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41.
吴衡  刘高文  冯青  武志鹏 《推进技术》2019,40(10):2252-2261
对预旋系统内的压力变化相关研究较少。基于理论分析、实验测量以及数值计算,对某盖板式预旋系统的压比及熵增特性进行研究。通过理论推导,对预旋系统内压比与无量纲温降的关系进行分析。在最高转速可达10000r/min的高转速实验台上,测量了转盘上的气流静压以及相对总温,进而获得压比及熵增特性。进行三维数值计算,将数值计算结果与实验结果进行了对比,并根据数值计算结果对预旋系统内的熵产分布以及各元件的熵增情况进行分析。结果表明:系统温降以及旋转马赫数大小决定了预旋系统的理想最大压比,而实际压比与理想压比的比值取决于系统内的熵增大小。采用数值计算以及实验测量所得结果对理论关系式进行了验证,最大偏差2.7%。旋转马赫数一定的条件下,随系统无量纲温降增大,系统压比逐渐减小。由于熵增影响,实测压比与理想压比最大相差约36%。预旋系统内的熵增主要发生在预旋腔静止壁面、接受孔前后、供给孔进口等气流旋转比发生剧烈变化的区域。预旋系统内主要元件的熵增随流量增大都呈逐渐增大的趋势,但接受孔处熵增最小值出现在喷嘴出口旋转比等于1左右时,流量过小或过大都会导致接受孔处熵增变大。  相似文献   
42.
The experimental results obtained in experiment “STACO” made on board the Spacelab D-2 are re-visited, with image-analysis tools not then available. The configuration consisted of a liquid bridge between two solid supporting discs. An expected breakage occurred during the experiment. The recorded images are analysed and the measured behaviour compared with the results of a three dimensional model of the liquid dynamics, obtaining a much better fit than with linear models.  相似文献   
43.
共轴倾转旋翼性能计算方法   总被引:1,自引:1,他引:0  
共轴倾转旋翼飞行器是一款可折叠机翼的高速旋翼飞行器。本文建立了适用于共轴倾转旋翼飞行器直升机模式、倾转过渡模式和固定翼飞机模式的旋翼性能计算方法,并对比风洞试验数据验证了共轴倾转旋翼轴流状态的性能和共轴双旋翼前飞状态的性能。在此基础上,分析了共轴倾转旋翼在倾转过渡状态各性能参数的变化规律、上下旋翼诱导速度的分布情况、上下旋翼之间的干扰面积和干扰因子的变化趋势。结论表明:相同来流速度下,当倾转角增大,共轴倾转旋翼的拉力系数减小,功率系数先增大后减小,上下旋翼的受干扰面积和干扰因子均增大。  相似文献   
44.
Wilkinson定理是代数特征值问题中的一个经典定理,文章给出了Wilkinson定理的结果中关于扰动矩阵上界的另一种估计形式,并指出该形式对Wilkinson定理具有一定的改进。  相似文献   
45.
利用薄片金属梁作为非线性刚度元件,构建一种非线性能量阱。为了验证非线性能量阱对飞轮振动特性的抑制效果,搭建地面飞轮测试系统。分别采用力锤敲击和飞轮以恒定转速运行的方法施加不同载荷,对安装非线性能量阱前后测试系统各典型位置的振动响应进行对比研究。利用实测数据,采用傅里叶变换方法将动态响应信息分别在时间域和频率域内展开。研究表明:力锤敲击产生的冲击载荷和飞轮以恒定转速运行产生的稳态载荷均可以激发非线性能量阱定向能量传输;受非线性能量阱的影响,柔性支架设备安装面和飞轮安装面振动响应得到有效抑制。但是,由于非线性能量阱阻尼和吸振子质量较小,不同程度削弱了其振动抑制效果。  相似文献   
46.
《中国航空学报》2020,33(8):2257-2267
Both single-face vacuum bag curing (SVC) and double-face vacuum bag curing (DVC) can be used in scarf repair of composite structures. But different curing conditions caused by the sealing state may affect the bonding quality of scarf-repaired structures. In this paper, the effect of curing condition on bonding quality of scarf-repaired laminates was experimentally investigated in terms of surface profiles, moisture absorption curves and section profiles. In order to further explore the moisture absorption mechanism, finite element model of the repaired laminates using DVC was established with moisture diffusion of both the adhesive and composite laminates considered. This model was verified by experimental results. Based on the model of DVC case, the model of SVC case was built by changing moisture absorption parameters of the adhesive. Results show that SVC reduces the bonding quality, mainly reflecting in more adhesive inner voids and patch-to-parent dislocation. And SVC increases moisture absorption rate and moisture equilibrium content of the adhesive, and its effect on the former is far greater than that on the latter.  相似文献   
47.
Responding to a need for experimental data on a standard wind tunnel model at high angles of attack in the supersonic speed range, and in the absence of suitable reference data, a series of tests of two HB-2 standard models of different sizes was performed in the T-38 trisonic wind tunnel of Vojnotehnickˇi Institut(VTI), in the Mach number range 1.5–4.0, at angles of attack up to+30°. Tests were performed at relatively high Reynolds numbers of 2.2 millions to 4.5 millions(based on model forebody diameter). Results were compared with available low angle of attack data from other facilities, and, as a good agreement was found, it was assumed that, by implication, the obtained high angle of attack results were valid as well. Therefore, the results can be used as a reference database for the HB-2 model at high angles of attack in the supersonic speed range, which was not available before. The results are presented in comparison with available reference data, but also contain data for some Mach numbers not given in other publications.  相似文献   
48.
To meet the requirements of fast and automatic computation of subsonic and transonic aerodynamics in aircraft conceptual design,a novel finite volume solver for full potential flows on adaptive Cartesian grids is developed in this paper.Cartesian grids with geometric adaptation are firstly generated automatically with boundary cells processed by cell-cutting and cell-merging algo rithms.The nonlinear full potential equation is discretized by a finite volume scheme on these Cartesian grids and iteratively solved in an implicit fashion with a generalized minimum residual (GMRES) algorithm.During computation,solution-based mesh adaptation is also applied so as to capture flow features more accurately.An improved ghost-cell method is proposed to implement the non-penetration wall boundary condition where the velocity-potential of a ghost cell is modified by an analytic method instead.According to the characteristics of the Cartesian grids,the Kutta condition is applied by specially computing the gradients on Kutta-faces without directly assigning the potential jump to cells adjacent wake faces,which can significantly improve the solution con verging speed.The feasibility and accuracy of the proposed method are validated by several typical cases of sub/transonic flows around an ONERA M6 wing,a DLR-F4 wing-body,and an unconventional figuration of a blended wing body (BWB).The validation cases demonstrate a fast convergence with fully automatic grid treatment and computation,and the results suggest its capacity in application for aircraft conceptual design.  相似文献   
49.
实验教学是高等院校教学过程的一个重要环节,应建立新型的实验室管理模式,从开放实验室和改革教学方法两个方面出发,阐述了实验课程改革的必要性。  相似文献   
50.
Repeated Unit Cell(RUC)is a useful tool in micromechanical analysis of composites using Displacement-based Finite Element(DFE)method,and merely applying Periodic Displacement Boundary Conditions(PDBCs)to RUC is almost a standard practice to conduct such analysis.Two basic questions arising from this practice are whether Periodic Traction Boundary Conditions(PTBCs,also known as traction continuity conditions)are guaranteed and whether the solution is independent of selection of RUCs.This paper presents the theoretical aspects to tackle these questions,which unify the strong form,weak form and DFE method of the micromechanical problem together.Specifically,the solution’s independence of selection of RUCs is dealt with on the strong form side,PTBCs are derived from the weak form as natural boundary conditions,and the validity of merely applying PDBCs in micromechanical Finite Element(FE)analysis is proved by referring to its intrinsic connection to the strong form and weak form.Key points in the theoretical aspects are demonstrated by illustrative examples,and the merits of setting micromechanical FE analysis under the background of a clear theoretical framework are highlighted in the efficient selection of RUCs for Uni Directional(UD)fiber-reinforced composites.  相似文献   
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