Air Conditioning Systems with Dual Ducts: Innovative Approaches for the Design of the Transport Network of the Air

A. D'Orazio
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Abstract

We present two methods for sizing the network for the transport of the air, from the air handling unit to the terminal units, for a dual duct system, where air flows in the “ cold ” duct at a temperature less than the ambient temperature, while air flows in the “ hot ” duct at a temperature higher than the ambient temperature. The methods, compared to the traditional design criteria, lead to a reduction of channel size and, therefore, of overall network size and cost as well. The first method requires the “ cold ” channel to transport air at a temperature value slightly lower (1 ÷ 2 (cid:1) C) than the minimum inlet temperature (variable with time) required by the zones. The second requires the “ hot ” channel to transport air at a temperature value slightly higher (1 ÷ 2 (cid:1) C) than the maximum inlet temperature (variable with time) required by the zones. The methods have been applied to some reference networks. The saving of side surface of the networks varies between 14 and 27% with respect to the traditional approach; the constraint on the maximum speed of the air through the ducts is always respected, while this does not always occur with traditional criteria.
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双管道空调系统:空气输送网络设计的创新方法
我们提出了两种方法来确定空气运输网络的大小,从空气处理单元到终端单元,对于双管道系统,空气在“冷”管道中以低于环境温度的温度流动,而空气在“热”管道中以高于环境温度的温度流动。与传统的设计标准相比,这些方法减少了通道大小,因此也减少了整个网络的大小和成本。第一种方法要求“冷”通道在略低于区域要求的最低入口温度(随时间变化)的温度值(1 ÷ 2 (cid:1) C)下输送空气。第二种要求“热”通道在略高于区域要求的最高入口温度(随时间变化)的温度值(1 ÷ 2 (cid:1) C)下输送空气。该方法已应用于一些参考网络。与传统方法相比,网络侧面的节省在14%至27%之间;对空气通过管道的最大速度的限制总是得到尊重,而这并不总是发生在传统的标准中。
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