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641.
D. Danardono K. S. Kim E. Roziboyev C. U. Kim 《International Journal of Automotive Technology》2010,11(3):323-330
A roller vane type liquefied petroleum gas (LPG) pump was developed for a liquid phase LPG injection (LPLi) engine. Most of
the LPG pumps used in the current LPLi engines are installed inside of the LPG tank, but this pump is intended to be installed
outside of the LPG tank to overcome the difficulty of fixing an in-tank pump. Because LPG has a low boiling point and high
vapor pressure, it usually causes cavitation in the pump and consequently deteriorates the flow rate of the pump. The purpose
of this work is to optimize the design of the roller vane pump in order to suppress cavitation and increase the fuel flow
rate by using a computational fluid dynamics (CFD) analysis. In order to achieve these goals, the intake port configuration
and the rotor of the roller vane pump were redesigned and simulated using STAR-CD code. Computation was performed for six
different models to obtain the optimized design of the roller vane pump at a constant speed of 2600 rpm and a constant pressure
difference between the inlet and outlet of 5 bar. The computation results show that an increased intake port cross-section
area can suppress cavitation, and the pump can achieve a higher flow rate when the rotor configuration is changed to increase
its chamber volume. When the inlet pressure difference is 0.1 bar higher than the fluid saturation pressure, the pump reaches
its maximum flow rate. 相似文献
642.
Modeling,parameter estimation and nonlinear control of automotive electronic throttle using a Rapid-Control Prototyping technique 总被引:1,自引:0,他引:1
An electronic throttle consists of a DC motor, spur gears, a return spring, a position sensor, power electronics and an electronic
control unit. Fast and precise position control of this electromechanical system is relatively difficult due to very high
friction and the strong nonlinearity of the spring. Simple application of linear control, such as PID, fails. In this paper,
two new controller structures suitable for different reference signal types are described. The key component of the position
controller is the friction compensator based on either/both feedforward or feedback principles. The quality of the resulting
behavior was measured using several criteria including the measure of control activity around the equilibrium position. The
control activity directly influences the vibration, the noise and the wear of the servo system. The proposed controllers demonstrated
superior behavior compared with other published structures. 相似文献
643.
为研究注射料的流动性和模腔形状的复制能力,加工了含有微流道的模具,在微注射系统上进行了微注射实验.应用基于矢量化显式算法的程序,在不同壁面边界条件下,对微注射实验进行了模拟.结果表明:在注射料温度220 ℃、模具温度40 ℃、注射流量为20 mm3/s、注射时间1 s、保压时间10 s的注射工艺条件下,聚丙烯能较好的复制长5 mm,宽1.5 mm和厚0.8 mm的微流道形状.采用滑移边界条件的微注射模拟结果与实验结果一致,说明微注射中存在边界滑移速度. 相似文献
644.
非明挖工法在都市施作时,常因困难地质(如卵砾石层)或障碍物而造成施工困难、工期延误或发生灾损。本文主要针对非明挖施工法里的管推进施工法(Pipe-jacking Method),探讨管推进工法施工时可能遭遇的困难,以及施工困难状况下之管材土体互制行为。探讨的施工困难包括超挖、挤压、卡钻等问题。本研究针对超挖范围、卡钻位置、阻力大小以及推进力施加位置等,以ABAQUS有限元素软件进行三维数值仿真,探讨直线推进施工中的问题。 相似文献
645.
快速公交系统离散仿真框架 的设计和实施 总被引:1,自引:0,他引:1
Fergyanto E. GUNAWAN 《交通运输系统工程与信息》2014,14(4):37-45
世界范围内,快速公交系统是缓解许多城市交通拥挤问题的有效方法之一.然 而,系统的成功与否依赖多种因素,如服务规划、基础设施、车站设计、乘客信息系统及系 统的集成和接口等.本文基于离散事件系统,构建了快速公交系统(BRT)的计算机仿真 框架.这种方法在评估各种变量对BRT 运行效果的影响时能够节约成本.结果表明,一部 分子系统能够直接用于模拟典型的BRT 系统.数值试验证明,开发的子系统能够合理地 再现实际BRT 系统中的常见情况. 相似文献
646.
鄂海清 《广东交通职业技术学院学报》2012,11(2):4-7
以在建的佛开高速公路谢边至三堡段扩建工程软基试验段为依托,在新老路堤采用合理的拼接措施,软土地基采用素砼桩复合地基进行处理的基础上,结合现场监测数据,分析研究素砼桩复合地基处理高速公路拓宽工程软基的沉降变形特性。 相似文献
647.
Laurent Van Malderen Bart Jourquin Isabelle Thomas Thomas Vanoutrive Ann Verhetsel Frank Witlox 张宇译 《城市交通》2012,(4):79-90
公司是通勤交通的主要创造者,在与交通相关的讨论中,公司扮演着重要角色。近几年,公司提出了多种政策措施,以改善员工的出行条件,但其愿景与行动通常被研究文献所忽视。为了讨论比利时公司在交通政策方面的最佳实践,分析了现有研究成果和比利时的两次大规模通勤交通调查。首先,对公司进行分类,以便确定在推广替代交通方式方面受员工欢迎的公司。然后,通过量化分析确定交通政策的最佳实践。结果显示,最佳替代交通方式取决于公司特征;自行车交通最适合小型工作场所,大型工作场所和位于建筑密集区或市中心的公司则更适合推广公共交通;在公司交通管理中,财务激励、设施提供、信息传播和停车管理均起重要作用。 相似文献
648.
列举了影响超声回弹综合法检测精度的主要因素,并结合部分试验数据进行分析说明,为现场检测工作提供指导。 相似文献
649.
H. S. Seo B. C. Kim P. S. Park C. D. Lee S. S. Lee 《International Journal of Automotive Technology》2013,14(1):91-99
In this paper, we propose a universal plug and play (UPnP) — controller area network (CAN) gateway system using UPnP middleware for interoperability between external smart devices and an in-vehicle network. The proposed gateway consists of a UPnP communication device, a CAN communication device, and a device translator layer. In-vehicle devices are not usually IP-based, so we implemented an in-vehicle device manager in the UPnP communication device which is in the gateway. We developed a vehicle simulator to produce real vehicular data for performance analysis. The CAN communication device transmits and receives real-time vehicle data between the real vehicular simulator and external devices through the UPnP. The device translator layer configures a message frame for enabling seamless data input and output between the CAN and UPnP protocols. After implementation, we generated an internal-external service request and tested the result. Finally, we confirmed the service request and operation between external devices and the internal vehicular device. Additionally, for a variety of external device numbers and communication environments, we demonstrated the gateway performance by measuring the round trip time (RTT) for overall service implementation. 相似文献
650.
M. S. Han S. O. Bang J. U. Cho S. Lee C. Cho 《International Journal of Automotive Technology》2013,14(1):61-66
The need for composites has been increasing in various industries because composites have good mechanical properties for their weight and superior stiffness and strength. The composites addressed in this study were multi-pore aluminum foam with a specific gravity of 1/10 composed of solid aluminum metal. This composite has excellent impact energy-absorption capability. In this study, impact tests on an aluminum foam core sandwich composite with a porous core were conducted to examine its mechanical properties. The specimen was a sandwich structure with an aluminum foam core, and different impact energies, such as 50J, 70J, and 100J, were applied to the specimen. Consequently, a maximum load of 5.5 kN occurred when the striker penetrated the upper face sheet in all experiments. The maximum load occurred at 4.2 ms for 50J, 3.5 ms for 70J, and 3.0 ms for 100J, indicating that the greater the impact energy was, the shorter the time was until the maximum load. After the maximum load occurred, that is, after the penetration of the upper face sheet, the striker penetrated 10 mm further, causing the core to be damaged in the 50J test, while the lower face sheet remained intact. In the 70J test, the striker penetrated the core and caused damage to the upper face sheet at 10 ms. Finally, in the 100J test, the striker penetrated both the upper face sheet and core and even the lower face sheet at 10 ms. Given the result above, the maximum load occurred when the striker penetrated the upper face sheet and the sandwich composite with aluminum foam core; the load then gradually decreased and then rapidly increased when the striker reached the lower face sheet, and the maximum load lasted slightly longer than the time required for the upper face sheet to be penetrated. 相似文献