首页> 外文会议>ASME/JSME/KSME Joint Fluids Engineering Conference >CFD-SIMULATION OF CENTRIFUGAL FAN PERFORMANCE CHARACTERISTICS USING IDEAL AND REAL GAS MODELS FOR AIR AND ORGANIC FLUIDS
【24h】

CFD-SIMULATION OF CENTRIFUGAL FAN PERFORMANCE CHARACTERISTICS USING IDEAL AND REAL GAS MODELS FOR AIR AND ORGANIC FLUIDS

机译:使用理想和真实气体模型对空气和有机流体进行离心风机性能特征的CFD模拟

获取原文
获取外文期刊封面目录资料

摘要

Efficient processes with organic fluids are becoming increasingly important. The high tech fluid Novec™ is such an organic fluid and is used, for example, as a coolant for high-performance electronics, low-temperature heat transfer applications, cooling of automotive batteries, just to mention a few. Thus, efficient designed fans for the transport of organic fluids are becoming more and more important in the process engineering. CFD-simulations are nowadays integral part of the design and optimization process of fans. For air at the most usual application conditions, i.e. no extreme temperatures or pressures, the ideal gas model is in good agreement with the real gas approach. In the present study, this real gas approach for organic fluids have been investigated with CFD methods and, the deviation from the ideal gas model has been analyzed. For this purpose, a simulation model of a centrifugal fan with volute has been designed as a test case. First, the ideal gas model approach has been compared with the real gas approach model of Peng-Robinson for air using the commercial solver ANSYS CFX. Thereafter, the same comparison has been performed using the organic fluid Novec™. After a detailed grid study, the entire fan characteristics, i.e. the design point and the off-design points, have been simulated and evaluated for each fluid (air and Novec™) and gas model (ideal gas and Peng-Robinson real gas). The steady state simulations of the centrifugal fan have been performed using the Frozen Rotor model. The simulation results have been compared, discussed and presented in detail.
机译:使用有机流体的高效过程变得越来越重要。高科技流体Novec™是一种有机流体,例如,用作高性能电子产品,低温传热应用,汽车电池冷却的冷却剂,仅举几例。因此,在过程工程中,设计高效的用于输送有机流体的风扇变得越来越重要。如今,CFD仿真已成为风机设计和优化过程中不可或缺的一部分。对于最通常的应用条件下的空气,即没有极端的温度或压力,理想的气体模型与真实的气体方法非常吻合。在本研究中,已使用CFD方法研究了这种用于有机流体的真实气体方法,并分析了与理想气体模型的偏差。为此,已经设计了带有蜗壳的离心风机的仿真模型作为测试案例。首先,使用商用求解器ANSYS CFX将理想气体模型方法与Peng-Robinson的空气实际气体模型进行了比较。此后,使用有机流体Novec™进行了相同的比较。在详细的网格研究之后,已针对每种流体(空气和Novec™)和气体模型(理想气体和Peng-Robinson实际气体)模拟并评估了整个风扇的特性,即设计点和非设计点。离心风机的稳态仿真已使用“冷冻转子”模型进行了。仿真结果进行了比较,讨论和详细介绍。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号