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231.
槽道宽度对压气机叶栅气动性能的影响   总被引:5,自引:1,他引:4  
数值模拟了槽道宽度对压气机叶栅气动性能的影响.结果表明,在4种采用不同槽道宽度的叶片开槽流动控制方案中,槽道出口射流均能有效吹除叶片吸力面尾缘附面层气流,提高叶栅气动性能,并存在使叶栅性能提升最大的最佳槽道宽度;随着槽道宽度增大,槽道出口射流流量及其作用范围得到增大,但同时也增加了射流在槽道出口处的流动损失,限制了射流的作用效果,从而使大槽道宽度时的叶栅性能下降.   相似文献   
232.
间隙流触发压气机内部流动失稳机制及周向槽扩稳机理   总被引:2,自引:1,他引:1  
利用高频响动态压力传感器对某低速轴流压气机转子的失速先兆和顶部流场进行了详细的测试,探明该压气机内部存在与叶顶间隙泄漏流相关的突发型失速先兆,对压气机转子内部流场进行了单通道定常和非定常数值模拟,详细分析了压气机内部流动失稳过程中顶部流场结构的变化,揭示顶部间隙泄漏流触发轴流压气机内部流动失稳机理.在此基础上,利用周向槽处理机匣结构对顶部间隙泄漏流进行控制,并探讨了周向槽处理机匣结构提高压气机稳定工作裕度机理.   相似文献   
233.
为了能有效地拓宽压气机的失稳裕度,在一台跨声轴流压气机上进行了基于介质阻挡放电(DBD)等离子体激励扩稳的实验研究.实验中分别选取了正弦交流电源和纳秒脉冲电源提供激励,并在跨声压气机40%设计转速和65%设计转速下对其扩稳效果和效率进行了对比分析.结果表明:在40%设计转速时,正弦交流电源和纳秒脉冲电源均能有效拓宽压气机流量范围,其中正弦交流电源激励方式能够使压气机综合失速裕度改善(SMI)达到15.33%.在65%设计转速时,两种激励方式的扩稳效果明显减弱,此时纳秒脉冲电源激励方式的扩稳效果更好.在压气机效率方面,纳秒脉冲电源对压气机设计点的效率影响更小,在40%设计转速时甚至能略微提升其设计点效率.实验结果表明,合理地选择激励方式有助于提高等离子体激励的扩稳效果,为实际压气机中基于介质阻挡放电等离子体激励扩稳措施的设计提供参考.   相似文献   
234.
轴流压气机试验若干异常气动现象表征与机理分析   总被引:1,自引:0,他引:1  
在梳理某压气机试验器开展的历次压气机性能试验结果基础上,分析了试验系统发生的若干典型异常气动物理现象,通过试验数据表征分析与抑制方法试验验证,初步揭示了压气机试验异常气动现象的形成机制.研究结果表明:进口局部导叶角度失调会对下游流场产生扰动,导致压气机性能与稳定性出现恶化;转子顶部容腔通道逆流是导致压气机转子前外壁静压测量值偏高的原因,通过抑制容腔逆流可以改善压气机气动性能;改变进口节流比观察换算流量是否发生变化,是判定压气机试验进气系统漏气问题的有效方法.研究结果对于指导压气机性能试验故障诊断和提高试验分析能力具有重要作用.   相似文献   
235.
圆柱薄壳受有轴向动力载荷作用的非线性响应计算中,以往忽略载荷作用端质量的影响。本文在推导和响应计算中,在系统动能T中把壳体载荷端质量的影响考虑进去,并且计算了载荷作用端不同质量对动力屈曲载荷的影响。同时包含了轴向惯性和边界效应的影响。  相似文献   
236.
放置倾角对轴向槽道热管传热特性影响的实验研究   总被引:1,自引:1,他引:1  
曲燕  栾涛  程林 《宇航学报》2006,27(3):493-497
对常温梯形轴向槽道热管在不同放置倾角下的传热特性进行了实验研究,着重分析了热管的放置倾角对轴向温度分布、最大轴向温差、总热阻、当量换热系数、最大传热量的影响,旨在为航空热管的地面性能测试提供参考。实验结果表明:热源在下垂直放置热管的蒸发段和冷凝段的当量换热系数分别是水平放置热管的1.5倍和2.5倍。热源在上倾斜放置的热管,水平放置的热管、热源在下倾斜放置的热管的平均总热阻成一个数量级递减,蒸发段的最大输入热流量依次递增一个数量级。  相似文献   
237.
《中国航空学报》2020,33(12):3228-3237
A physical model for acoustic resonance in the annular cavity structure is developed to represent the typical characteristic when acoustic resonance occurs. Firstly, the measurement of sound pressure in the casing and rotor blades vibration is operated in a multistage high pressure compressor. The sharp peak frequency and discrete multi-tone occur in the frequency spectrum of sound pressure in the compressor, and the vibration of the first stage of rotor blades synchronously presents the high amplitude. The frequencies associated with rotor blades vibration can be calculated with rotating sound source theory. It is also confirmed that acoustic resonance occurs in the multistage compressor. With acoustic similarity principle, an annular cavity model is established to simulate the typical characteristics of acoustic resonance in the compressor based on Large Eddy Simulation (LES) and Lighthill acoustic analogy. The coupling relationship between cavity acoustic mode and disc vibration mode shape is expounded when acoustic resonance occurs in the model. And acoustic resonance will be locked in the certain flow rate range. All these characteristics match well with those occur in the multistage high pressure compressor.  相似文献   
238.
This paper seeks to outline the temperature effect on the buckling properties of ultra-thin-walled lenticular collapsible composite tube(LCCT) subjected to axial compression.The buckling tests of the LCCT specimens subjected to axial compression were carried out on INSTRON-500 N servo-hydraulic machine in dry state and at the temperatures of 25 C, 100 C and 80 C. The load–displacement curves and buckling initiation loads were measured and the buckling initiation mechanism was discussed from experimental observations. Experiments show that the buckling initiation load, on average, is only about 2.2% greater at the low temperature of 80 C than at the room temperature of 25 C due to the material hardening, demonstrating an insignificant increase in the buckling initiation load, whereas it is about 19.5% lower at the high temperature of 100 C than at the room temperature owing to the material softening, implying a significant decrease in the buckling initiation load. The failure mode of the LCCT in axial compression tests at three different temperatures can be reckoned to be characteristic of the buckling initiation and propagation around the central region until rupture. The finite element(FE) model is presented to simulate the buckling initiation mechanism based on the eigenvalue-based methodology. Good correlation between experimental and numerical results is achieved.  相似文献   
239.
Parametric study of tip injection was implemented experimentally on a subsonic axial flow compressor to understand the underlying flow mechanisms of stability improvement of the compressor with discrete tip injection.Injector throat height varied from 2 to 6 times the height of rotor tip clearance,and circumferential coverage percentage ranged from 8.3% to 25% of the annulus.Static pressure fluctuations over the rotor tip were measured with fast-response pressure transducers.Whole-passage time-accurate simulations were also carried out to help us understand the flow details.The combinations of tip injection with traditional casing treatments were experi mentally studied to generate an engineering-acceptable method of compressor stall control.The results indicate that the maximum stability improvement is achieved when injectors are choked despite their different sizes.The effect of circumferential coverage percentage on compressor stabil ity depends on the value of injector throat height for un-choked injectors,and vice versa.Tip blockage in the blade passage is greatly reduced by the choked injectors,which is the primary reason for stability enhancement.The accomplishment of blockage diminishment is maintained in the circumferential direction with the unsteady effect of tip injection,which manifests as a hysteresis between the recovery of tip blockage and the recovery of tip leakage vortex.The unsteady effect is primarily responsible for the effectiveness of tip injection with a partial circumferential coverage.Tip injection cannot enhance the stability of the rotor with axial slots significantly,but it can improve the stabil ity of the rotor with circumferential grooves further.The combined structure of tip injection with circumferential grooves is an alternative for engineering application.  相似文献   
240.
以某1.5级高负荷轴流压气机为研究对象,采用经过校核的数值模拟手段详细探究了低雷诺数下表面粗糙度对其气动性能及内部流场的影响.结果表明:相比于光滑叶片,表面粗糙度为137.8时压气机性能提升最为明显,总压比、堵塞流量以及峰值效率分别提升4.01%、2.24%、5.34%.在整个表面粗糙度大小范围内,表面粗糙度布置在吸力...  相似文献   
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