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轮式摆动车身车辆越障所需最小驱动力矩及影响因素 被引量:2
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作者 魏巍 刘昕晖 +2 位作者 王同建 董晗 赵丰 《吉林大学学报(工学版)》 EI CAS CSCD 北大核心 2013年第5期1190-1195,共6页
建立了轮式摆动车身车辆越障时的动力学模型。根据这类车辆的结构特点,以单侧车轮越障为例,分析了车辆的运动状态,给出了越障所需的驱动力矩,同时分析了重心位置对越障所需驱动力矩的影响。利用ADAMS对车辆越障进行仿真,证明了所提方法... 建立了轮式摆动车身车辆越障时的动力学模型。根据这类车辆的结构特点,以单侧车轮越障为例,分析了车辆的运动状态,给出了越障所需的驱动力矩,同时分析了重心位置对越障所需驱动力矩的影响。利用ADAMS对车辆越障进行仿真,证明了所提方法的正确性。 展开更多
关键词 车辆工程 摆动车身 越障 驱动力矩 重心位置
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谈汽车驾驶中转向操作的教学
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作者 宋年秀 陈立辉 《交通标准化》 2003年第11期64-65,共2页
汽车驾驶中,对方向盘操作的熟练和准确与否直接关系到汽车行驶的安全性和舒适性。因此,掌握在各种情况下转向盘的正确操作是十分重要的。
关键词 汽车驾驶 转向操作 行车安全 驾驶教学 转向时机 车身摆动
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Numerical exploration on jet oscillation mechanism of counterflowing jet ahead of a hypersonic lifting-body vehicle 被引量:10
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作者 DENG Fan XIE Feng +2 位作者 HUANG Wei DONG Hao ZHANG Dong 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2018年第7期1056-1071,共16页
Numerical investigation of a supersonic jet from the nose of a lifting-body vehicle opposing a hypersonic flow with the freestream Mach number being 8.0 at 40 km altitude was carried out by solving the three-dimension... Numerical investigation of a supersonic jet from the nose of a lifting-body vehicle opposing a hypersonic flow with the freestream Mach number being 8.0 at 40 km altitude was carried out by solving the three-dimensional, time-accurate Navier-Stokes equations with a hybrid meshes approach. Based on the analysis of the flow field structures and aerodynamic characteristics, the behaviours relevant to the LPM jet were discussed in detail, including the drag reduction effect, the periodic oscillation and the feedback loop. The obtained results show that the flow oscillation characteristic of the LPM jet is low-frequency and high-amplitude while that of the SPM jet is high-frequency and low-amplitude. Compared with the clearly dominant frequencies of the LPM jet, the SPM jet exhibits a broad-band structure. The LPM jet can sustain drag reduction effect until the angle of attack is 8°, and the lift-to-drag ratio of the vehicle is effectively improved by 6.95% at angle of attack of 6°. The self-sustained oscillation process was studied by a typical oscillating cycle of the drag force coefficient and the variation of the instantaneous pressure distribution,which reveals an off-axial flapping motion of the conical shear layer. The variation of the subsonic recirculation zone ahead of the vehicle nose strengthens the understanding of the jet behavior including the source of instability in the long penetration mode and the mechanism of the feedback loop. The aim of this paper is to advance the technology readiness level for the counterflowing jet applied as an active control technology in hypersonic flows by gaining a better insight of the flow physics. 展开更多
关键词 HYPERSONIC lifting-body vehicle counterflowing jet LPM periodic oscillation
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