机床与液压
機床與液壓
궤상여액압
MACHINE TOOL & HYDRAULICS
2014年
24期
75-79
,共5页
泄漏气流%传播特性%Fluent%隧道%天然气
洩漏氣流%傳播特性%Fluent%隧道%天然氣
설루기류%전파특성%Fluent%수도%천연기
Leakage flow%Propagation characteristics%Fluent%Tunnel%Natural gas
针对隧道内运输危险品(天然气)车辆在行驶过程中发生小孔泄漏导致天然气扩散的情况,基于事故性泄漏动力学、流体动力学理论对泄漏气流的传播特性进行了分析,建立了基于Fluent的天然气扩散物理数学模型。模型采用基于雷诺时均方程和及标准k-ε方程的湍流模拟,用SIMPLEC算法对N-S方程进行求解,并采用组分输运来解决多组分流体的扩散问题。仿真采用瞬态计算,模拟气流在不同的泄漏时间内的扩散现象,同时考虑实际情况分别模拟了扩散场地有障碍物与无障碍物的天然气泄漏扩散情况以及隧道进风口风速大小对于气流扩散的影响,为隧道内车辆运输危险品泄漏事故的抢救及最大限度地减少损失提供了参考。
針對隧道內運輸危險品(天然氣)車輛在行駛過程中髮生小孔洩漏導緻天然氣擴散的情況,基于事故性洩漏動力學、流體動力學理論對洩漏氣流的傳播特性進行瞭分析,建立瞭基于Fluent的天然氣擴散物理數學模型。模型採用基于雷諾時均方程和及標準k-ε方程的湍流模擬,用SIMPLEC算法對N-S方程進行求解,併採用組分輸運來解決多組分流體的擴散問題。倣真採用瞬態計算,模擬氣流在不同的洩漏時間內的擴散現象,同時攷慮實際情況分彆模擬瞭擴散場地有障礙物與無障礙物的天然氣洩漏擴散情況以及隧道進風口風速大小對于氣流擴散的影響,為隧道內車輛運輸危險品洩漏事故的搶救及最大限度地減少損失提供瞭參攷。
침대수도내운수위험품(천연기)차량재행사과정중발생소공설루도치천연기확산적정황,기우사고성설루동역학、류체동역학이론대설루기류적전파특성진행료분석,건립료기우Fluent적천연기확산물리수학모형。모형채용기우뢰낙시균방정화급표준k-ε방정적단류모의,용SIMPLEC산법대N-S방정진행구해,병채용조분수운래해결다조분류체적확산문제。방진채용순태계산,모의기류재불동적설루시간내적확산현상,동시고필실제정황분별모의료확산장지유장애물여무장애물적천연기설루확산정황이급수도진풍구풍속대소대우기류확산적영향,위수도내차량운수위험품설루사고적창구급최대한도지감소손실제공료삼고。
Based on Fluent software,a physical and mathematical model of airflow diffusion was established for the proliferation of leakage when the vehicle was traveling in the tunnel and carry-ing dangerous goods (e.g.,natural gas).By using the theories of accidental leakage dynamics and fluid dynamics,the propagation characteristics of the leakage airflow have been investigated. Reynolds time-averaged equations and standard k-equation were adopted in this paper and SIM-PLEC algorithm was used to solve the N-S equation.The component transport was used to solve the problem of multi-component fluid diffusion.By using transient model,the airflow diffusion phenomena were simulated at different leakage time in the actual situation.The diffusion of leaked natural gas was simulated at different locations with or without obstacles,and the influ-ence of inlet gas velocity was considered as wel .Based on the simulation results,some refer-ence data could be provided to minimize the loss and take effective rescue measures in a real leakage accident of dangerous goods in the tunnel.