel networks. The method, compared to the methodologies usually adopted or proposed, leads to a reduction of the channel size and therefore of the overall network size and cost as well. Dimensioning criteria usually adopted require the air to flow in the cold duct at a temperature lower than the room temperature, while air flows in the hot duct at a temperature higher than the room temperature. As an alternative to the traditional design criteria, we present a dimensioning method that requires the cold channel to transport air at a temperature value slightly lower (1 degrees C-2 degrees C) than the minimum supply temperature (variable with time) required in each zone. The method is applied here to some reference networks, and the results are compared with those obtained with traditional design criteria. The obtained reductions of the surfaces of the networks (therefore, to a first approximation, of their total weight) range between 15% and 34%; that depends as well on the temperature of the hot channel keeping it constant and ranging between 35 degrees C and 45 degrees C. The air speed through the ducts is always lower or equal to the fixed values; this constraint is not always respected using traditional dimensioning methods.
机译:本文介绍了一种方法,该方法用于确定双管道系统从空气处理单元到终端单元的空气传输网络的尺寸,该系统通过使用两个并行网络来提供空气分配。与通常采用或提议的方法相比,该方法导致信道尺寸的减小,因此也导致整体网络尺寸和成本的减小。通常采用的尺寸标准要求空气在低于室温的温度下在冷风管中流动,而空气则在高于室温的温度下在热风管中流动。作为传统设计标准的替代方法,我们提出了一种尺寸确定方法,该方法要求冷通道以比每个通道所需的最小供气温度(随时间变化)稍低的温度值(1摄氏度至2摄氏度)输送空气。区。该方法在这里应用于某些参考网络,并将结果与​​传统设计标准所获得的结果进行比较。所获得的网状表面的减少量(因此,其总重量的第一近似值)在15%到34%之间;这还取决于热通道的温度,使其保持恒定并在35摄氏度至45摄氏度之间。通过管道的空气速度始终低于或等于固定值;使用传统的尺寸标注方法并不总是会遵守此约束。

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