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排序方式: 共有358条查询结果,搜索用时 15 毫秒
1.
根据发动机试车台矢量推力现场动态校准需求,通过系统化论证,针对试车台的技术要求及校准需求,解决发动机试车台现场实际使用和实验室校准条件不同造成的附加测量误差、试验台推力无法整体校准等问题。文中提出了利用摆锤式动态力加载装置实现标准矢量力加载的方案,为了验证设计方案的可行性,利用现有的设备研究验证校准方案,通过试验和分析给出了校准不确定度。结果表明:该方案动态性能优异,响应迅速,动态校准不确定度为2.2%,能满足高空发动机试车台矢量推力测试的需求,为后续进一步准确测试矢量推力提供了依据。 相似文献
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Roddy M Grieves Éléonore Duvelle Paul A Dudchenko 《Spatial Cognition & Computation》2018,18(3):217-256
Hippocampal place cells are thought to form the neural substrate of a global cognitive map. However, in multicompartment mazes, these cells exhibit locally repeating representations, undermining the global cognitive map view of place cells. This phenomenon appears to be related to the repetitive layout of these mazes, but still no hypothesis adequately explains it. Here, we use a boundary vector cell (BVC) model of place cell firing to model the activity of place cells in numerous multicompartment environments. The activity of modeled place cells bears a striking resemblance to experimental data, replicating virtually every major experimental result. Our results support the BVC model and indicate that locally repeating place cell firing could result purely from local geometry. 相似文献
3.
使用Volume of fluid (VOF)方法和基于树形数据结构的自适应算法来研究射流雾化的破碎过程以及扰动对射流破碎机理产生的影响。在无扰动情况下,液体射流的头部、液丝和液滴随着射流时间的发展不断发生演变。射流头部先呈现蘑菇状外形,随后液丝生成,并慢慢转变成网兜状,直至断裂形成小液滴。在周期性流向强迫的作用下,射流液柱的表面会形成周期波,其液丝破裂形成液滴的时机与稳定射流情形相比会有所提前,射流形成的头部更趋于扁平,最终生成的液滴数量更多。低中频阶段,随着扰动频率的增大,射流未扰动液柱长度(L)逐渐缩短,液滴直径的概率密度分布(PDF)趋于尖锐,液滴平均直径(SMD)增大。在高频阶段,随着扰动频率的增大,L会随之增大,液滴直径的PDF分布变得平缓,SMD会减小。 相似文献
4.
A method combining rotor actuator disk model and embedded grid technique is presented in this paper, aimed at predicting the flow fields and aerodynamic characteristics of tilt rotor aircraft in conversion mode more efficiently and effectively. In this method, rotor's influence is considered in terms of the momentum it impacts to the fluid around it; transformation matrixes among different coordinate systems are deduced to extend actuator method's utility to conversion mode flow fields' calculation. Meanwhile, an embedded grid system is designed, in which grids generated around fuselage and actuator disk are regarded as background grid and minor grid respectively, and a new method is presented for ‘donor searching' and ‘hole cutting' during grid assembling. Based on the above methods, flow fields of tilt rotor aircraft in conversion mode are simulated, with threedimensional Navier–Stokes equations discretized by a second-order upwind finite-volume scheme and an implicit lower–upper symmetric Gauss–Seidel(LU-SGS) time-stepping scheme. Numerical results demonstrate that the proposed CFD method is very effective in simulating the conversion mode flow fields of tilt rotor aircraft. 相似文献
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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
8.
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
9.
三维编织复合材料热物理性能的有限元分析 总被引:5,自引:1,他引:4
根据三维编织复合材料的细观结构,分别建立了三维四向和五向编织复合材料热物理性能的有限元模型.采用周期性的非绝热温度边界条件和位移边界条件,计算了三维四向和五向编织复合材料的整体等效热传导系数和热膨胀系数,计算结果同已有文献相比与实验值符合得更好.在此基础上,迸一步研究了编织角、纤维体积分数、编织结构等参数对材料热物理性... 相似文献
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