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Investigation on aerodynamic noise evaluation and attenuation in a globe valve using CFD analysis

机译:CFD分析对地球阀空气动力噪声评估和衰减的研究

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Noise pollution will soon become the third greatest menace to the human environment after air and water pollution. Since noise is a by-product of energy conversion, there will be increasing noise as the demand for energy for transportation, power, food, and chemicals increases. In the field of control equipment, noise produced by valves has become a focal point of attention .In this paper aerodynamic noise evaluation of a globe valve was carried out using a three dimensional Computational Fluid Dynamic technique(CFD). The results obtained from numerical analysis are compared with the experimental measurements and are found to be in good agreement. Reduction in sound pressure level was achieved by doubling the number of flow passages in the cage at full open condition and at the same operating conditions. Hence sound attenuation is established by changing the cage configuration with no change in total area of flow passage in the cage.
机译:噪声污染将很快成为仅次于空气和水污染的第三大人类环境威胁。由于噪音是能量转换的副产品,随着交通、电力、食品和化学品对能源的需求增加,噪音也会增加。在控制设备领域,阀门产生的噪声已成为人们关注的焦点。本文采用三维计算流体力学(CFD)技术对截止阀的气动噪声进行了评估。数值分析的结果与实验测量结果进行了比较,发现两者吻合良好。在完全打开的条件下和相同的操作条件下,通过将保持架中的流道数量增加一倍来降低声压级。因此,通过改变保持架结构,在保持架内流道总面积不变的情况下,可以建立声音衰减。

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