湖南大学学报(自然科学版)
湖南大學學報(自然科學版)
호남대학학보(자연과학판)
Journal of Hunan University (Natural Sciences)
2015年
10期
31-37
,共7页
杨易%蔡圣康%刘政%黄剑锋%范光辉
楊易%蔡聖康%劉政%黃劍鋒%範光輝
양역%채골강%류정%황검봉%범광휘
汽车工程%边界层%流场特性%气动阻力%尾迹气流
汽車工程%邊界層%流場特性%氣動阻力%尾跡氣流
기차공정%변계층%류장특성%기동조력%미적기류
automobile engineering%boundary layer%flow field characteristics%aerodynamic drag%wake flow
为了研究非光滑车身表面边界层流场特性,采用大涡模拟与 Realizable k-ε湍流模型对车身外部瞬态和稳态流场进行数值模拟计算,对比分析了非光滑模型与光滑模型边界层内速度、粘性底层厚度、壁面剪切力、表面摩擦阻力因数、湍流强度和湍流耗散率等流场参数,解析了非光滑表面对车身流场流动特性的影响。研究结果表明,非光滑模型边界层内速度明显高于光滑模型,边界层厚度、壁面剪切力、表面摩擦阻力因数、湍流强度、湍流耗散率都比光滑模型有所减小。非光滑表面的引入加剧了车身尾迹气流的参混效应,防止外界的高速流对内部低速流的引射作用,从而减少了车身流场能量的损失。
為瞭研究非光滑車身錶麵邊界層流場特性,採用大渦模擬與 Realizable k-ε湍流模型對車身外部瞬態和穩態流場進行數值模擬計算,對比分析瞭非光滑模型與光滑模型邊界層內速度、粘性底層厚度、壁麵剪切力、錶麵摩抆阻力因數、湍流彊度和湍流耗散率等流場參數,解析瞭非光滑錶麵對車身流場流動特性的影響。研究結果錶明,非光滑模型邊界層內速度明顯高于光滑模型,邊界層厚度、壁麵剪切力、錶麵摩抆阻力因數、湍流彊度、湍流耗散率都比光滑模型有所減小。非光滑錶麵的引入加劇瞭車身尾跡氣流的參混效應,防止外界的高速流對內部低速流的引射作用,從而減少瞭車身流場能量的損失。
위료연구비광활차신표면변계층류장특성,채용대와모의여 Realizable k-ε단류모형대차신외부순태화은태류장진행수치모의계산,대비분석료비광활모형여광활모형변계층내속도、점성저층후도、벽면전절력、표면마찰조력인수、단류강도화단류모산솔등류장삼수,해석료비광활표면대차신류장류동특성적영향。연구결과표명,비광활모형변계층내속도명현고우광활모형,변계층후도、벽면전절력、표면마찰조력인수、단류강도、단류모산솔도비광활모형유소감소。비광활표면적인입가극료차신미적기류적삼혼효응,방지외계적고속류대내부저속류적인사작용,종이감소료차신류장능량적손실。
In order to study the flow field characteristics of a boundary layer on non-smooth car body surface,large eddy simulation and realizable turbulence model were used for the numerical simulation and calculation of external car body flow field in both transient-state and steady-state.Then,the flow field pa-rameters,such as velocity,thickness of viscous sub-layer,wall shear stress,surface friction coefficient, turbulence intensity and turbulence dissipation rate within the boundary layer of both non-smooth and smooth model,were compared and analyzed.The influence of the non-smooth surface upon the flow field characteristics of the car body was analyzed.The results show that the velocity within the boundary layer of the non-smooth model is obviously higher than that of the smooth model,and boundary layer thickness, wall shear stress,local frictional resistance coefficient,turbulence intensity and turbulence dissipation rate are also less than the smooth model.The introduction of non-smooth surface contributes to the mixing effect of the wake flow of the carbody,preventing the ej ector effect upon outside high-speed flow to inter-nal low-speed flow,thus reducing the loss of energy of the car body flow field.