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空气动力学对汽车性能的影响 被引量:2
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作者 简洁 张铁山 +1 位作者 严萍华 邵成峰 《拖拉机与农用运输车》 2012年第5期37-40,46,共5页
空气动力学在汽车上拥有重要地位,特别是在汽车外形设计和汽车动力性、经济性上的影响较大。首先应用CATIA软件对车身建模,通过FLUENT软件计算模型,并计算出汽车的空气阻力。再应用ADVISOR软件对电动汽车整车建模,最后考虑风阻系数Cd对... 空气动力学在汽车上拥有重要地位,特别是在汽车外形设计和汽车动力性、经济性上的影响较大。首先应用CATIA软件对车身建模,通过FLUENT软件计算模型,并计算出汽车的空气阻力。再应用ADVISOR软件对电动汽车整车建模,最后考虑风阻系数Cd对汽车的性能的影响。 展开更多
关键词 :空气动力学 电动汽车 Cd的影响
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Adaptive WNN aerodynamic modeling based on subset KPCA feature extraction 被引量:4
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作者 孟月波 邹建华 +1 位作者 甘旭升 刘光辉 《Journal of Central South University》 SCIE EI CAS 2013年第4期931-941,共11页
In order to accurately describe the dynamic characteristics of flight vehicles through aerodynamic modeling, an adaptive wavelet neural network (AWNN) aerodynamic modeling method is proposed, based on subset kernel pr... In order to accurately describe the dynamic characteristics of flight vehicles through aerodynamic modeling, an adaptive wavelet neural network (AWNN) aerodynamic modeling method is proposed, based on subset kernel principal components analysis (SKPCA) feature extraction. Firstly, by fuzzy C-means clustering, some samples are selected from the training sample set to constitute a sample subset. Then, the obtained samples subset is used to execute SKPCA for extracting basic features of the training samples. Finally, using the extracted basic features, the AWNN aerodynamic model is established. The experimental results show that, in 50 times repetitive modeling, the modeling ability of the method proposed is better than that of other six methods. It only needs about half the modeling time of KPCA-AWNN under a close prediction accuracy, and can easily determine the model parameters. This enables it to be effective and feasible to construct the aerodynamic modeling for flight vehicles. 展开更多
关键词 WAVELET neural network fuzzy C-means clustering kernel principal components analysis feature extraction aerodynamic modeling
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Impeller modeling and analysis based on UG NX/KF and Fluent 被引量:5
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作者 王凌云 黄红辉 Rae W.West 《Journal of Central South University》 SCIE EI CAS 2012年第12期3430-3434,共5页
Parametric modeling of the impeller which drove a small wind device was built by knowledge fusion technology.NACA2410 airfoil blade was created by KF language.Using technology of UG/KF secondary development for the au... Parametric modeling of the impeller which drove a small wind device was built by knowledge fusion technology.NACA2410 airfoil blade was created by KF language.Using technology of UG/KF secondary development for the automatic modeling of wind turbine blade,the program can read in the airfoil data files automatically and the impeller model entity can be generated automatically.In order to modify the model,the aerodynamic characteristics of the impeller were analyzed for getting aerodynamic parameters by Fluent.The maximum force torch and best parameters of impeller were calculated.A physical prototype impeller was manufactured and the correctness of the design was verified,and the error of force torch between simulation and experimental results is about 10%.Parameterization design of the impeller model greatly improves the efficiency of modeling and flexibility of the CAD system. 展开更多
关键词 knowledge fusion airfoil wind turbine blade parametric design CAD/CAE
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Modeling and analysis of moving-mass actuated stratospheric airship 被引量:1
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作者 周革 Chen Li Dong Qi 《High Technology Letters》 EI CAS 2013年第2期145-149,共5页
A moving-mass control method is introduced to stratospheric airship for its special working condition of low atmospheric density and low speed.The dynamic equation of airship is derived by using the Newton-Euler metho... A moving-mass control method is introduced to stratospheric airship for its special working condition of low atmospheric density and low speed.The dynamic equation of airship is derived by using the Newton-Euler method and the mechanism of attitude control by moving masses is studied.Then the passive gliding of airship by the moving masses is given based on the theory of glider,and attitude control capability between moving mass and elevator is compared at different airspeed.Analysis results show that the motion of masses changes the gravity center of the airship system,which makes the inertia tensor and the gravity moment vary.Meanwhile,the aerodynamic angles are generated,which results in the change of aerodynamic moment.Control efficiency of moving masses is independent of airspeed.Thus the moving-mass control has the advantage over the aerodynamic surfaces at low airspeed. 展开更多
关键词 stratospheric airship moving masses attitude control GLIDING control efficiency
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Modeling of delta-wing type vortex generators 被引量:8
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作者 ZHANG Lei YANG Ke +1 位作者 XU JianZhong ZHANG MingMing 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第2期277-285,共9页
A numerical model of delta-wing type vortex generator was developed in two steps.The first step was to obtain a parameterized model of the shedding vortex based on delta-wing theory,which relates the geometry paramete... A numerical model of delta-wing type vortex generator was developed in two steps.The first step was to obtain a parameterized model of the shedding vortex based on delta-wing theory,which relates the geometry parameters and flow field parameters to the strength of shedding vortex which directly decides the source term.In the second step,a method was proposed to add source terms into the flow control equations so that the shedding vortex could be simulated numerically.As soon as the numerical model was completed,two cases:One for a plate and another for an airfoil segment were investigated for test.Comparison showed that the flow field structure and aerodynamic performance agreed well with those obtained from cases with real vortex generators. 展开更多
关键词 vortex generators MODELING source term
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Non-linear Aerothermoelastic Modeling and Behavior of a Double-wedge Lifting Surface
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作者 Laith K.Abbas 芮筱亭 P.Marzocca 《Journal of Shanghai Jiaotong university(Science)》 EI 2009年第5期620-625,共6页
The design of the re-entry space vehicles and high-speed aircraft structures requires special attention to the non-linear thermoelastic and aerodynamic instabilities.The thermal effects are important since temperature... The design of the re-entry space vehicles and high-speed aircraft structures requires special attention to the non-linear thermoelastic and aerodynamic instabilities.The thermal effects are important since temperature environment influences significantly the static and dynamic behaviors of flight structures in supersonic/hypersonic regimes.The dynamic behavior of a double-wedge lifting surface with combined freeplay and cubic stiffening structural nonlinearities in both plunging and pitching degrees-of-freedom(DOF) operating in supersonic/hypersonic flight speed regimes has been analyzed.In addition a third order piston theory aerodynamics(PTA) is used to evaluate the non-linear unsteady aerodynamic loads applied to the wing section.Loss of torsional stiffness that may be incurred by lifting surfaces subjected to axial stresses induced by aerodynamic heating is also considered.The aerodynamic heating effect is estimated based on the adiabatic wall temperature due to high speed airstreams.It is demonstrated that serious losses of torsional stiffness may occur in such lifting surfaces;the influence of various parameters such as flight condition,thickness ratio,freeplays and pitching stiffness nonlinearity are discussed. 展开更多
关键词 non-linear aerothermoelastic analysis thermal loading freeplay hypersonic speed
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