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Influence of thermophysical properties of working fluid on the design of cryogenic turboexpanders using n_sd_s diagram

机译:工作流体热物理性能对使用N_SD_S图的低温涡轮膨胀师设计的影响

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Cryogenic turboexpanders are an essential part of liquefaction and refrigeration plants. The thermodynamic efficiency of these plants depends upon the efficiency of the turboexpander, which is the main cold generating component of these plants, and therefore, they should be designed for high thermodynamic efficiencies. Balje's [1] n_sd_s chart, which is a contour of isentropic efficiencies plotted against specific speed and specific diameter, is commonly used for the preliminary design of cryogenic turboexpanders. But, these charts were developed based on calculations for a specific heat ratio (γ) of 1.4, and studies show that care should be taken while implementing the same for gases which have a higher y of 1.67. Hence there is a need to investigate the extent of applicability of n_sd_s diagram in designing expansion turbines for higher specific heat ratios. In this paper, Computational Fluid Dynamics (CFD) analysis of cryogenic turboexpanders was carried out using Ansys CFX~R. The turboexpanders were designed based on the methodologies prescribed by Kun and Sentz [2] following the n_sd_s diagram of Balje and Hasselgruber's technique for generating blade profile. The computational results of the two cases were analysed to investigate the applicability of Balje's n_sd_s diagram for the design of turboexpanders for refrigeration and liquefaction cycles.
机译:低温涡轮增压器是液化和制冷厂的必要部分。这些植物的热力学效率取决于涡轮增压器的效率,这是这些植物的主要冷发电成分,因此,它们应该设计用于高热力学效率。 Balje的[1] N_SD_S图表是绘制针对特定速度和特定直径的概要效率的轮廓,通常用于低温涡轮增压器的初步设计。但是,基于1.4的特定热比(γ)的计算基于1.4的计算开发了这些图表,并且研究表明,应在为具有1.67的y的y的气体实施相同的气体而进行。因此,需要研究N_SD_S图在设计膨胀涡轮机中的适用性,以实现更高的特定热比。在本文中,使用ANSYS CFX〜R进行了低温涡轮增压器的计算流体动力学(CFD)分析。涡轮增压器是基于Kun和Sentz [2]规定的方法的方法,按照Balje和Hasselgruber的N_SD_S图来生成刀片轮廓的技术。分析了两种情况的计算结果,研究了Balje的N_SD_S图表的适用性,用于制冷和液化循环的涡轮增压器的设计。

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