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21.
The problems of TBM construction data loss, information barriers and absence of data mining have con⁃ strained the advancement of basic technologies in TBM field. Aimed at building a cloud computation platform for TBM operation information, a new concept of 3B, i. e. Born by digit, Born in format and Born to the cloud, was pre⁃ sented, the issues of information acquisition, transmission and storage during TBM operation were solved, and massive heterogeneous information intelligent transmission system and big data warehouse of TBM group were established. A structure model of cloud computation platform was designed by taking Hadoop system as ecosphere, and a cloud computation platform was built to deploy related algorithm, realizing on-line monitoring and data sharing, further⁃ more the data law mining of interaction of rock mass versus TBM machine was conducted based on big data tech⁃ nique, exploring the development direction of the information platform. © 2018, Editorial Office of "Modern Tunnelling Technology". All right reserved. 相似文献
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舰用齿轮箱抗冲击能力时域计算 总被引:3,自引:0,他引:3
为找出舰船设备的潜在问题或薄弱环节,从而保证舰船的战斗力;以及为避免由于对设备的抗冲击性能不了解即进行冲击试验可能对设备造成的损坏,抗冲击数值模拟分析对于舰用设备是必要的。对舰用齿轮箱抗冲击能力进行时域数值模拟,使用MDT软件建立齿轮箱三维几何模型,利用HyperMesh软件进行前处理以及有限元网格划分,并将有限元模型导入ABAQUS软件,对齿轮箱抗冲击能力进行时域计算。分析数值模拟结果得到了齿轮箱典型部位处冲击响应,总结了齿轮箱抗冲击的一些规律,并找出了齿轮箱结构抗冲击的薄弱环节,为齿轮箱结构优化设计提供了参考。 相似文献
23.
在分析国内外高速铁路无砟轨道变形调整技术及应用经验基础上,基于结构安全可靠、变形调整便利、预制装配化施工等原则,考虑沉降、上拱、偏移等线下基础变形特征,提出了一种变形调整能力较强的板式无砟轨道结构。通过减小轨道板下调整层厚度或灌注聚合物砂浆实现轨道高低调整,通过移动轨道板并改变限位孔周边弹性缓冲垫层厚度实现轨道水平调整。在不损伤无砟轨道主体结构的前提下可实现高低调整量100 mm,水平调整量40 mm。提出的变形可调板式无砟轨道结构可为地质条件及气候复杂地区高速铁路无砟轨道设计及相关病害整治提供参考。 相似文献
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在考虑箱梁翼缘正应力的剪滞效应和结构竖向挠度的几何非线性影响前提下,依据势能变分原理,推导了薄壁曲线箱梁的非线性控制微分方程,并采用样条配点法和Newton-Raphon迭代法进行求解。算例计算表明,本文结果与有限条的解吻合较好,但本文的方法更经济、简单、实用,可推广于变截面、变曲率薄壁曲线箱梁的计算。 相似文献
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Ingo Kaiser Gerhard Poll Gerhard Voss Jordi Vinolas 《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2019,57(4):564-594
The hunting motion of a passenger coach is investigated using a multibody system in which the wheelsets and the rails can be modelled as flexible bodies. By comparing the results for different model variants, in which the structural flexibilities of the wheelsets and of the rails are either taken into account or neglected, the impact of the flexibilities is analysed. It turns out that the flexibilities of both the wheelsets and the rails have a significant impact on the hunting behaviour by increasing the lateral motions of the wheelsets and lowering the critical speed. In order to investigate the impact of the flexibilities under different operating conditions, the calculations are carried out for track geometries using different rail profiles (60E1, 60E2) and different rail cants (1:40, 1:20) and for different values for the friction coefficient (0.25…0.4) at the wheel–rail contact. The results show that the influence of the flexibilities is the strongest for high lateral forces, which occur e.g. for contact geometries leading to high hunting frequencies and for high values of the friction coefficient. The results also show in some cases a strong impact of the flexibilities on the position of the wheel–rail contact on the running surface of the rail, which is of particular interest with respect to wear simulation. 相似文献
29.
《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2012,50(3):247-258
Dynamic train–track interaction is more complex in railway turnouts (switches and crossings) than that in ordinary tangent or curved tracks. Multiple contacts between wheel and rail are common, and severe impact loads with broad frequency contents are induced, when nominal wheel–rail contact conditions are disturbed because of the continuous variation in rail profiles and the discontinuities in the crossing panel. The absence of transition curves at the entry and exit of the turnout, and the cant deficiency, leads to large wheel–rail contact forces and passenger discomfort when the train is switching into the turnout track. Two alternative multibody system (MBS) models of dynamic interaction between train and a standard turnout design are developed. The first model is derived using a commercial MBS software. The second model is based on a multibody dynamics formulation, which may account for the structural flexibility of train and track components (based on finite element models and coordinate reduction methods). The variation in rail profile is accounted for by sampling the cross-section of each rail at several positions along the turnout. Contact between the back of the wheel flange and the check rail, when the wheelset is steered through the crossing, is considered. Good agreement in results from the two models is observed when the track model is taken as rigid. 相似文献
30.
《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2012,50(5):551-574
The paper proposes a mathematical model of train–turnout interaction in the mid-frequency range (0–500 Hz). The model accounts for the effects of rail profile variation along the track and of local variation of track flexibility. The proposed approach is able to represent the condition of one wheel being simultaneously in contact with more than one rail, allowing the accurate prediction of the effect of wheels being transferred from one rail to another when passing over the switch toe and the crossing nose. Comprehensive results of train–turnout interaction during the negotiation of the main and the branch lines are presented, including the effect of wear of wheel/rail profiles and presence of track misalignment. In the final part of the paper, comparisons are performed between the results of numerical simulations and line measurements performed on two different turnouts for urban railway lines, showing a good agreement between experimental and numerical results. 相似文献