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首页> 外文期刊>Modern Mechanical Engineering >Experimental Verification for the Application Feasibility of Buckingham Pi Theorem in Designing a Scaled Model of Flagellated Swimmer with Traditional Resistive Force Theory
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Experimental Verification for the Application Feasibility of Buckingham Pi Theorem in Designing a Scaled Model of Flagellated Swimmer with Traditional Resistive Force Theory

机译:具有传统电阻力理论设计普拉丁汉PI定理应用可行性的实验验证

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The microstructure of bacterial is an important reference to design underwater swimmers. Applying Buckingham Pi Theorem is a possible method to build a scaled model based on a theoretical flagellum designed with traditional Resistive Force Theory. By making a scaled model, the forward velocity could be obtained to verify the application feasibility of Buckingham Pi Theorem in such designs. The optimal value of the model’s pitch angle can be calculated with the traditional RFT as well as the forward velocity. Comparing the experimental results with the results of theoretical calculations, it is found that the experimental and calculated results are consistent, which means Buckingham Pi Theorem works well in such design of underwater swimmer.
机译:细菌的微观结构是设计水下游泳运动员的重要参考。 应用Buckingham PI定理是一种基于具有传统电阻力理论的理论鞭毛构建缩放模型的可能方法。 通过进行缩放模型,可以获得前向速度以验证这种设计中白金汉PI定理的应用可行性。 可以用传统的RFT以及前向速度计算模型的俯仰角的最佳值。 将实验结果与理论计算结果进行比较,发现实验和计算的结果是一致的,这意味着白金汉PI定理在这种水下游泳运动员设计中运行良好。

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