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41.
30P-30N多段翼型复杂流场数值模拟技术研究 总被引:2,自引:0,他引:2
采用"亚跨超CFD软件平台"(TRIP2.0)数值模拟了30P-30N多段翼型的复杂流场,主要目的是考核湍流模型、转捩位置对多段翼型压力分布和典型站位速度型的影响。本文通过求解任意坐标系下的雷诺平均的N-S方程,采用多块对接结构网格技术,在与相应试验结果对比的基础上,详细研究了SA一方程湍流模型、SST两方程湍流模型、不同的转捩位置对该翼型压力分布和典型站位速度型的影响。本文的研究结果表明,采用全湍流模拟方式可以较好地模拟该多段翼型的压力分布,但对速度型的模拟精度较差;模拟试验的转捩位置可以改善主翼附面层与前缘缝翼边界层尾迹区的模拟精度;采用微吸气技术推迟前缘缝翼的转捩位置,可以进一步提高缝翼尾迹区的数值模拟精度。 相似文献
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SACMA和QMW试验方法对复合材料层合板低速冲击后压缩行为的影响 总被引:1,自引:0,他引:1
采用了 SACMA标准和一种小试样试验方法对复合材料层合板低速冲击后的压缩 (CAI)行为进行试验研究 ,从层合板的冲击损伤分布、冲击后压缩破坏过程 ,以及层合板的准静态横向压缩、开孔后压缩等多方面进行对比 ,结果表明 ,这两种试验方法存在很大差别 ,试验方法不同 ,层合板低速冲击后的压缩行为也不同 ;采用 SACMA标准所测得的低速冲击后压缩强度更能全面反映基体韧性的优劣。作为 CAI试验标准 ,小试样试验方法还有待改进 相似文献
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为了提高飞机客舱使用地面空调制冷时客舱能耗的预测精度,提出了一种改进的粒子群优化(IPSO)Elman神经网络的飞机客舱能耗预测模型。依据对算法中惯性权重与学习因子的收敛域分析,得出了二者合理的取值范围,将粒子到全局最优位置间距离与参数的取值范围相结合,构造了惯性权重与学习因子的动态调节函数,对其进行非线性的动态调节,并引入了变异因子,提出了一种跳出局部最优的策略,防止粒子群优化(PSO)陷入局部最优。将IPSO-Elman应用于Boeing738飞机客舱能耗预测中,与PSO-Elman、Elman算法进行性能比较,仿真结果表明基于IPSO-Elman的客舱能耗预测模型在预测精度和收敛速度方面均有一定的提升。该研究结果为飞机客舱能耗预测模型的建立提供了理论依据,对飞机地面空调的节能与机场电能合理调配提供了支持。 相似文献
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In the face of harsh natural environment applications such as earth-orbiting and deep space satellites, underwater sea vehicles, strong electromagnetic interference and temperature stress,the circuits faults appear easily. Circuit faults will inevitably lead to serious losses of availability or impeded mission success without self-repair over the mission duration. Traditional fault-repair methods based on redundant fault-tolerant technique are straightforward to implement, yet their area, power and weight cost can be excessive. Moreover they utilize all plug-in or component level circuits to realize redundant backup, such that their applicability is limited. Hence, a novel selfrepair technology based on evolvable hardware(EHW) and reparation balance technology(RBT) is proposed. Its cost is low, and fault self-repair of various circuits and devices can be realized through dynamic configuration. Making full use of the fault signals, correcting circuit can be found through EHW technique to realize the balance and compensation of the fault output-signals. In this paper, the self-repair model was analyzed which based on EHW and RBT technique, the specific self-repair strategy was studied, the corresponding self-repair circuit fault system was designed, and the typical faults were simulated and analyzed which combined with the actual electronic devices. Simulation results demonstrated that the proposed fault self-repair strategy was feasible. Compared to traditional techniques, fault self-repair based on EHW consumes fewer hardware resources, and the scope of fault self-repair was expanded significantly. 相似文献
48.
《中国航空学报》2020,33(2):589-597
In this paper, the spray characteristics of a double-swirl low-emission combustor are analyzed by using Particle Imaging Velocimetry (PIV) and Planar Laser Induced Fluorescence (PLIF) technologies in an optical three-sector combustor test rig. Interactions between sectors and the influence of main stage swirl intensity on spray structure are explained. The results illustrate that the swirl intensity has great effect on the flow field and spray structure. The spray cone angle is bigger when the swirl number is 0.7, 0.9 than that when the swirl number is 0.5. The fuel distribution zone is larger and the distribution is more uniform when the swirl number is 0.5. The fuel concentration in the center area of the center plane of side sector (Plane 5) is larger than that of the center plane of middle sector (Plane 1). The spray cone angle in Plane 5 is larger than that in Plane 1. The width of spray cone becomes larger with the increase of Fuel–Air Ratio (FAR), whereas the spray cone angle under different fuel–air ratios are absolutely the same. The results of the mechanism of spray organization in this study can be used to support the design of new low-emission combustor. 相似文献
49.
直升机/粒子分离器一体化流场特性: 第一部分 前进比的影响 总被引:1,自引:3,他引:1
针对典型布局条件下直升机/粒子分离器的一体化流动特性进行了仿真研究.利用相关试验数据对仿真方法的有效性进行了检验,将整体式粒子分离器安装至类“阿帕奇”直升机外型上,形成了一种典型直升机/粒子分离器布局方案,并分析了其在不同前进比下的一体化流场特性.结果表明:较高前进比下,在粒子分离器进口上游的齿轮箱外罩上出现了复杂的三维流动分离,使得粒子分离器在较不均匀的进口来流条件下工作.与独立粒子分离器状态相比,一体化条件下粒子分离器主流出口、扫气流出口的总压损失均有所加大,增幅分别为1%和8%. 相似文献
50.
The role of AVDR in linear cascade testing 总被引:1,自引:0,他引:1
Linear cascade testing plays an important role in the research and development of turbomachinery and is widely used over the world.The ideal cascade model of a turbomachinery blade row is two-dimensional.In actual linear cascade testing, the flow through the test section converges due to the development of the boundary layer and secondary flow along the sidewall surfaces of the test section.Axial velocity density ratio(AVDR) is adopted to account for the deviation of the tested cascade flow from the ideal 2D model.Among numerous published cascade works, the influence of AVDR on cascade performance is seen to be complicated with many affecting factors, such as those related to cascade/blade geometry and flow conditions.Also, controlling AVDR is limited by the facility capability.Furthermore, real blade-to-blade flow in turbomachines is usually associated with AVDR greater than unity due to limited span of blades between the hub and shroud such that cascade testing without reducing AVDR could be favored sometimes.All these facets add complexity and diversification to the matter.The current paper reviews previous studies and results on AVDR.Consolidated understanding on the role of AVDR and recommendations on how to deal with it in linear cascade testing are provided. 相似文献