气垫船推进系统振动分析——理论框架与评述

P. H. Thanh
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引用次数: 0

摘要

气垫船具有灵活的可用性,可以在水和陆地上操作,具有悠久的发展历史,在世界许多国家得到广泛应用。在这项研究中,我们的重点是解决隔离振荡的问题,当一个机器-放置在隔离器-操作风车产生推力动量气垫船的运动。作者硕士学位研究的主要内容是研究集成在发动机结构中的振荡器系统,以显著降低气垫船主机和螺旋桨的振动。研究的重点是建立计算模型,找出推进系统-电机-电机支撑结构与阻尼系统集成的主要振动特性。主要目的是找出能够承受最佳隔振的气垫发动机结构的传动特性、比频率和支承结构的阻尼系统等参数值。根据已审查的文献,正在进行模拟和实际试验(使用CALFEM和以下模拟模型),以确定最佳技术参数。这些发现和结果将继续促进发动机技术的改进,特别是水上飞机工程技术的改进,以满足标准和法规的要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Oscillation of Propulsion System on Hovercraft - Theoretical Framework and Review
With flexible usability, able to operate both on water and land, hovercraft has a long history of development and is widely used in many countries around the world. In this research, we focus on solving the problem of isolation oscillates when a machine - placed on an isolator - operates the pinwheel to create thrust momentum for hovercraft movements. The main content of the author’s master degree research is to study the oscillator system integrated in the engine structure to significantly reduce the vibration from the main engine and the propeller of the air cushion ship. The study focused on building a calculation model to find the main vibration characteristics of the propulsion system - motor - motor support structure integrated with damping system. Main objective is finding out the parameter values: transmission characteristics, specific frequencies of the air-cushion engine structure and damping system of supporting structure which are able to withstand the best vibration isolation. Based on reviewed literature, simulations and real-world tests (using CALFEM and following simulation models) are being performed to determine the optimal technology parameters. The findings and results continue to contribute to the improvement of engine technology in particular and seaplane engineering technology in general as required by standards and regulations.
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