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Design and analysis of centrifugal compressor

机译:离心式压缩机的设计与分析

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Centrifugal compressor is probably one of the most used compressors in the industry but at the same time the flow inside it is very complex, highly turbulent and three-dimensional in nature. It is very important to carry out energy-efficient design of centrifugal compressor followed by detailed analysis in view of energy saving opportunity. In the present study detailed design and analysis of centrifugal compressor is done. The input design parameters were obtained from the Compressor manufacturing company viz. pressure ratio of 3.5, mass flow rate as 4.2 kg/s, rotational speed as 14000 rpm. The design was done based on the standard process followed in the Industry. Iterative method was followed wherein the calculations were done for different mass flow rates and efficiencies were calculated. As the compressor was heavily not loaded radial curved vanes were selected in place of backward curved vanes. Pre whirl at the inlet was not recommended because of the low Mach number. After the design, outlet stagnation pressure was obtained as 352.14 kPa and the overall compressor efficiency was found as 84.72%. The results were compared with the Experimental data provided by Manufacturer and found in very good agreement.
机译:离心式压缩机可能是业内最常用的压缩机之一,但同时内部的流动是非常复杂的,高度湍流和三维的性质。考虑到节能机会,对离心式压缩机进行节能设计非常重要。在本研究中,采用了离心压缩机的详细设计和分析。输入设计参数是从压缩机制造公司VIZ获得的。压力比为3.5,质量流量为4.2千克/秒,转速为14000rpm。该设计是根据行业中遵循的标准过程完成的。遵循迭代方法,其中对不同的质量流速进行计算,计算效率。由于压缩机严重地未装载径向弯曲的叶片,以代替落后的弯曲叶片。由于低马赫数,不推荐在入口处的旋转。设计后,获得出口停滞压力为352.14kPa,并发现总压缩机效率为84.72%。将结果与制造商提供的实验数据进行比较,并在非常良好的协议中发现。

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