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Storage space allocation in container terminals 总被引:7,自引:0,他引:7
Chuqian Zhang Jiyin Liu Yat-wah Wan Katta G. Murty Richard J. Linn 《Transportation Research Part B: Methodological》2003,37(10):883-903
Container terminals are essential intermodal interfaces in the global transportation network. Efficient container handling at terminals is important in reducing transportation costs and keeping shipping schedules. In this paper, we study the storage space allocation problem in the storage yards of terminals. This problem is related to all the resources in terminal operations, including quay cranes, yard cranes, storage space, and internal trucks. We solve the problem using a rolling-horizon approach. For each planning horizon, the problem is decomposed into two levels and each level is formulated as a mathematical programming model. At the first level, the total number of containers to be placed in each storage block in each time period of the planning horizon is set to balance two types of workloads among blocks. The second level determines the number of containers associated with each vessel that constitutes the total number of containers in each block in each period, in order to minimize the total distance to transport the containers between their storage blocks and the vessel berthing locations. Numerical runs show that with short computation time the method significantly reduces the workload imbalance in the yard, avoiding possible bottlenecks in terminal operations. 相似文献
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通过论述机械化清扫在高速公路上应用的基本情况、操作规程、注意事项等内容,旨在为机械化养护在高速公路上的进一步开展提供可借鉴的经验。 相似文献
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An optimized methodology to design a more robust torpedo shell is proposed. The method has taken into account reliability requirements and controllable and uncontrollable factors such as geometry, load, material properties, manufacturing processes, installation, etc. as well as human and environmental factors. The result is a more realistic shell design. Our reliability optimization design model was developed based on sensitivity analysis. Details of the design model are given in this paper. An example of a torpedo shell design based on this model is given and demonstrates that the method produces designs that are more effective and reliable than traditional torpedo shell designs. This method can be used for other torpedo system designs. 相似文献
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WIT Electronic Fuel System Co., Ltd. has developed a new fuel injector, the Electronic In-line Pump (EIP) system, designed to meet China's diesel engine emission and fuel economy regulations. It can be used on marine diesel engines and commercial vehicle engines through different EIP systems. A numerical model of the EIP system was built in the AMESim environment for the purpose of creating a design tool for engine application and system optimization. The model was used to predict key injection characteristics under different operating conditions, such as injection pressure, injection rate, and injection duration. To validate these predictions, experimental tests were conducted under the conditions that were modeled. The results were quite encouraging and in agreement with model predictions. Additional experiments were conducted to study the injection characteristics of the EIP system. These results show that injection pressure and injection quantity are insensitive to injection timing variations, this is due to the design of the constant velocity cam profile. Finally, injection quantity and pressure vs. pulse width at different cam speeds are presented, an important injection characteristic for EIP system calibration. 相似文献
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撑靴为TBM的前进及稳定性提供保障,与围岩的接触是否均匀直接影响工作的稳定性,针对撑靴与围岩接触会因为应力分布不均匀而导致支撑不稳或围岩坍塌等问题,以新型TBM的撑靴为研究对象,根据试验台的三维模型创建撑靴和其他机构之间的力传递特性,建立双支撑工作模式下撑靴与围岩的接触模型,采用有限元方法研究撑靴与围岩接触面应力、位移分布。结果表明:撑靴与围岩的综合应力分布较为均匀,在周向尺寸上分布在-18°~18°范围内,撑靴接触表面最大应力为13.3 MPa,围岩接触表面最大应力为4.03 MPa。撑靴接触表面综合位移中间小、两端大,而在围岩接触表面综合位移中间大,向四周位移逐渐减小。并且运用赫兹公式对有限元分析的结果进行验证,误差为0.5 MPa,表明分析结果可靠,为提高整机稳定性提供了参考。 相似文献