首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >UNSTEADY FLOW SIMULATION OF AN AXIAL FAN FOR DRY COOLING IN A CSP PLANT USING THE VARIATIONAL MULTISCALE METHOD
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UNSTEADY FLOW SIMULATION OF AN AXIAL FAN FOR DRY COOLING IN A CSP PLANT USING THE VARIATIONAL MULTISCALE METHOD

机译:使用变分式多尺度方法在CSP工厂中干燥冷却的轴向风扇的不稳定流模拟

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We present an unsteady simulation of an axial fan with low pressure and high flow rate, developed during the MinWaterCSP EU project, specifically designed and optimized for Concentrating Solar Power (CSP) plants with the aim of reducing water consumption at the condenser stage. An earlier version of the fan, referred as M-fan, was initially developed to serve the hybrid cooling system, to boost the overall heat transfer performance with dry cooling. In this work, we will performing a Computational Fluid Dynamics (CFD) analysis of the unsteady flow on a redesigned and scaled version of the M-fan, referred as T-fan, by The T-fan was designed and optimized to reduce noise emissions and improve efficiency with respect to the M-fan. We perform the simulation using an in-house built C++ parallel code for CFD analysis using Finite Elements (FE). We model the flow dynamics using the Residual Based Variational MultiScale method (RBVMS) to obtain a stabilized solution of the Navier-Stokes equation using FE discretization. We will discuss the simulation results of the RBVMS model by comparing our simulation of the T-fan with experimental results on the same fan.
机译:我们在MinwaterCSP欧盟项目中开发的具有低压和高流速的轴向风扇的不稳定模拟,专门设计和优化,用于集中太阳能(CSP)植物,目的是降低冷凝器阶段的耗水量。较早版本的风扇,推荐为M-Can,最初开发用于用于混合式冷却系统,以提高干燥冷却的整体传热性能。在这项工作中,我们将对M-Can的重新设计和缩放版本的M-Can,由T-Fan进行重新设计和缩放版本的不稳定流的计算流体动力学(CFD)分析,由T-Fan设计和优化,以减少噪声排放并提高M-Fan的效率。我们使用有限元(FE)使用内部内置C ++并行代码进行模拟,用于CFD分析。我们使用基于残留的变分型多尺度方法(RBVM)来利用Fe离散化来利用残差的变分式多尺度方法(RBVM)来获得Navier-Stokes方程的稳定解决方案。我们将通过对同一风扇的实验结果进行比较来讨论RBVMS模型的仿真结果。

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