期刊文献+
共找到15篇文章
< 1 >
每页显示 20 50 100
Mathematical modeling of the aerodynamic coefficients of a sail blade
1
作者 Akmaral Zh.Tleubergenova Nazgul K.Tanasheva +5 位作者 Kulzhan M.Shaimerdenova Serik S.Kassymov Asem R.Bakhtybekova Nurgul N.Shuyushbayeva Saule Zh.Uzbergenova Gulden A.Ranova 《Advances in Aerodynamics》 EI 2023年第1期267-281,共15页
The authors of the work numerically studied the aerodynamic coefficients of the sail blade,during which the patterns of three-dimensional flow around airflow and the pressure distribution field were obtained.The trian... The authors of the work numerically studied the aerodynamic coefficients of the sail blade,during which the patterns of three-dimensional flow around airflow and the pressure distribution field were obtained.The triangular sail blade is used as the power element of wind turbines.The sail blade modeling was based on the Reynolds-averaged Navier-Stokes equations(RANS)using the ANSYS FLUENT computer program.A flow pattern is obtained,which gives a physical explanation of the nature of the airflow around the sail blade and the pressure distribution field.Comparative analyses of theory and experiment are given.In the range of Reynolds numbers from 0.5×10^(4) to 2.5×10^(4),the change in the drag force coefficient is from 1.04 to 0.54,and the difference in the lift force coefficient is from 0.52 to 0.33. 展开更多
关键词 Sail blade Wind turbine Modeling ANSYS FLUENT aerodynamic coefficients
原文传递
A hybrid original approach for prediction of the aerodynamic coefficients of an ATR-42 scaled wing model 被引量:1
2
作者 Abdallah Ben Mosbah Ruxandra Mihaela Botez Thien My Dao 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2016年第1期41-52,共12页
A new approach for the prediction of lift, drag, and moment coefficients is presented. This approach is based on the support vector machines (SVMs) methodology and an optimization meta-heuristic algorithm called ext... A new approach for the prediction of lift, drag, and moment coefficients is presented. This approach is based on the support vector machines (SVMs) methodology and an optimization meta-heuristic algorithm called extended great deluge (EGD). The novelty of this approach is the hybridization between the SVM and the EGD algorithm. The EGD is used to optimize the SVM parameters. The training and validation of this new identification approach is realized using the aerodynamic coefficients of an ATR-42 wing model. The aerodynamic coefficients data are obtained with the XFoil software and experimental tests using the Price-Paidoussis wind tunnel. The predicted results with our approach are compared with those from the XFoil software and experimental results for different flight cases of angles of attack and Mach numbers. The main pur- pose of this methodology is to rapidly Predict aircraft aerodynamic coefficients. 展开更多
关键词 aerodynamic coefficients Estimation Extended great deluge METAHEURISTIC Model identification Optimization Support vector machines Wind tunnel tests
原文传递
Developing an engineering-statistical model for estimating aerodynamic coefficients of helicopter fuselage
3
作者 Hossein Sheikhi Abas Saghaie 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2017年第1期175-185,共11页
The design of the geometric shape of a helicopter fuselage poses a serious challenge for designers. The most important parameter in determining the shape of the helicopter fuselage is its aerodynamic coefficients. The... The design of the geometric shape of a helicopter fuselage poses a serious challenge for designers. The most important parameter in determining the shape of the helicopter fuselage is its aerodynamic coefficients. These coefficients are determined using two methods: wind tunnel test and computational fluid dynamics(CFD) simulation. The first method is expensive, time-consuming and limited. In addition, estimates in regions away from data can be poor. The second method,due to the limitations of numerical solution, the number of nodes and the used solution, is often inaccurate. In this paper, with the aim of accelerating the design process and achieving results with reasonable engineering accuracy, an engineering-statistical model which is useful for estimating the aerodynamic coefficients was developed, which mitigated the drawbacks of these two methods.First, by combining CFD simulation and regression techniques, an engineering model was presented for the estimation of aerodynamic coefficients. Then, by using the data from a wind tunnel test and implementation of statistical adjustment, the engineering model was modified and an engineering-statistical model was obtained. By spending less time and cost, the final model provided the aerodynamic coefficients of a helicopter fuselage at the desired angles of attack with reasonable accuracy. Finally, three numerical examples were provided to illustrate the application of the proposed model. Comparative results demonstrate the effectiveness of the engineering-statistical model in estimating the aerodynamic coefficients of a helicopter fuselage. 展开更多
关键词 aerodynamic coefficients Computaticnal fluid dynamics (CFD) Engineering-statistical model Helicopter fuselage Wind tunnel test
原文传递
Aerodynamic Interpolation for Flight Vehicles with Aerodynamic Axial Asymmetry 被引量:4
4
作者 夏群力 祁载康 《Journal of Beijing Institute of Technology》 EI CAS 1999年第4期430-436,共7页
Aim To study wind tunnel test data interpolation methods for flight vehicle with aerodynamic axial asymmetry. Methods For different body aerodynamic roll angles, proper wind tunnel test schemes were selected and ... Aim To study wind tunnel test data interpolation methods for flight vehicle with aerodynamic axial asymmetry. Methods For different body aerodynamic roll angles, proper wind tunnel test schemes were selected and trigonometric series were used for aerodynamic interpolation. Results and Conclusion A simple and effective scheme for wind tunnel test and an accurate aerodynamic interpolation method are developed with satisfactory results. 展开更多
关键词 aerodynamic interpolation aerodynamic configuration wind tunnel test aerodynamic coefficient
下载PDF
A Numerical Study of the Aerodynamic Characteristics of a High-Speed Train under the Effect of Crosswind and Rain 被引量:9
5
作者 Haiqing Li Mengge Yu +1 位作者 Qian Zhang Heng Wen 《Fluid Dynamics & Materials Processing》 EI 2020年第1期77-90,共14页
The performances of high-speed trains in the presence of coupling effects with crosswind and rain have attracted great attention in recent years.The objective of the present paper was to investigate the aerodynamic ch... The performances of high-speed trains in the presence of coupling effects with crosswind and rain have attracted great attention in recent years.The objective of the present paper was to investigate the aerodynamic characteristics of a high-speed train under such conditions in the framework of an Eulerian-Lagrangian approach.An aerodynamic model of a high-speed train was first set up,and the side force coefficient obtained from numerical simulation was compared with that provided by wind tunnel experiments to verify the accuracy of the approach.Then,the effects of the yaw angle,the resultant wind speed,and the rainfall rate on aerodynamic coefficients were analyzed.The results indicate that the aerodynamic coefficients grow almost linearly with the rainfall rate,and increase with a decrease in the resultant wind speed.Due to the impact of raindrops on the train surface and the airflow,the pressure coefficients of windward and leeward side of the train become larger with the increase of the rainfall rate.Raindrops can accelerate the airflow and suppress the vortices detachment.Moreover,the flow velocity in regions surrounding the train increases with an increase in the rainfall rate. 展开更多
关键词 High-speed trains Eulerian-Lagrangian crosswinds and rains aerodynamic coefficients pressure coefficients velocity distribution
下载PDF
Effects of wind barriers on the aerodynamic characteristics of bridge-train system for a road-rail same-story truss bridge 被引量:1
6
作者 LIU Lu-lu ZOU Yun-feng +2 位作者 HE Xu-hui WANG Zhen ZHOU Xu-hong 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第8期2690-2705,共16页
Wind barriers are commonly adopted to prevent the effects of wind on high-speed railway trains,but their wind-proofing effects are greatly affected by substructures.To investigate the effects of wind barriers on the a... Wind barriers are commonly adopted to prevent the effects of wind on high-speed railway trains,but their wind-proofing effects are greatly affected by substructures.To investigate the effects of wind barriers on the aerodynamic characteristic of road-rail same-story truss bridge-train systems,wind tunnel experiments were carried out using a 1:50 scale model.Taking a wind barrier with a porosity of 30%as an example,the aerodynamic characteristics of the bridge train system under different wind barrier layouts(single-sided and double-sided),positions(inside and outside)and heights(2.5 m,3.0 m,3.5 m and 4.0 m)were tested.The results indicate that the downstream inside wind barrier has almost no effect on the aerodynamic characteristics of the train-bridge system,but the downstream outside wind barrier increases the drag coefficient of the bridge and reduces both the lift coefficient and drag coefficient of the train due to its effect on the trains wind pressure distribution,especially on the trains leeward surface.When the wind barriers are arranged on the outside,their effects on the drag coefficient of the bridge and shielding effect on the train are greater than when they are arranged on the inside.As the height of the wind barrier increases,the drag coefficient of the bridge also gradually increases,and the lift coefficient and drag coefficient of the train gradually decrease,but the degree of variation of the aerodynamic coefficient with the height is slightly different due to the different wind barrier layouts.When 3.0 m high double-sided wind barriers are arranged on the outside of the truss bridge,the drag coefficient of the bridge only increases by 12%,while the drag coefficient of the train decreases by 55%. 展开更多
关键词 wind barriers road-rail same-story truss bridge high-speed railway aerodynamic coefficients train-bridge system wind tunnel test
下载PDF
Wind tunnel measurement of aerodynamic characteristics of trains passing each other on a simply supported box girder bridge 被引量:9
7
作者 Xiaozhen Li Yiling Tan +2 位作者 Xiaowei Qiu Zhenhua Gong Ming Wang 《Railway Engineering Science》 2021年第2期152-162,共11页
The aerodynamic performance of high-speed trains passing each other was investigated on a simply supported box girder bridge,with a span of 32 m,under crosswinds.The bridge and train models,modeled at a geometric scal... The aerodynamic performance of high-speed trains passing each other was investigated on a simply supported box girder bridge,with a span of 32 m,under crosswinds.The bridge and train models,modeled at a geometric scale ratio of 1:30,were used to test the aerodynamic forces of the train,with the help of a designed moving test rig in the XNJD-3 wind tunnel.The effects of wind speed,train speed,and yaw angle on the aerodynamic coefficients of the train were analyzed.The static and moving model tests were compared to demonstrate how the movement of the train influences its aerodynamic characteristics.The results show that the sheltering effect introduced by trains passing each other can cause a sudden change in force on the leeward train,which is further influenced by the wind and running speeds.Detailed analyses related to the effect of wind and train speeds on the aerodynamic coefficients were conducted.The relationship between the change in aerodynamic coefficients and yaw angle was finally described by a series of proposed fitting formulas. 展开更多
关键词 aerodynamic coefficient Two trains passing each other Simply supported box girder bridge Wind tunnel
下载PDF
Wind tunnel study of aerodynamic wind loading on middle pylon of Taizhou Bridge 被引量:1
8
作者 Zhang Zhen Ma Rujin +1 位作者 Hu Xiaohong Chen Airong 《Engineering Sciences》 EI 2011年第2期69-73,共5页
Segment sectional model tests are carried out to investigate the wind loading on middle pylon of Taizhou Bridge, which has complicated three-dimensional flow due to its feature of double columns. Through the force mea... Segment sectional model tests are carried out to investigate the wind loading on middle pylon of Taizhou Bridge, which has complicated three-dimensional flow due to its feature of double columns. Through the force measuring tests, aerodynamic force coefficients of every segment of the pylon columns have been obtained. It is found that the tested aerodynamic force coefficients are much smaller than those given by codes. The interference effects of aerodynamic force coefficients between columns of pylon are discussed. The results show that the interference effect is the most evident when the yaw angle is about 30 ° from transverse direction. This kind of interference effect can be described as diminutions in transverse aerodynamic force coefficients and magnifications in longitudinal aerodynamic force coefficients of downstream columns. 展开更多
关键词 wind tunnel test aerodynamic force coefficient interference effects segment sectional model tests middle pylon Taizhou Bridge
下载PDF
Aerodynamics of non-slender delta and reverse delta wings:Wing thickness,anhedral angle and cropping ratio
9
作者 Göktug KOCAK Mehmet Metin YAVUZ 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2023年第4期79-91,共13页
The effects of thickness-to-chord(t=c)ratio,anhedral angle(d),and cropping ratio from trailing-edge(Cr%)on the aerodynamics of non-slender reverse delta wings in comparison to non-slender delta wings with sweep angle ... The effects of thickness-to-chord(t=c)ratio,anhedral angle(d),and cropping ratio from trailing-edge(Cr%)on the aerodynamics of non-slender reverse delta wings in comparison to non-slender delta wings with sweep angle of 45°were characterized in a low-speed wind tunnel using force and pressure measurements.The measurements were conducted for total of 8 different delta and reverse delta wings.Two different t/c ratios of 5.9%and 1.1%,and two different anhedral angles ofd=15°and 30°for non-cropped and cropped at Cr=30%conditions were tested.The results indicate that the reverse delta wings generate higher lift-to-drag ratio and have better longitudinal static stability characteristics compared to the delta wings.The wing thickness has favorable effect on longitudinal static stability for the reverse delta wing whereas longitudinal static stability is not influenced by wing thickness for the delta wing.For reverse delta wings,the anhe-draled wing without cropping has adverse effect on aerodynamic performance and decreases the lift-to-drag ratio.Cropping in anhedraled wing causes significant improvement in lift-to-drag ratio,shift in aerodynamic and pressure centers towards the trailing-edge,and enhancement in longitudi-nal static stability. 展开更多
关键词 aerodynamic coefficients Anhedral CROPPING Leading-edge vortex Longitudinal static stability Non-slender delta wing Non-slender reverse delta wing STALL Three-dimensional surface separation
原文传递
Determination method of load balance ranges for train operation safety under strong wind 被引量:3
10
作者 田红旗 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第3期1146-1154,共9页
The aerodynamic performances of a passenger car and a box car with different heights of windbreak walls under strong wind were studied using the numerical simulations, and the changes of aerodynamic side force, lift f... The aerodynamic performances of a passenger car and a box car with different heights of windbreak walls under strong wind were studied using the numerical simulations, and the changes of aerodynamic side force, lift force and overturning moment with different wind speeds and wall heights were calculated. According to the principle of static moment balance of vehicles, the overturning coefficients of trains with different wind speeds and wall heights were obtained. Based on the influence of wind speed and wall height on the aerodynamic performance and the overturning stability of trains, a method of determination of the load balance ranges for the train operation safety was proposed, which made the overturning coefficient have nearly closed interval. A min(|A1|+|A2|), s.t. |A1|→|A2|(A1 refers to the downwind overturning coefficient and A2 refers to the upwind overturning coefficient)was found. This minimum value helps to lower the wall height as much as possible, and meanwhile, guarantees the operation safety of various types of trains under strong wind. This method has been used for the construction and improvement of the windbreak walls along the Lanzhou–Xinjiang railway(from Lanzhou to Urumqi, China). 展开更多
关键词 strong wind train load balance range overturning coefficient aerodynamic performance
下载PDF
Flight Transient Estimation of VTOL Aircraft with Propellers
11
作者 Nickolay Zosimovych 《Advances in Aerospace Science and Technology》 2022年第1期85-95,共11页
Methodological issues associated with the determination of the vertical take-off and landing aerodynamic parameters equipped with two rotary propellers during take-off and hovering, descent and landing are studied in ... Methodological issues associated with the determination of the vertical take-off and landing aerodynamic parameters equipped with two rotary propellers during take-off and hovering, descent and landing are studied in the proposed article. During the computer simulation process, kinematics parameters diagrams were made, aerodynamic coefficients and propellers thrust components at all stages of aircraft take-off were estimated. That numerical data can be used in a preliminary stage of aerodynamic design for the vertical take-off and landing aircraft and electric drones at the determination of control and equalization elements geometric and kinematic parameters. 展开更多
关键词 Vertical Take-Off and Landing (VTOL) Drone PROPELLER TRANSIENT THRUST Vector Modeling Kinematic aerodynamic Coefficient
下载PDF
Wind tunnel test on aerodynamic effect of wind barriers on train-bridge system 被引量:17
12
作者 GUO Wei Wei WANG Yu Jing +1 位作者 XIA He LU Shan 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第2期219-225,共7页
To investigate the aerodynamic effect of wind barriers on a high-speed train-bridge system,a sectional model test was conducted in a closed-circuit-type wind tunnel.Several different cases,including with and without b... To investigate the aerodynamic effect of wind barriers on a high-speed train-bridge system,a sectional model test was conducted in a closed-circuit-type wind tunnel.Several different cases,including with and without barriers,with different barrier heights and porosity rates,and with different train arrangements on the bridge were taken into consideration;in addition,the aerodynamic coefficients of the train-bridge system were measured.It is found that the side force and rolling moment coefficients of the vehicle are efficiently reduced by a single-side wind barrier,but for the bridge deck these values are increased.The height and porosity rate of the barrier are two important factors that influence the windbreak effect.Train arrangement on the bridge will considerably influence the aerodynamic properties of the train-bridge system.The side force and rolling moment coefficients of the vehicle at the windward side are larger than at the leeward side. 展开更多
关键词 wind barrier train-bridge system wind tunnel aerodynamic coefficient windbreak effect
原文传递
Construction on Aerodynamic Surrogate Model of Stratospheric Airship 被引量:1
13
作者 QIN PENGFEI WANG XIAOLIANG 《Journal of Shanghai Jiaotong university(Science)》 EI 2022年第6期768-779,共12页
Stratospheric airship can stay at an altitude of 20 km for a long time and carry various loads to achieve long-term stable applications.Conventional stratospheric airship configuration mainly includes a low-resistance... Stratospheric airship can stay at an altitude of 20 km for a long time and carry various loads to achieve long-term stable applications.Conventional stratospheric airship configuration mainly includes a low-resistance streamline hull and inflatable"X"-layout fins that realize the self-stabilization.A fast aerodynamic predictive method is needed in the optimization design of airship configuration and the flight performance analysis.In this paper,a predictive surrogate model of aerodynamic parameters is constructed for the stratospheric airship with"X"fins based on the neural network.First,a geometric shape parameterized model,and a flow field parameterized model were established,and the aerodynamic coefficients of airships with different shapes used as the training and test samples were calculated based on computational fluid dynamics(SA turbulence model).The improved Bayesian regularized neural network was used as the surrogate model,and 20 types of airships with different shapes were used to test the effectiveness of network.It showed that the correlation coefficients of C_(x),C_(y),C_(z),C_(M,x),C_(M,y),C_(M,z) were 0.9287,0.9917,0.9919,0.9582,0.9861,0.9842,respectively.The aerodynamic coefficient distribution contour at different angles of attack and sideslip angles is used to verify the reliability of the method.The method can provide an effective way for a rapid estimation of aerodynamic coefficients in the airship design. 展开更多
关键词 AIRSHIP aerodynamic coefficient neural network surrogate model
原文传递
Experimental and numerical study of chaff cloud kinetic performance under impact of high speed airflow 被引量:8
14
作者 Hesong HUANG Zhongxiang TONG +1 位作者 Shijie CHAI Yu ZHANG 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2018年第11期2080-2092,共13页
To solve the kinetic and diffusion problem of surface-type infrared decoy, multi-chaff kinetic models are established and chaff cloud holistic kinetic performance are analyzed under the impact of high speed airflow in... To solve the kinetic and diffusion problem of surface-type infrared decoy, multi-chaff kinetic models are established and chaff cloud holistic kinetic performance are analyzed under the impact of high speed airflow in this work. Chaffs rotate rapidly during the motion under the impact of high speed airflow. The rotation speed is correlated with lift, position of pressure center and aerodynamic damping. Computational Fluid Dynamics(CFD) is used to compute the aerodynamic coefficients of chaff. It is found that there exists serious aerodynamic interference which mainly relates to the overlapping area and distance among chaffs during the diffusion of chaff cloud. The chaff wind tunnel test and rocket sled experiment are carried out to verify the credibility of the models in this work. Then, the variation of chaff cloud expectation and extremum are analyzed to achieve the holistic kinetic and diffusing performance of chaff cloud. Simulation results demonstrate that the chaffs diffuse rapidly under the impact of high speed airflow and chaff cloud can be formed rapidly within 0.5 s. The shape of the chaff cloud is similar to cone that forms a certain angle with the horizontal plane and most chaffs focus on the second half. 展开更多
关键词 aerodynamic coefficients CHAFF Computational fluid dynamics Infrared decoy Wind tunnel test
原文传递
A reduced order model for coupled mode cascade flutter analysis 被引量:1
15
作者 Huang HUANG Xinkai JIA +3 位作者 Jia REN Bochao CAO Dingxi WANG Xiuquan HUANG 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2022年第10期176-182,共7页
A Reduced Order Model(ROM)based analysis method for turbomachinery cascade coupled mode flutter is presented in this paper.The unsteady aerodynamic model is established by a system identification technique combined wi... A Reduced Order Model(ROM)based analysis method for turbomachinery cascade coupled mode flutter is presented in this paper.The unsteady aerodynamic model is established by a system identification technique combined with a set of Aerodynamic Influence Coefficients(AIC).Subsequently,the aerodynamic model is encoded into the state space and then coupled with the structural dynamic equations,resulting in a ROM of the cascade aeroelasticity.The cascade flutter can be determined by solving the eigenvalues of the ROM.Bending-torsional coupled mode flutter analysis for the Standard Configuration Eleven(SC11)cascade is used to validate the proposed method. 展开更多
关键词 aerodynamic influence coefficients Chirp signal Coupled mode flutter Eigenvalue problem Reduced order model
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部