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NUMERICAL ANALYSIS OF AN INDUSTRIAL FAN FITTED WITH NOISE REDUCTION DEVICES

机译:具有降噪装置的工业风扇的数值分析

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The reduction of noise emitted by industrial low speed cooling fans, particularly those fitted to air conditioning systems is a concern to fan manufacturers. The market for industrial low speed fans is highly competitive, with fan noise being the major differentiating factor between competing products. Noise reduction strategies are therefore implemented but these can adversely affect the fan's pressure delivery capability. A reduction of fan speed can also lead to a reduction in fan noise but this is usually accompanied by a corresponding reduction in pressure rise and flow rate. The practical difficulties associated with maintaining fan pressure and flow characteristics while simultaneously reducing fan noise present fan manufacturers with a challenge. Traditional empirical approaches to the reduction of fan noise have almost been exhausted and no longer offer the potential to significantly reduce fan noise. The understanding of the aerodynamic mechanisms that act as broadband noise sources in low speed fans has been the subject of a considerable number of papers over many years. For most fans operating as a single blade row, the main sources of noise, other than those dependent on the incident turbulence levels, depend on the trailing edge and tip gap flow conditions. A range of strategies seeking to control the noise generated by these regions have been proposed over time by various authors and a number of these schemes have reached production status. The current paper details the numerical analysis of an industrial low speed fan, commonly used in conjunction with a cooling matrix, and which incorporates two distinct noise reduction features; trailing edge crenulations and a blade tip fence. Comparisons are carried out between various combinations of blades, with and without the individual features, and a discussion of the aerodynamics of the particular configurations is undertaken from a perspective of their noise reduction capabilities.
机译:工业低速冷却风扇发出的噪声减少,特别是适合空调系统的噪音是风扇制造商的担忧。工业低速风扇市场具有竞争力,风扇噪声是竞争产品之间的主要区分因素。因此实施了降噪策略,但这些可能会对风扇的压力输送能力产生不利影响。风扇速度的降低也会导致风扇噪声的降低,但这通常伴随着压力上升和流速的相应降低。与维持风扇压力和流动特性相关的实际困难,同时减少风扇噪声存在风扇制造商的挑战。传统的经验方法对风扇噪声减少几乎已经耗尽,不再提供了显着降低风扇噪声的潜力。了解充当低速粉丝的宽带噪声源的空气动力学机制一直是多年来一直是相当数量的论文的主题。对于作为单个刀片行操作的大多数风扇,除了依赖于入射湍流水平的情况之外,主要噪声源取决于后缘和尖端间隙流动条件。通过各种作者提出了一系列寻求控制这些区域产生的噪声的策略,并且各种作者以及许多这些方案已经达到了生产状态。目前的纸张详细介绍了工业低速风扇的数值分析,通常与冷却矩阵结合使用,并包含两个不同的降噪功能;后缘弯曲和刀片尖端围栏。在叶片的各种组合之间进行比较,随着个别特征,并且从其降噪能力的角度来讨论特定配置的空气动力学。

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