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31.
对钢桥面板整体模型进行了有限元分析。结果表明,顶板横向应力在横桥向的分布表现出类似弹性支承多跨连续梁的受力特点,且顶板横向应力基本全部为弯曲应力,膜应力很小,在顶板-纵肋连接处纵肋应力远小于顶板横向应力。顶板-纵肋连接处的应力纵向和横向影响线很短,疲劳验算可不考虑同一车辆轴重间的相互影响及多车效应。增加顶板厚度可大大降低顶板的应力幅,铺装层的完整性对钢桥面板十分重要。此外,还对该类型接头的疲劳分级及现行欧洲规范Eurocode和美国规范AASHTO LRFD的相关条款进行了分析。为考虑车辆荷载通过引起的非成比例多轴疲劳效应,轮荷载滚动加载足尺模型试验和分析方法需要进一步深入研究。  相似文献   
32.
该文介绍了公路沥青路面结构设计的方法。路面厚度设计是在结构组合设计的基础上,通过力学和性能分析确定各结构层所需的厚度;同时,利用结构分析也可了解路面结构的应力和位移状况,从而判断结构层组合的合理性,并进行相应的调整。  相似文献   
33.
在非对称建筑荷载作用下,采用CRD法和预留核心土弧形导坑法两种施工开挖方案,对小净距隧道的施工过程进行了数值模拟研究.对两种施工方案的洞室周边竖向变形、地中围岩变形和洞室周边的围岩应力进行了对比分析,揭示了非对称建筑荷载作用下两种方案的洞室周边竖向变形规律和变形规律的相似性,获得了地中围岩变形的变化规律,对信息化反馈施工,指出了必须重点监控与关注的位置.  相似文献   
34.
This paper presents an algorithm for the frequency domain solution of dynamic linear “inverse” problems, that is for the processing of measurement data (strain, acceleration etc.) acquired on a mechanical structure, in order to estimate the loads acting on the structure and its corresponding response. The problem is formulated as a constrained (force equilibrium) optimization (small deviations from measurements, small loads) problem, which is transformed into an unconstrained problem, then into differential equations. The algorithm is applied to the estimation of hydrodynamic forces induced by the shedding of vortices from an offshore oil riser.  相似文献   
35.
地铁盾构隧道沿线障碍桩冲桩破除施工技术   总被引:1,自引:0,他引:1       下载免费PDF全文
陈世明 《隧道建设》2010,30(1):106-109
通过西安地铁二号线盾构区间隧道穿越障碍桩的工程案例,对4种废弃障碍桩的处理工艺的优缺点进行对比,确定采用"基坑开挖+冲桩"的方法,并介绍冲桩施工的要点以及关键技术措施。采用的施工方案施工效果明显:工序简单、容易操作、工期短;工序相对安全,工艺可靠。所得以验可供今后类似工程借鉴参考。  相似文献   
36.
结合博乐公路管理局管养的G30线K3981~K3982路段路基边坡防沙害处治养护项目的实施,对处治沙害实施流程进行了详细的阐述,有一定的参考价值。  相似文献   
37.
液压转向系统冷启动沉故障在北方冬季是比较常见的一个故障,论文针对故障产生的机理进行了深入分析,并对产生故障的常见原因及改进方法进行了简单介绍,最后对如何确定故障源从测试方面提供了方法.  相似文献   
38.
This paper presents an integrated structure for a passive and active fault tolerant control (FTC) design approach in the framework of a robust nonlinear control technique called Dynamic Surface Control (DSC). As motivated by the automated vehicle application, we consider two categories of possible faults: pre-specified (a priori) and non-specified faults. It is first shown that DSC can be considered as a passive FTC approach in the sense that it gives simultaneous robust stability to a set of nonlinear systems even in the presence of model uncertainties and the pre-specified faults. Then, the non-specified fault is classified depending on the fault’s impact on the closed-loop system and isolatability from a fault detection and diagnosis (FDD) system. If a fault is both intolerable and isolatable, an active FTC approach is taken which includes FDD and controller reconfiguration. More specifically, trajectory reconfiguration is considered to accommodate the actuator fault, i.e., to compensate for the performance loss due to the fault within the framework of a switched hierarchical structure. Finally, the integrated structure for the longitudinal control of an automated transit bus is designed through the proposed method. Simulation results of the fault tolerant controller are shown for both single and multiple multiplicative faults. This controller was implemented on the California PATH transit buses in a demonstration of automated public transportation technology in San Diego, California in August of 2003.  相似文献   
39.
A fault classification method is proposed which has been applied to an electric vehicle. Potential faults in the different subsystems that can affect the vehicle directional stability were collected in a failure mode and effect analysis. Similar driveline faults were grouped together if they resembled each other with respect to their influence on the vehicle dynamic behaviour. The faults were physically modelled in a simulation environment before they were induced in a detailed vehicle model under normal driving conditions. A special focus was placed on faults in the driveline of electric vehicles employing in-wheel motors of the permanent magnet type. Several failures caused by mechanical and other faults were analysed as well. The fault classification method consists of a controllability ranking developed according to the functional safety standard ISO 26262. The controllability of a fault was determined with three parameters covering the influence of the longitudinal, lateral and yaw motion of the vehicle. The simulation results were analysed and the faults were classified according to their controllability using the proposed method. It was shown that the controllability decreased specifically with increasing lateral acceleration and increasing speed. The results for the electric driveline faults show that this trend cannot be generalised for all the faults, as the controllability deteriorated for some faults during manoeuvres with low lateral acceleration and low speed. The proposed method is generic and can be applied to various other types of road vehicles and faults.  相似文献   
40.
Wheel set flange derailment criteria for railway vehicles are derived and the influence of wheel–rail contact parameters is studied. An indirect method for wheel–rail force measurement based on these derailment evaluation criteria is proposed. Laboratory tests for the calibration of strain–force devices on the bearing box are carried out to determine the relationship between the applied force and the measured strain. The simulation package, SIMPACK, is used to develop a passenger car model to generate wheel–rail forces and vibration signals. Different cases are considered in this model to provide an accurate validation of the identified wheel–rail forces. A feasibility test is conducted in the Beijing Loop test line using a passenger car equipped with a set of strain gauges on the wheel set. The comparison of the force time history applied to the instrumented wheel set and that obtained using the indirect method is presented.  相似文献   
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