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Pressure-loss reduction and velocity-profile improvement in a catalytic converter by a flow deflector

机译:导流板在催化转化器中的压力损失减小和速度分布改善

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摘要

In automobile exhaust systems, catalytic converters have become essential in reducing environmental pollution. However, the main components of catalytic converters produce large pressure drops in exhaust systems, which decrease engine power and increase fuel consumption. In addition to the need to reduce pressure loss, the flow passing through the catalytic substrate strate should be as uniform as possible, which provides a uniform thermal distribution and high catalytic conversion efficiency. The goal of the present study is simultaneously to reduce the pressure loss and to improve the flow distribution under spatial constraints. The authors herein propose new types of device and investigate their performances experimentally. Specifically, the possibilities of two types of flow deflector with a shell structure, which are placed inside the diffuser part of the catalytic converter in order to reduce flow separation, were investigated. In addition, using the particle image velocimetry technique and Pitot tube velocimetry, flow features such as the velocity profiles were elucidated. The tested converter has a standard cylindrical ceramic monolith substrate with channels of square cross-section. As a result, the two flow deflectors can reduce the pressure loss by 17 per cent and 22 per cent, compared with a no-deflector converter and can effectively improve the velocity profile. [PUBLICATION ABSTRACT]
机译:在汽车排气系统中,催化转换器对于减少环境污染已变得至关重要。但是,催化转化器的主要组件会在排气系统中产生较大的压降,从而降低发动机功率并增加燃油消耗。除了需要减少压力损失外,流经催化基材的流应尽可能均匀,这将提供均匀的热分布和高催化转化效率。本研究的目的是同时减少压力损失并在空间约束下改善流量分布。本文的作者提出了新型的设备并通过实验研究了它们的性能。具体地,研究了两种具有壳结构的导流板的可能性,这些导流板放置在催化转化器的扩散器内部以减少流分离。此外,使用粒子图像测速技术和皮托管测速技术,阐明了流速特征等流动特征。经过测试的转换器具有一个标准的圆柱形陶瓷整体基板,该基板具有方形横截面的通道。结果,与无偏转器转换器相比,这两个导流器可以将压力损失降低17%和22%,并且可以有效地改善速度分布。 [出版物摘要]

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