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51.
加力燃烧室双层喷油杆内冷却气流动特性 总被引:3,自引:2,他引:1
对新型外涵引气冷却双层壁加力喷油杆的冷气流动特性进行了模拟实验,为双层喷油杆结构设计和冷却性能研究提供基础.通过对8套不同结构尺寸实验件的研究,得到了双层喷油杆冷却套管内气流流阻系数随来流质量流量的变化规律、流阻系数随双层喷油杆结构尺寸的变化规律和冷却套内气流雷诺数随进口总压的变化规律等.对8套实验件结果进行比较,综合三个因素最终选择了较为合理的新型双层喷油杆结构尺寸.这种尺寸的喷油杆流阻系数为1.2,迎风尺寸宽16mm较为合适,相同工况下冷却气的雷诺数最大. 相似文献
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为了研究比例式变推力固体姿控发动机的内流场非稳态特性,建立了比例针栓推力器的二维轴对称计算模型,基于动网格技术模拟入口压强随喉部面积变化而变化的推力器工作模式,得到了内流场各性能参数的变化规律。结果表明:在非稳态工作过程中,内流场会出现典型的亚音速回流区、斜激波和流动分离等特征,入口压强、针栓壁面及喷管壁面压强均随针栓靠近喉部而增大,推力器推力逐渐上升,实现了推力连续调节。开关频率会加剧针栓前进过程中头部压强波动。针栓头部收敛角越大,其头部回流区越小。当喉部面积一定时,燃速压强指数越高,发动机压强与推力变化范围越大,为实现预设的推力调节范围,需要选择合适的燃速压强指数。 相似文献
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Forward Variable Area Bypass Injector (FVABI) is one of key components which contributes to modulate the cycle parameters of Variable Cycle Engine (VCE) under various operation conditions. The modeling method of zero-dimensional FVABI was reviewed and its deficiency was analyzed based on FVABI flow characteristic. In order to improve the accuracy of VCE performance simulation, the high-fidelity modeling method of FVABI was developed based on its working characteristics. Then it was coupled with the zero-dimensional VCE model and the multi-level VCE model was built. The results indicate that the geometric and aerodynamic parameters can affect the interaction between the two airflows and the zero-dimensional FVABI model is too simple to predict the component performance accurately, especially when the FVABI inner bypass is chocked. Based on the performance curves for single bypass mode and the regression model of multi-scale support vector regression for double bypass mode, the high-fidelity model can predict FVABI performance accurately and rapidly. The integration of high-fidelity FVABI model into zero-dimensional VCE model can be done by adjusting iterative variables and balance equations. The multi-level model has good convergence and it can predict VCE performance when the FVABI inner bypass is chocked. 相似文献
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Five types of coaxial injectors were investigated experimentally using hot hydrogen-rich gas and oxygen-rich gas, which were respectively provided by a GH2/GO2 hydrogen-rich perburner and a GH2/GO2 oxygen-rich preburner. The injectors were the shear coaxial injector, the oxidizer post expansion coaxial injector, the fuel impinging coaxial injector, the central body coaxial injector, and the shear tri-coaxial injector. The characteristic velocity efficiency and the combustor's wall temperatures were obtained for different design parameters through the experiments. It can be con- cluded that angles of the oxidizer post expansion and the fuel impinging have little influence on the combustion performance and the wall temperatures. The contact area between fuel and oxidizer and the mass flow rate have significant impacts on the combustion performance. The shear tri-coaxial injector has the best combustion performance but also the highest wall temperatures among the five types of injectors. 相似文献
58.
针栓式喷注单元雾化角模型分析 总被引:2,自引:1,他引:2
为了实现不同径向孔形的针栓式喷注器雾化角的准确预测,从动量守恒方程出发建立了液膜撞击液膜和液膜撞击液束的雾化角理论修正模型。对于液膜撞击液膜的喷注单元,模型中通过理论推导引入了2个变形因子,将撞击的几何变形效应与雾化角关联;对于液膜撞击液束,通过引入阻塞率定义有效撞击动量比,同时将液束入口孔形的影响隐含考虑在变形因子中,最后根据高速摄影试验结果和数值仿真结果获得了对应的变形因子组合系数,使得新的雾化角模型适应性更广、准确性更高。结果表明:引入变形因子和阻塞率的理论模型预测值与试验及数值仿真结果吻合很好;对于液膜撞击液膜,变形因子基本维持在0.9~1.1,根据试验结果及仿真结果,变形因子推荐值为C1=0.99和C2=1.06;对于液膜撞击液束,变形因子推荐值为C1=0.75和C2=1.25。该模型根据实际出口的轴向动量和合成总动量计算雾化角,隐含考虑了撞击作用造成的影响,较根据撞击前入口的轴向动量和合成总动量计算雾化角的常用模型预测值准确度显著提高,为针栓式喷注器的理论研究和工程设计提供了重要参考。 相似文献
59.
A high-fidelity design methodology using LES-based simulation and POD-based emulation: A case study of swirl injectors 总被引:1,自引:0,他引:1
Engineering design is undergoing a paradigm shift from design for performance to design for affordability, operability, and durability, seeking multi-objective optimization. To facilitate this transformation, significantly extended design freedom and knowledge must be available in the early design stages. This paper presents a high-fidelity framework for design and optimization of the liquid swirl injectors that are widely used in aerospace propulsion and power-generation systems. The framework assembles a set of techniques, including Design Of Experiment (DOE), high-fidelity Large Eddy Simulations (LES), machine learning, Proper Orthogonal Decomposition (POD)-based Kriging surrogate modeling (emulation), inverse problem optimization, and uncertainty quantification. LES-based simulations can reveal detailed spatiotemporal evolution of flow structures and flame dynamics in a high-fidelity manner, and identify important injector design parameters according to their effects on propellant mixing, flame stabilization, and thermal protection. For a given a space of design parameters, DOE determines the number of design points to perform LES-based simulations. POD-based emulations, trained by the LES database, can effectively explore the design space and deduce an optimal group of design parameters in a turn-around time that is reduced by three orders of magnitude. The accuracy of the emulated results is validated, and the uncertainty of prediction is quantified. The proposed design methodology is expected to profoundly extend the knowledge base and reduce the cost for initial design stages. 相似文献
60.
强迫扰动下的射流撞击雾化特性 总被引:1,自引:0,他引:1
为全面把握撞击式喷嘴的工作特性,进一步认识雾化在燃烧不稳定中所起的作用,采用试验结合数值模拟的方法开展了强迫扰动条件下撞击式喷嘴的非稳态雾化特性研究。试验方面,采用水力扰动装置产生喷前压力扰动,由脉动压力传感器记录喷前的脉动压力,由高速摄影对动态的喷雾场进行背光拍摄。数值模拟则是基于开源程序Gerris开展,通过给定周期性变化的速度入口来模拟前端压力扰动下的撞击雾化过程。首先验证了建立的数值模拟方案处理非稳态雾化的有效性,其次将自然雾化与强迫扰动雾化进行对比,分析了强迫扰动条件下的撞击雾化特性,最后研究了扰动频率与扰动幅值对于撞击雾化的影响。结果表明:强迫扰动下的射流撞击喷雾场出现了弓形液滴群局部聚集的现象,并且在时间上表现出周期性特征,雾化频率与强迫扰动的频率一致。在研究的频率范围(1 257~3 563 Hz)内,撞击式喷嘴的雾化对扰动都有响应。扰动频率主要影响相邻弓形液滴群之间的间距以及雾场与扰动压力之间的相位关系,扰动幅值则主要影响雾化Klystron效应的强度。随着扰动幅值的增大,液膜的破碎长度减小,撞击点下游的流量特性由线性向非线性转变,由正弦波形转变为陡峭前缘波形。 相似文献