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Numerical investigation of flow and heat transfer characteristics in radial pre-swirl system with different pre-swirl nozzle angles

机译:带有不同预旋喷嘴角度的径向预旋系统中流动和传热特性的数值研究

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The effect of pre-swirl nozzle angle (θ) on the flow and heat transfer characteristics of a radial pre-swirl system is numerically investigated using the CFD software ANSYS-CFX. In this paper, six pre-swirl nozzle angles are selected to study the flow dynamics of the radial pre-swirl system in terms of the flow structure, the nozzle exit flow angle, the air swirl ratio at nozzles outlet and receiver holes inlet, the total pressure loss coefficient in the nozzle and the cavity, the discharge coefficient of the nozzles and receiver holes and the adiabatic effectiveness. It is shown that the case of θ = 20° exhibits the best performance in adiabatic effectiveness and total pressure loss in this system, while the case of θ = 60° provides a maximum in discharge coefficient of receiver holes that is slightly higher than that of θ = 20°. Comparatively, the case of θ = 20° provides the best performance of the radial pre-swirl system. In addition, the effect of pre-swirl nozzle angle on the heat transfer characteristics is also presented. Results show that the heat transfer on the rotor disk is dominated by the flow structure and tangential velocity differential, and the peak in heat transfer coefficient can be observed near the receiver hole.
机译:使用CFD软件ANSYS-CFX数值研究了预旋喷嘴角度(θ)对径向预旋系统的流动和传热特性的影响。本文选择了六个预旋流喷嘴角度,从流结构,喷嘴出口流向角度,喷嘴出口和接收器孔入口处的空气涡流比,径向预旋系统的流动动力学角度研究了径向预旋系统的流动动力学。喷嘴和腔体中的总压力损失系数,喷嘴和接收器孔的排放系数以及绝热效果。结果表明,在此系统中,θ= 20°的情况在绝热效果和总压力损失方面表现出最佳性能,而θ= 60°的情况则提供了最大的接收孔排放系数,略高于θ= 20°。相比较而言,θ= 20°的情况提供了径向预旋系统的最佳性能。此外,还提出了预旋流喷嘴角度对传热特性的影响。结果表明,转子盘上的传热受流动结构和切向速度差的支配,并且在接收孔附近可以观察到传热系数的峰值。

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