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沙漠铁路轨道结构选型及参数优化研究 被引量:1
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作者 刘永红 《铁道标准设计》 北大核心 2015年第2期6-8,12,共4页
针对沙漠地区有砟轨道结构存在的沙害问题严重现象,对典型沙害成因进行研究分析;根据典型沙害成因提出一种适用于沙漠地区铁路的改进型双块式无砟轨道结构形式,并对新型双块式无砟轨道结构参数进行优化分析;既有沙漠铁路积沙严重的主要... 针对沙漠地区有砟轨道结构存在的沙害问题严重现象,对典型沙害成因进行研究分析;根据典型沙害成因提出一种适用于沙漠地区铁路的改进型双块式无砟轨道结构形式,并对新型双块式无砟轨道结构参数进行优化分析;既有沙漠铁路积沙严重的主要原因是有砟道床表面粗糙度过大导致沙粒的沉积;采用无砟轨道结构形式的线路,在保证列车运行安全的前提下,其走向宜与当地主风向垂直;基于利用自然风排沙及经济方面的综合考虑,相邻轨枕、道床板组成的U形槽的宽高比宜为2。 展开更多
关键词 沙漠铁路 轨道沙害 轨道结构选型 轨道结构参数优化
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分级地震下跨断层高铁简支梁桥行车安全与抗震设计优化研究 被引量:13
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作者 江辉 王敏 +1 位作者 曾聪 黄磊 《工程力学》 EI CSCD 北大核心 2020年第10期70-84,共15页
以跨越走滑断层的某高速铁路八跨简支梁桥为研究对象,基于OpenSEES平台建立其考虑梁-轨相互作用的线桥体系非线性数值模型,合成平行断层方向的水平地震动,分析了不同地震动强度下桥梁结构及CRTSII型板式无砟轨道结构的损伤特性,量化评... 以跨越走滑断层的某高速铁路八跨简支梁桥为研究对象,基于OpenSEES平台建立其考虑梁-轨相互作用的线桥体系非线性数值模型,合成平行断层方向的水平地震动,分析了不同地震动强度下桥梁结构及CRTSII型板式无砟轨道结构的损伤特性,量化评定了结构构件的地震安全性。基于规范给出的轨道水平变形控制标准,评价了不同车速下线路的行车安全性,探讨了轨道结构的优化设计。研究结果表明:断层跨及其邻跨的地震响应最大,强震下面临严峻的破坏风险;地震下轨道水平变形明显,存在行车安全隐患的位置主要集中在断层跨及其两侧邻跨梁端;增加轨道侧向挡块数量可有效降低轨道水平变形,将侧向挡块增加至每跨每线6对时,罕遇地震下,除断层跨梁端处轨道的平行转角外,其余位置的轨道水平变形指标仍能满足车速为100 km/h时的行车安全限值。 展开更多
关键词 跨断层高铁简支梁桥 地震动滑冲效应 梁-轨相互作用 结构损伤评估 线路行车安全 轨道结构优化设计
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高速动车组仿真驾驶软件的优化设计
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作者 刘诗佳 《铁道机车车辆》 北大核心 2023年第6期117-124,共8页
仿真平台对高速动车组运行状态的模拟,可以通过更贴近司机的实际操作规程、优化底层数据结构来提高仿真度和数据记录精度。同时,优化后的数据在提高记录精度的同时,还能大幅度地减少数据总量。通过增加描述电能传递的能耗拓扑图功能,仿... 仿真平台对高速动车组运行状态的模拟,可以通过更贴近司机的实际操作规程、优化底层数据结构来提高仿真度和数据记录精度。同时,优化后的数据在提高记录精度的同时,还能大幅度地减少数据总量。通过增加描述电能传递的能耗拓扑图功能,仿真系统可以进一步计算高速动车组的能耗,而不必针对每个车型新编代码。最后,通过仿真对比实验数据,验证了以上操作规程、数据优化设计,并对比了不同车型的能耗差异。 展开更多
关键词 高速动车组仿真 轨道数据结构优化 仿真结果优化 能耗计算
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M204-FP41井钻井施工技术实践与认识
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作者 孟祥波 《石油和化工设备》 CAS 2024年第12期92-93,共2页
为了高效开发M204区块F油层,部署了M204-FP41这口水平井。施工前根据地层特性及后期大型压裂需求,对井身结构和井眼轨道进行了优化,在施工中根据一开、二开、三开不同的施工特点与难点,优化了钻具组合、制定了详细的施工技术措施,保证... 为了高效开发M204区块F油层,部署了M204-FP41这口水平井。施工前根据地层特性及后期大型压裂需求,对井身结构和井眼轨道进行了优化,在施工中根据一开、二开、三开不同的施工特点与难点,优化了钻具组合、制定了详细的施工技术措施,保证了该井的安全高效实施,为同区块施工同类型井积累了经验。 展开更多
关键词 井身结构与井眼轨道优化 井眼防碰 油层钻遇率 M204-FP41井
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Application and optimization design of non-obstructive particle damping-phononic crystal vibration isolator in viaduct structure-borne noise reduction
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作者 SHI Duo-jia ZHAO Cai-you +3 位作者 ZHANG Xin-hao ZHENG Jun-yuan WEI Na-chao WANG Ping 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第7期2513-2531,共19页
The problems associated with vibrations of viaducts and low-frequency structural noise radiation caused by train excitation continue to increase in importance.A new floating-slab track vibration isolator-non-obstructi... The problems associated with vibrations of viaducts and low-frequency structural noise radiation caused by train excitation continue to increase in importance.A new floating-slab track vibration isolator-non-obstructive particle damping-phononic crystal vibration isolator is proposed herein,which uses the particle damping vibration absorption technology and bandgap vibration control theory.The vibration reduction performance of the NOPD-PCVI was analyzed from the perspective of vibration control.The paper explores the structure-borne noise reduction performance of the NOPD-PCVIs installed on different bridge structures under varying service conditions encountered in practical engineering applications.The load transferred to the bridge is obtained from a coupled train-FST-bridge analytical model considering the different structural parameters of bridges.The vibration responses are obtained using the finite element method,while the structural noise radiation is simulated using the frequency-domain boundary element method.Using the particle swarm optimization algorithm,the parameters of the NOPD-PCVI are optimized so that its frequency bandgap matches the dominant bridge structural noise frequency range.The noise reduction performance of the NOPD-PCVIs is compared to the steel-spring isolation under different service conditions. 展开更多
关键词 non-obstructive particle damping phononic crystal vibration isolator band gap optimization floating-slab track bridge structure-borne noise control particle swarm optimization
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Running safety and seismic optimization of a fault-crossing simply-supported girder bridge for high-speed railways based on a train-track-bridge coupling system 被引量:6
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作者 JIANG Hui ZENG Cong +3 位作者 PENG Qiang LI Xin MAXin-yi SONG Guang-song 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第8期2449-2466,共18页
Bridges crossing active faults are more likely to suffer serious damage or even collapse due to the wreck capabilities of near-fault pulses and surface ruptures under earthquakes.Taking a high-speed railway simply-sup... Bridges crossing active faults are more likely to suffer serious damage or even collapse due to the wreck capabilities of near-fault pulses and surface ruptures under earthquakes.Taking a high-speed railway simply-supported girder bridge with eight spans crossing an active strike-slip fault as the research object,a refined coupling dynamic model of the high-speed train-CRTS III slab ballastless track-bridge system was established based on ABAQUS.The rationality of the established model was thoroughly discussed.The horizontal ground motions in a fault rupture zone were simulated and transient dynamic analyses of the high-speed train-track-bridge coupling system under 3-dimensional seismic excitations were subsequently performed.The safe running speed limits of a high-speed train under different earthquake levels(frequent occurrence,design and rare occurrence)were assessed based on wheel-rail dynamic(lateral wheel-rail force,derailment coefficient and wheel-load reduction rate)and rail deformation(rail dislocation,parallel turning angle and turning angle)indicators.Parameter optimization was then investigated in terms of the rail fastener stiffness and isolation layer friction coefficient.Results of the wheel-rail dynamic indicators demonstrate the safe running speed limits for the high-speed train to be approximately 200 km/h and 80 km/h under frequent and design earthquakes,while the train is unable to run safely under rare earthquakes.In addition,the rail deformations under frequent,design and rare earthquakes meet the safe running requirements of the high-speed train for the speeds of 250,100 and 50 km/h,respectively.The speed limits determined for the wheel-rail dynamic indicators are lower due to the complex coupling effect of the train-track-bridge system under track irregularity.The running safety of the train was improved by increasing the fastener stiffness and isolation layer friction coefficient.At the rail fastener lateral stiffness of 60 kN/mm and isolation layer friction coefficients of 0.9 and 0.8,respectively,the safe running speed limits of the high-speed train increased to 250 km/h and 100 km/h under frequent and design earthquakes,respectively. 展开更多
关键词 high-speed train train-track-bridge interaction fault-crossing ground motion train operation safety speed limit track structure optimization
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Study on the prediction of visible absorption maxima of azobenzene compounds
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作者 刘军娜 陈志荣 袁慎峰 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE EI CAS CSCD 2005年第6期584-589,共6页
The geometries of azobenzene compounds are optimized with B3LYP/6-311G* method, and analyzed with nature bond orbital, then their visible absorption maxima are calculated with TD-DFT method and ZINDO/S method respecti... The geometries of azobenzene compounds are optimized with B3LYP/6-311G* method, and analyzed with nature bond orbital, then their visible absorption maxima are calculated with TD-DFT method and ZINDO/S method respectively. The results agree well with the observed values. It was found that for the calculation of visible absorption using ZINDO/S method could rapidly yield better results by adjusting OWFπ-π (the relationship between π-π overlap weighting factor) value than by the TD-DFT method. The method of regression showing the linear relationship between OWFπ-π and BLN-N (nitrogen-nitrogen bond lengths) as OWFπ-π=?8.1537+6.5638BLN-N, can be explained in terms of quantum theory, and also be used for prediction of visible absorption maxima of other azobenzne dyes in the same series. This study on molecules’ orbital geometry indicates that their visible ab- sorption maxima correspond to the electron transition from HOMO (the highest occupied molecular orbital) to LUMO (the lowest unoccupied molecular orbital). 展开更多
关键词 Azobenzene compound Nature bond orbital (NBO) Visible absorption maxima
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