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Jungyong Wang Ayhan Akinturk Neil Bose Stephen J. Jones Yun Young Song Ho Hwan Chun Moon Chan Kim 《Journal of Marine Science and Technology》2008,13(3):244-255
The objective of this study was to investigate the performance of a model azimuthing podded propulsor in ice-covered water.
Model tests were carried out with two different depths of cut into the ice (15 and 35 mm), two different ice conditions (presawn
and pack ice conditions), and four different azimuthing angles. The depth of cut is the maximum penetration depth of the propeller
blade into the ice block. The 0.3-m-diameter model propeller was operated in a continuous ice milling condition. Ice loads
were measured by several sensors which were installed in various positions on the model. Six one-axis pancake-style load cells
on the top of the model measured the global loads and two six-component dynamometers were installed on the shaft to measure
the shaft loads. One six-component dynamometer was attached to the one of the propeller blades inside the hub to measure the
blade loads. The pod unit and propeller performance in ice are presented. Ice-related loads, which were obtained when the
blade was inside the ice block, are introduced and discussed. During the propeller–ice interaction, a blade can experience
the path generated by the previous blade, which is called the shadowing effect. The effects of shadowing, depth of cut, azimuthing
angle, and advance coefficient on propulsor performance are presented and discussed. 相似文献
174.
傅芸 《铁路通信信号工程技术》2010,7(3):48-50
就TW系统溜放中误报警、调车进路中信号因故关闭和减速器前路追钩或减速器上追钩误报警这些常见的故障现象进行分析,有助于电务维护人员和TW系统的售后服务人员及时对故障进行判断和处理。 相似文献
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节点是非常重要的,是桥梁框架中比较特殊的部位,该处是剪切脆性破坏很突出的部位.在实际施工中会遇到许多问题,典型的问题有梁柱棍凝土强度相差大于一个等级时,节点区混凝土的施工;梁柱节点处的防裂等等.本文结合施工现场实际情况,研究桥梁框架梁柱节点施工处理中应注意的问题. 相似文献
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Vijay K. Garg Yun Lung Wang Kuang-han Chu 《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》1986,15(2):73-92
The dynamic performance of a flat car is studied herein. The performance indices include roll angles, lateral accelerations, center plate loads, side bearing loads, wheel loads and spring deflections. These variables are maximum when the car is running at its critical speed, corresponding to either the rock and roll, or the bounce mode. The Association of American Railroads' (AAR) Flexible Carbody Model was used. The input for vertical track irregularities used in the simulation was generated from published spectra for U.S. Federal Railroad Administration (FRA) Class 4 track. After studying the car's performance with various column loads and spring suspensions, it was found that the most commonly used column load of 4,000 lbs. (17.8 kN) should be used. The spring suspension used in the original car design should also be adopted, in order to avoid spring bottoming. 相似文献
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