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1.
低速轴流涡轮非定常数值模拟的非线性谐波法   总被引:4,自引:0,他引:4  
本文介绍了旋转机械非定常数值模拟的非线性谐波方法,并对某低速轴流涡轮的流场进行了数值模拟,获得了该涡轮通道内的非定常流场结构.在与实验结果及定常计算结果对比确认的基础上,分析了该涡轮动静叶间干涉与非定常流动特性,并比较了谐波阶数和工质的压缩性对计算结果的影响.研究结果表明,非线性谐波方法可有效地模拟动静非定常干涉.  相似文献   

2.
离心压气机内部非定常流场的数值模拟   总被引:2,自引:0,他引:2  
应用NUMECA软件对跨声速离心压气机级动静叶相互干涉形成的三维非定常粘性流场进行了数值模拟,给出了不同时刻叶片表面压力系数的变化曲线,不同时刻不同流向位置截面上速度沿流道宽度方向分布的变化曲线.模拟结果表明压力场和速度场的非定常特性主要表现在叶轮出口、径向间隙以及整个扩压器内.压力面上的非定常现象较吸力面上显著.  相似文献   

3.
非设计工况下动静叶相互干扰的非定常流动特性   总被引:2,自引:0,他引:2  
本文对非设计工况下动静叶栅相互干扰的非定常流动特性进行数值研究。非设计工况主要考虑大攻角下的分离 流动,动静叶干扰的非定常流动的数值求解在N—S方程的基础上采用分区计算的方法来完成。数值分析结果揭示了在分 离流动本身的非定常特性与动静叶栅相互干扰的非定常特性的双重影响下的流场情况。  相似文献   

4.
透平叶栅静叶周向布局的数值研究   总被引:2,自引:0,他引:2  
本文采用分区、并行计算方法求解二维Euler方程,对1.5级透平叶片排内的非定常流场干涉进行了数值模拟,并探讨了透平叶栅静叶周向布局对透平级性能的影响.计算结果表明,本文的处理和计算方法是合理有效的,并且发现存在静叶最佳周向布局,此时透平级的性能最好.本文所得结论对于透平级的优化设计是有意义的。  相似文献   

5.
动静干涉效应对轴流透平级气动性能的影响   总被引:4,自引:1,他引:3  
本文对Aachen一级半轴流式透平进行了准定常及非定常流动的数值模拟,讨论了引发动静干涉效应的主要因素,分析了非定常效应对叶栅通道中脉动速度、气流角、型面压力分布以及损失结构的影响。结果表明,对于Aachen透平而言,上游叶片排的尾迹区及二次涡是引发下游叶栅通道流场强非定常特性的最主要因素,引起了脉动速度、型面压力、攻角以及损失的较大变化,从而对透平级性能产生较大的影响。  相似文献   

6.
叶型优化在非定常流动条件下效果的数值分析   总被引:4,自引:0,他引:4  
本文对叶型优化在非定常流动条件下的效果进行数值研究。叶型优化基于比较成熟的在定常流动条件下的反问题解法,非定常流动则考虑到动静叶栅之间的相互作用,非定常流动的求解在N-S方程的基础上采用分区计算的方法来完成。数值计算的结果表明,定常流动条件下优化得到的叶型在非定常流动条件下同样具有较好的气动性能。  相似文献   

7.
动静叶栅优化改型及其性能分析   总被引:1,自引:0,他引:1  
本文对动静叶栅分别进行优化改型,并对改型前后叶栅的气动性能进行数值分析。动静叶栅的优化改型基于正反问题相结合的流函数方法,性能分析一方面基于单排叶栅定常粘性流动的数值计算,另一方面基于动静叶栅相互干扰非定常粘性流动的数值计算。算例结果表明,经过优化改型后的动静叶栅的气动性能,无论在定常流动条件下还是在非定常流动条件下,相比改型前均有较大幅度的改善。  相似文献   

8.
旋转离心叶轮与叶片扩压器间耦合流动的数值分析   总被引:3,自引:1,他引:2  
以离心压气机内部动静部件耦合的非定常流场为研究对象,本文提出了动静耦合统一正命题型式,采用κ-ε紊流模型、同步计算动静耦合流场的方法,分别对下同流量工况下离心叶轮与叶片扩压器内部非定常流动进行了数值计算。计算结果与激光多普勒测量结果进行了比较:在设计工况下,离心叶轮与叶片扩压器相互匹配较好,而在非设计工况下,流道内流动趋向恶化。说明计算结果是有一定的可信度;计算结果同时说明,只有采用非定常算法,才有可能较好地描述动静部件耦合的流场。  相似文献   

9.
跨声速风扇流场中弯叶片抗畸变能力研究   总被引:1,自引:0,他引:1  
采用全流道三维非定常数值模拟的方法研究了进口总压畸变条件下静叶弯叶片对跨声速风扇流场的影响,给出了静叶弯曲对风扇流场的改善情况.重点分析了不同叶高处动静叶流场的变化情况.  相似文献   

10.
非定常叶顶间隙泄漏流动和换热的数值研究   总被引:3,自引:0,他引:3  
通过数值方法研究了带叶顶间隙的某一级半透平中的非定常流动和换热问题.数值模拟采用标准k-ω两方程湍流模型,求解非定常雷诺平均N-S方程.动叶顶部间隙取为0.4 mm.分析了动静干涉对动叶顶部间隙内泄漏流动与换热的影响.结果表明,周期性通过的上游静叶尾迹和通道涡足动叶通道中非定常现象的主要来源.流场的波动主要存在于叶顶吸力面侧中间弦长附近.叶顶换热系数波动主要存在于两个位置,一是叶顶吸力面侧,一是叶顶主泄漏通道.叶顶表面面积平均传热系数非定常计算的时均结果与定常计算获得的结果偏差小于2%.  相似文献   

11.
圆柱和直桨叶突然启动瞬态流动的数值研究   总被引:1,自引:0,他引:1  
采用基于动网格方法的有限体积法对圆柱和直桨叶突然启动引起的二维非定常不可压粘性流进行了数值模拟,给出了计算方法.通过计算得到了Re=5000和9500时圆柱突然启动后的流场随时间演化的非定常过程.将计算结果与实验结果进行了对比,两者吻合较好;采用大涡模拟对高雷诺数下的直桨叶突然旋转启动的流场进行了计算,得到了完成启动后叶片内部瞬态流场的分布结果.  相似文献   

12.
The present paper extends an existing analytical model of the aeroacoustic response of a rectilinear cascade of flat-plate blades to three-dimensional incident vortical gusts, to the prediction of the noise generated by a three-dimensional annular blade-row. The extended formulation is meant to be implemented in a fan broadband noise prediction tool. The intended applications include the modern turbofan engines, for which analytical modelling is believed to be a good alternative to more expensive numerical techniques. The prediction noise model resorts to a strip theory approach based on a three-dimensional rectilinear cascade model. The latter is based on the Wiener-Hopf technique, and yields the pressure field in the blade passage and the unsteady blade loading. The analytical pressure solution is derived by making an extensive use of the residue theorem. The obtained unsteady blade loading distribution over the blades is then used as a dipole source distribution in an acoustic analogy applied in the annular rigid duct with uniform mean flow. The new achievements are then tested on three-dimensional annular-benchmark configurations and compared with three-dimensional lifting-surface models and three-dimensional Euler linearized codes available in the literature. The accuracy of the model is shown for high hub-to-tip ratio cases. When used as such in a true rectilinear-cascade configuration, it also reproduces the exact radiated field that can be derived directly. For low hub-to-tip ratio configurations, the model departs from three-dimensional computations, both regarding the blade loading and the acoustic radiation. A correction is proposed to account for the actual annular dispersion relation in the rectilinear-cascade response function. The results suggest that the proposed correction is necessary to get closer to the underlying physics of the annular-space wave equation, but that it is yet not sufficient to fully reproduce three-dimensional results.  相似文献   

13.
大小叶片贯流风机内流特性分析与实验研究   总被引:1,自引:0,他引:1  
为降低空调用贯流风机的噪声,改善音质,通过采用直叶片贯流风轮达到斜扭叶片贯流风轮的音质和低噪声特性,从而降低贯流风轮的制造成本,本文设计了大小叶片交错组合的新型非等距贯流风机,并采用滑动网格对其内流特性进行了非定常数值模拟,同时对其气动噪声特性进行了实验研究.大小叶片贯流风机的偏心涡基本稳定在叶轮中心与蜗舌相连的切线上,位于叶轮内圆周附近.风轮非定常运转时,偏心涡的涡核位置在直径为2mm的圆所围成的区域内变化.大小叶片交错组合的贯流风轮改变了叶轮与蜗舌的间距,有效地降低叶片通过频率噪声并改善了音质.采用大小叶片交错组合的贯流风轮能够达到斜扭叶片贯流风机的降噪效果.  相似文献   

14.
In spite of a low circumferential Mach number the sound of isolated centrifugal fan impellers is sometimes dominated by distinctive tones at blade passing frequency (BPF) and integer multiples. This paper reports on an experimental and numerical investigation intended to unveil the tone generating mechanism. The sound spectra from three impellers operating at a large range of speed were measured and decomposed into Strouhal and Helmholtz number dependent functions. This led to the preliminary conclusion that the BPF related tones are exclusively flow-induced. Based on hot-wire and blade pressure fluctuation measurements and a subsequent correlation analysis, coherent flow structures different from those associated with the principal azimuthal flow pattern due to the blades were detected. Eventually a numerical three-dimensional unsteady flow simulation revealed an inlet vortex. It takes on a helical form, with the vortex core slowly varying its position with respect to the impeller center. As the blades cut through that quasi-stationary helical vortex they encounter blade force fluctuations, producing the BPF tones. Slow spin of the vortex core and slow variation of vortex strength were identified as the reasons for amplitude modulation of the BPF tone.  相似文献   

15.
本文通过求解SST湍流模型以及三维Unsteady Reynolds-Averaged Navier-Stokes(URANS)方程,研究了单级轴流透平轮缘密封整周模型的流动与封严特性。分析了不同冷气流量下的封严效率与压力波动的变化,并通过与仅保留静叶和仅保留动叶的简化模型比较,分析了动静叶对主流与盘腔内压力波动的影响。结果表明:盘腔内部封严效率存在周向波动但无明显周期性规律,主流与盘腔内的压力周向波动受动静叶的影响,存在明显的周期性规律,静叶下游压力波动周期数等于静叶数,动叶上游与盘腔内部压力波动周期数等于动叶数。  相似文献   

16.
不同叶轮形式下离心泵噪声特性对比研究   总被引:5,自引:0,他引:5  
针对具有无短叶片和有短叶片两种叶轮形式的离心泵,对设计状态下离心泵内部流场进行了全三维、非定常数值模拟,对比分析了其非定常流场特性和噪声辐射特性。流场分析表明:叶轮叶片和蜗舌的相互作用造成了叶片表面强烈的压力脉动,对长短叶片的叶轮形式,在局部增加长叶片表面压力脉动的同时,短叶片表面的压力脉动保持较低水平;同时能够有效降低泵体进口压力脉动,但出口压力脉动有所增强。以叶轮叶片表面作为声源辐射面,对比分析了两种叶轮的偶极子噪声辐射特性,结果表明:长短叶片结构通过改变声能在频域上的分布,从而能有效降低总声压级。   相似文献   

17.
随着风力机大型化发展,叶片尾缘襟翼控制技术,作为叶片流场主动控制的一种有效手段,能够有效、快速、灵活地降低叶片载荷,提高风力机,特别是大型风力机的可靠性、经济性,该技术受到国内外的广泛关注。为深入了解叶片襟翼实际作用效果及降载机制,在大量数值仿真计算工作基础上,需进一步开展带有襟翼控制的模型风力机风洞实验工作。本文在相似准则基础上,引入叶片展向环量、Polar线相似条件,对NREL 5 MW风力机叶片按1:105进行缩比设计,采用伺服电机驱动襟翼的结构方案对叶片参数进行修正,并根据BEM理论优化带有襟翼叶片的气动性能,最终确定带有襟翼控制的风力机叶片设计方案。最后利用气弹耦合仿真计算平台对带有襟翼控制的模型风力机进行性能计算,确定理想实验工况点及对应的降载效果。本文所开展的工作不仅能够为叶片缩比设计提供新思路,更有意义的是为襟翼控制系统在叶片中的实现提供有效借鉴。  相似文献   

18.
本文在振荡来流条件下,数值模拟叶顶端翼对加装主动Gurney襟翼的垂直轴风力机叶片非定常气动特性的影响。采用NACA0015翼型的直叶片,并在尾缘前6%弦长位置安装主动襟翼。在最大出力工况(折合频率为0.1)下,对比原型叶片,加装主动襟翼叶片的切向力系数提高了4.47%,安装有叶顶端翼的主动襟翼叶片的切向力系数提高21.18%。通过比较叶片端部涡结构分布,发现叶顶端翼不仅阻止了叶片压力面及吸力面的叶梢涡分支在尾缘处汇合,同时也隔断了主动襟翼产生的角涡与叶梢涡的融合,有效的降低了叶片端部损失,提升了风力机的整体性能。  相似文献   

19.
This paper reports on an experimental investigation of large-scale flowfield instabilities in a pump rotor and the process of noise generation by these instabilities. Measurements of the fluctuating components of velocity and surface pressure were made with hot-wire probes and surface mounted pressure transducers on a seven bladed back swept centrifugal water pump impeller operating with air as the working fluid. The impeller was operated without a volute or scroll diffuser, thereby eliminating any sound generation from pressure fluctuations on the volute cutoff. Thus the study focused on flow field and noise components other than the blade passage frequency (and its harmonics). The primary goal of the study was to provide fundamental information on the unsteady flow processes, particularly those associated with the noise generation in the device. It was further anticipated that detailed flow measurements would be useful for the validation of future computational simulations.The measured data at the discharge show a jet-wake type of flow pattern which results in a strong vorticity field. The flow with high velocity found on the pressure side of the impeller tends to move to the low-pressure region present at the suction side of the passage as a form of roll-up around the blade trailing edge. This motion causes an unsteady flow separation at the suction side of the blade and consequently disturbs the flow in the adjacent passage. By interacting with the impeller blades near the trailing edges, this instability flow causes a periodic pressure fluctuation on the blade surface and generates noise by a trailing edge generation mechanism. The spectrum of surface pressure measured at the trailing edge of each blade reveals a cluster of peaks which were identified with azimuthal mode numbers. The correlation between the acoustic farfield pressure and the surface pressure on the impeller blade has proven that the azimuthal modes synchronized with the number of impeller blades generate noise much more efficiently than the other modes. The paper also clarifies the correlation between unsteady flowfield measurements, in both impeller and laboratory co-ordinates, with the radiated noise properties. Thus some light is shed on the noise generation mechanisms of this particular device.  相似文献   

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