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1.
受铁路基础装备技术和国内复杂运用环境限制,机车自动驾驶系统仍需在有人值守的情况下工作,所以应有完善的自动驾驶系统模式切换策略来界定值守人员和自动驾驶的权限边界。以机车运行安全为原则,基于列车纵向动力学分析动态切换时列车的平稳性,阐述了机车自动驾驶系统的模式切换策略,该策略已经运用于机车自动驾驶实际应用中。大量实践案例证明,提出的机车自动驾驶模式切换策略能够有效保证机车控制权模式切换过程中列车的安全、平稳运行,取得了良好的运行效果。  相似文献   
2.
The helical pile has been used to resist the tension for a long time. However, the prediction of the uplift capacity of helical piles including the influence of installation is still a challenge in design. Based on the change in stress according to Mohr-Coulomb failure criterion, a simple theoretical method has been developed, which can calculate the uplift capacity of shallow pre-embedded circular plate anchors and the uplift capacity of helical piles installed by torque and compression. In order to analyse the influence of installation process of a single-plate helical pile on its uplift capacity and verify the theoretical model, a series of model tests have been conducted in dense saturated sand. The single-plate helical piles with different out diameters of helixes have been installed with different installation speeds, and then, the single-plate helical piles have been moved up monotonically. The test results show that the installation speed and the size of the out diameter of the helix have significant influence on the uplift capacity of the helical piles, and the results of the theoretical method have a good fit with the test results. Using this simple theoretical method, the designer can easily predict the uplift capacities of helical piles, which includes the influence of installation.  相似文献   
3.
In many cities, diesel buses are being replaced by electric buses with the aim of reducing local emissions and thus improving air quality. The protection of the environment and the health of the population is the highest priority of our society. For the transport companies that operate these buses, not only ecological issues but also economic issues are of great importance. Due to the high purchase costs of electric buses compared to conventional buses, operators are forced to use electric vehicles in a targeted manner in order to ensure amortization over the service life of the vehicles. A compromise between ecology and economy must be found in order to both protect the environment and ensure economical operation of the buses.In this study, we present a new methodology for optimizing the vehicles’ charging time as a function of the parameters CO2eq emissions and electricity costs. Based on recorded driving profiles in daily bus operation, the energy demands of conventional and electric buses are calculated for the passenger transportation in the city of Aachen in 2017. Different charging scenarios are defined to analyze the influence of the temporal variability of CO2eq intensity and electricity price on the environmental impact and economy of the bus. For every individual day of a year, charging periods with the lowest and highest costs and emissions are identified and recommendations for daily bus operation are made. To enable both the ecological and economical operation of the bus, the parameters of electricity price and CO2 are weighted differently, and several charging periods are proposed, taking into account the priorities previously set. A sensitivity analysis is carried out to evaluate the influence of selected parameters and to derive recommendations for improving the ecological and economic balance of the battery-powered electric vehicle.In all scenarios, the optimization of the charging period results in energy cost savings of a maximum of 13.6% compared to charging at a fixed electricity price. The savings potential of CO2eq emissions is similar, at 14.9%. From an economic point of view, charging between 2 a.m. and 4 a.m. results in the lowest energy costs on average. The CO2eq intensity is also low in this period, but midday charging leads to the largest savings in CO2eq emissions. From a life cycle perspective, the electric bus is not economically competitive with the conventional bus. However, from an ecological point of view, the electric bus saves on average 37.5% CO2eq emissions over its service life compared to the diesel bus. The reduction potential is maximized if the electric vehicle exclusively consumes electricity from solar and wind power.  相似文献   
4.
从商用汽车电堆散热系统设计要求的实际角度出发设计系统原理图,从而进行计算匹配及选型零部件,对所选零部件进行仿真校核是否满足最初的设计要求,保证商用汽车电堆散热系统的正常工作。  相似文献   
5.
20世纪70~80年代修建的高桩码头由于长期处于氯盐侵蚀的环境中,码头浪溅区梁板钢筋容易发生锈蚀膨胀,进而引起混凝土纵向开裂、脱落。为保证码头结构安全需要对此类型的梁进行维修加固,基于实际码头维修加固工程对加大梁截面和粘贴碳纤维布两种维修加固方法进行介绍,从应用范围、施工效率、质量及成本4个方面对两种方法进行对比分析。结果表明,加大截面法比粘贴碳纤维布法的适用范围更广泛,但在施工效率、成本、施工难易及质量可控性等方面,粘贴碳纤维布法具有明显优势。  相似文献   
6.
针对一款串联型插电式混合动力公交车,文章基于MTLALB建立整车和各部件数值模型。在中国典型城市公交工况下,建立基于全局优化的DP策略,并与CD-CS策略和PMP策略进行能耗对比分析。结果表明:(1)基于CD-CS策略的后期SOC在一定范围内波动,DP策略与PMP策略的SOC轨迹近似呈线性变化。(2)CD-CS策略较DP策略的能耗成本高22.68%,PMP策略比DP策略的能耗成本高0.30%。DP策略与PMP策略可以合理分配能量源,实现全局最优,但DP策略相比PMP策略计算量大。  相似文献   
7.
我国电力机车及动力车通风系统   总被引:3,自引:0,他引:3  
简要地说明了我国电力机车及动力车通风系统的发展情况,尤其是交流传动技术对我国电力机车及动力车通风系统的发展的重要影响,同时,还详细分析了各种通风方式的特点,为电力机车及动力车通风系统简统化设计提供了多种选择模式。  相似文献   
8.
分析了EA4T钢的性质特征以及传统调质处理工艺所存在的问题,系统地研究了正火、淬火及回火工艺对材料的组织及性能的影响规律。通过系统的实验,探索出了DJ4型机车车轴的最佳热处理工艺参数。  相似文献   
9.
随着计算机仿真技术在工程研究领域的广泛应用,船舶电力系统数字仿真已成为高效的船舶电力系统分析手段.烟大火车渡船采用了当今国际先进的电力推进系统,通过对该系统进行了数字仿真分析,验证了该船电网运行的稳定性和可靠性.  相似文献   
10.
特殊条件下的真空预压密封技术   总被引:3,自引:2,他引:1  
结合广州港南沙港区二期工程软基处理工程实例,针对在局部有抛石地段的软土采取真空预压方法加固时传统的挖密封沟和施打淤泥搅拌墙技术存在相当大困难的情况,提出了在有抛石地段采取高压旋喷桩密封技术。实测结果表明,采取该技术密封效果良好,真空度能达到设计要求。与堆载方案相比,采取本技术经济效益良好,具有较好的推广价值。  相似文献   
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