铁道学报
鐵道學報
철도학보
2014年
5期
33-38
,共6页
刘煜铖%刘志刚%宋洋%韩志伟
劉煜鋮%劉誌剛%宋洋%韓誌偉
류욱성%류지강%송양%한지위
高铁接触线%静态气动力参数%数值计算%风洞试验
高鐵接觸線%靜態氣動力參數%數值計算%風洞試驗
고철접촉선%정태기동력삼수%수치계산%풍동시험
high-speed railway contact line%static aerodynamic parameters%numerical computation%wind tunnel test
高铁接触线的静态气动力参数包括阻力系数、升力系数和转矩系数,是分析接触线在空气作用下振动、舞动等现象的重要参数。本文建立了高铁接触线的计算流体动力学模型,利用大涡模拟方法对接触线绕流流场进行数值模拟,计算接触线三分力系数,对升力系数进行频谱分析,分析漩涡脱落的主导频率。观察发现:接触线绕流呈现明显的三维特性,表现在接触线周围气流在三维空间上相互影响。同时,通过接触线三分力系数的风洞试验,将仿真结果与试验数据进行对比验证,分析仿真模型与试验数据的有效性,为进一步的仿真和工程研究奠下基础。
高鐵接觸線的靜態氣動力參數包括阻力繫數、升力繫數和轉矩繫數,是分析接觸線在空氣作用下振動、舞動等現象的重要參數。本文建立瞭高鐵接觸線的計算流體動力學模型,利用大渦模擬方法對接觸線繞流流場進行數值模擬,計算接觸線三分力繫數,對升力繫數進行頻譜分析,分析漩渦脫落的主導頻率。觀察髮現:接觸線繞流呈現明顯的三維特性,錶現在接觸線週圍氣流在三維空間上相互影響。同時,通過接觸線三分力繫數的風洞試驗,將倣真結果與試驗數據進行對比驗證,分析倣真模型與試驗數據的有效性,為進一步的倣真和工程研究奠下基礎。
고철접촉선적정태기동력삼수포괄조력계수、승력계수화전구계수,시분석접촉선재공기작용하진동、무동등현상적중요삼수。본문건립료고철접촉선적계산류체동역학모형,이용대와모의방법대접촉선요류류장진행수치모의,계산접촉선삼분력계수,대승력계수진행빈보분석,분석선와탈락적주도빈솔。관찰발현:접촉선요류정현명현적삼유특성,표현재접촉선주위기류재삼유공간상상호영향。동시,통과접촉선삼분력계수적풍동시험,장방진결과여시험수거진행대비험증,분석방진모형여시험수거적유효성,위진일보적방진화공정연구전하기출。
The static aerodynamic parameters of high-speed railway contact lines include the drag coefficient,lift coefficient and torque coefficient and they are the important parameters to analyze the phenomena of vibrations, dancing movements,etc of the contact lines in the air.In this paper,the computational fluid dynamics (CCFD) model of high-speed railway contact lines was established and the flow field around the contact wires was simu-lated with the large-eddy simulation method.The aerodynamic coefficients of the contact lines were calculated, the dominant frequency of vortex shedding was analyzed by spectrum analysis of the lift coefficient.The flow a-round the lines demonstrated obvious three dimensional characteristics of airflow interaction in the three dimen-sional space.Beside numerical simulation,wind tunnel tests of three coefficients of contact lines were carried out.The simulation results and wind tunnel test data were compared to verify the effectiveness of the simula-tion model and experimental data and to lay foundation for further simulation and engineering researches.