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基于有限元方法的摩阻传感器结构设计分析 被引量:1
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作者 陈稼宁 尹瑞多 +3 位作者 马丙辉 肖尧 穆聪聪 谢晓斌 《计量科学与技术》 2021年第11期45-49,55,共6页
摩擦阻力是物体在流体中运动时受到总阻力的重要组成部分。由于理论分析的复杂性和实际流场的多样性,摩擦阻力的直接测量技术在理论验证和工业设计等领域起到关键作用。介绍一种面向应变式摩阻传感器弹性体的设计,通过分析平行梁结构摩... 摩擦阻力是物体在流体中运动时受到总阻力的重要组成部分。由于理论分析的复杂性和实际流场的多样性,摩擦阻力的直接测量技术在理论验证和工业设计等领域起到关键作用。介绍一种面向应变式摩阻传感器弹性体的设计,通过分析平行梁结构摩阻传感器的工作原理,确定传感器孔径、平行梁间距、连接梁厚度是影响性能的主要参数;基于正交实验设计法选取三类参数的代表性组合,采用有限元仿真对贴片区的应变分布情况进行数值计算;通过定义应变区系数和应变-变形比等参数以协调互相矛盾的优化目标,分析各因素对传感器性能的影响,最终确认最优参数组合。 展开更多
关键词 摩阻传感器 平行梁结构 力学分析 有限元方法 正交实验设计法
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Micro-bubble Drag Reduction on a High Speed Vessel Model 被引量:6
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作者 Yanuar Gunawan +1 位作者 Sunaryo A. Jamaluddin 《Journal of Marine Science and Application》 2012年第3期301-304,共4页
Ship hull form of the underwater area strongly influences the resistance of the ship. The major factor in ship resistance is skin friction resistance. Bulbous bows, polymer paint, water repellent paint (highly water-... Ship hull form of the underwater area strongly influences the resistance of the ship. The major factor in ship resistance is skin friction resistance. Bulbous bows, polymer paint, water repellent paint (highly water-repellent wall), air injection, and specific roughness have been used by researchers as an attempt to obtain the resistance reduction and operation efficiency of ships. Micro-bubble injection is a promising technique for lowering frictional resistance. The injected air bubbles are supposed to somehow modify the energy inside the turbulent boundary layer and thereby lower the skin friction. The purpose of this study was to identify the effect of injected micro bubbles on a navy fast patrol boat (FPB) 57 m type model with the following main dimensions: L=2 450 ram, B=400 mm, and T=190 mm. The influence of the location of micro bubble injection and bubble velocity was also investigated. The ship model was pulled by an electric motor whose speed could be varied and adjusted. The ship model resistance was precisely measured by a load cell transducer. Comparison of ship resistance with and without micro-bubble injection was shown on a graph as a function of the drag coefficient and Froude number. It was shown that micro bubble injection behind the mid-ship is the best location to achieve the most effective drag reduction, and the drag reduction caused by the micro-bubbles can reach 6%-9%. 展开更多
关键词 ship model test micro-bubble injection drag reduction high speed vessel model
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