西南石油大学学报(自然科学版)
西南石油大學學報(自然科學版)
서남석유대학학보(자연과학판)
JOURNAL OF SOUTHWEST PETROLEUM UNIVERSITY(SEIENCE & TECHNOLOGY EDITION)
2010年
1期
155-159
,共5页
高建%王德国%何仁洋%耿岱
高建%王德國%何仁洋%耿岱
고건%왕덕국%하인양%경대
悬索跨越%管道%地震响应%有限元%仿真
懸索跨越%管道%地震響應%有限元%倣真
현색과월%관도%지진향응%유한원%방진
cable-suspended pipeline bridge%pipeline%seismic response%finite element%emulation
以长庆油田输油一处某悬索跨越管桥为工程背景,应用ANSYS建立分析模型,采用时程分析法进行非线性地震响应分析.按轴向、横向、竖向分别输入地震波,分析结构在三种情况下的受力特点对比,得到不同方向的抗震性能.以三、四类场地地震波为输入,考虑不同地震烈度,一致输入和行波效应下结构关键部位位移、应力值,并用时程曲线直观表达参数随时间的变化.探讨了悬跨管桥在不同地震动情况下的受力特点和规律,找出薄弱环节并提出了改进措施,为地震预防及灾后拯救提供了一种有效途径.
以長慶油田輸油一處某懸索跨越管橋為工程揹景,應用ANSYS建立分析模型,採用時程分析法進行非線性地震響應分析.按軸嚮、橫嚮、豎嚮分彆輸入地震波,分析結構在三種情況下的受力特點對比,得到不同方嚮的抗震性能.以三、四類場地地震波為輸入,攷慮不同地震烈度,一緻輸入和行波效應下結構關鍵部位位移、應力值,併用時程麯線直觀錶達參數隨時間的變化.探討瞭懸跨管橋在不同地震動情況下的受力特點和規律,找齣薄弱環節併提齣瞭改進措施,為地震預防及災後拯救提供瞭一種有效途徑.
이장경유전수유일처모현색과월관교위공정배경,응용ANSYS건립분석모형,채용시정분석법진행비선성지진향응분석.안축향、횡향、수향분별수입지진파,분석결구재삼충정황하적수력특점대비,득도불동방향적항진성능.이삼、사류장지지진파위수입,고필불동지진열도,일치수입화행파효응하결구관건부위위이、응력치,병용시정곡선직관표체삼수수시간적변화.탐토료현과관교재불동지진동정황하적수력특점화규률,조출박약배절병제출료개진조시,위지진예방급재후증구제공료일충유효도경.
The cable-suspended pipeline bridge between Wangyao heating station and Yangshan oil transportation station,Changqing Oilfield,is taken as example,ANSYS is applied to set up analytical model,time-history analysis is used to carry out non-linear seismic response study.Seismic wave is input in axial,transverse and vertical directions respectively to analyze the stress feature of the engineering structure under three types of conditions,the anti-earthquake ability in different directions is obtained.The third and fourth classes sites seismic waves is considered as input,the conditions of different earthquake intensity,displacement and stress value of key structure locations while uniform input and traveling wave effect existing are all taken into consideration,and the time-history curve is used to directly express the change of the parameters as time.The stress feature and law of cable-suspended pipeline bridge under the conditions of different earthquake intensity are probed,the weak points are figured out and corresponding measurement presented.