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Geometry Analysis and Effect of Turbulence Model on the Radial Rotor Turbo-Expander Design for Small Organic Rankine Cycle System

机译:小型有机朗肯循环系统的径向分析和湍流模型对径向转子涡轮膨胀机设计的影响

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Organic Rankine Cycle (ORC) is one of the most promising technology for small electric power generations. The geometry analysis and the effect of turbulence model on the radial turbo-expanders design for small ORC power generation systems were discussed in this paper. The rotor blades and performance were calculated using several working fluids such as R134a, R143a, R245fa, n-Pentane, and R123. Subsequently, a numerical study was carried out in the fluid flow area with R134a and R123 as the working fluids. Analyses were performed using Computational Fluid Dynamics (CFD) ANSYS Multiphysics on two real gas models, with the k-epsilon and SST ( shear stress transport ) turbulence models. The result shows the distribution of Mach number, pressure, velocity and temperature along the rotor blade of the radial turbo-expanders and estimation of performance at various operating conditions. The operating conditions are as follow: 250,000 grid mesh flow area, real gas model SST at steady state condition, 0.4 kg/s of mass flow rate, 15,000 rpm rotor speed, 5 bar inlet pressure, and 373K inlet temperature. By using those conditions, CFD analysis shows that the turbo-expander able to produce 6.7 kW and 5.5 kW of power when using R134a and R123, respectively.
机译:有机朗肯循环(ORC)是用于小型发电的最有希望的技术之一。本文讨论了小型ORC发电系统的几何分析和湍流模型对径向涡轮膨胀机设计的影响。使用几种工作流体(例如R134a,R143a,R245fa,正戊烷和R123)计算转子叶片和性能。随后,在流体流动区域中以R134a和R123作为工作流体进行了数值研究。使用计算流体动力学(CFD)ANSYS Multiphysics在两个真实气体模型上进行了分析,分别使用kε和SST(剪切应力传输)湍流模型。结果显示了沿径向涡轮膨胀机转子叶片的马赫数,压力,速度和温度的分布以及在各种工况下的性能估算。操作条件如下:250,000网格流量区域,稳态条件下的真实气体模型SST,质量流量0.4 kg / s,转子速度15,000 rpm,入口压力为5 bar,入口温度为373K。通过使用这些条件,CFD分析表明,当使用R134a和R123时,涡轮膨胀机能够分别产生6.7 kW和5.5 kW的功率。

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