矩形风管中PU/PIR接头的CFD分析

K. M. Munisamy, M. Yusoff, Soong Peng Soon, Pang Win Cheong
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引用次数: 0

摘要

本文对两种金属管道设计进行了CFD模拟,研究了弯头流动的压降。PU/PIR风管是一种新型的快速发展的集成材料,它将铝和保温材料压实在一起,与传统的钢制风管相比,它的整体厚度更薄,并包裹着保温材料。与钣金风管配件相比,PU/PIR风管配件在风管配件内部有许多缺口。这些缺口(或凹槽)在装配组件的制造中是必要的,因为PU/PIR面板非常厚(20mm),没有这些缺口就不能弯曲。另一方面,由于金属板很薄(0.5 ~ 1.2mm),不需要这些凹槽弯曲。本文研究了气流中某些缺口对风管接头摩擦损失的影响。模拟了一个简单的90度弯头300mm×300mm风管尺寸进行比较。与带缺口的PU/PIR管道相比,PU/PIR金属板设计在压力损失方面略有不同。可以得出结论,PU/PIR风管设计中的缺口对压力损失的影响可以忽略不计,但与传统的HVAC风管制造设计相比,它具有许多优点。对具体结果进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CFD analysis onto PU/PIR fitting in rectangular duct
In this study CFD simulation is done on two types of metallic duct design to investigate the pressure drop of flow through an elbow. The PU/PIR duct is new and fast growing integrated material of aluminum and insulation material compacted together to achieve thinner overall thickness as compared to conventional steel ducting with insulation wrapped around it. As compare with sheet metal duct fittings, PU/PIR duct fitting has numerous notches inside the duct fittings. These notches (or grooves) are necessary in the fabrication of fitting components because PU/PIR panel cannot be bent without these notches as the panel is very thick (20mm). On the other hand, sheet metal does not need these notches to be bent since it is thin (0.5∼1.2mm). This paper investigates the effect on friction loss of duct fitting with some of these notches in the air stream. A simple 90 degree elbow of 300mm×300mm duct dimension is simulated for comparison. The PU/PIR sheet metal design compared to PU/PIR duct with notch has slight difference in terms of pressure loss. It can be concluded that notches in PU/PIR duct design has negligible effect on the pressure loss but it has numerous advantages compared to conventional HVAC duct fabrication design. The detail results are discussed.
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