自动力无人潜航器(UUV)设计与分析

Yashwanth S D, Sushma B S, P. Shukla, Surya M S, Pavan Gowda T
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引用次数: 0

摘要

本研究的重点是开发一种利用波浪能为其电路供电的自供电水下航行器。这项研究工作的目的是证明在水下环境中利用可再生能源的可行性,并展示可持续发电的潜力。为了保证水下航行器的结构完整性,利用ANSYS软件对水下航行器进行了严格的仿真分析。船体设计经过了彻底的审查,以确定其承受水深达5米的水压的能力。仿真结果表明,该型潜艇的艇体设计具有较强的鲁棒性,能够承受预期的操作条件。该研究探索了水下应用的替代能源,在海洋工程领域具有重要意义。通过利用波浪能,这项工作有助于可持续技术的发展,有可能彻底改变水下作业。可再生能源的使用最大限度地减少了对环境的影响,减少了对传统能源的依赖。在整个研究过程中,遇到了一些挑战,包括优化涡轮系统效率,确保可靠的动力传输,以及保持潜艇的结构完整性。这些挑战是通过仔细的设计考虑和迭代改进来解决的。本研究所获得的知识可以应用于各种水下应用,如海洋勘探、环境监测和数据收集。未来的研究和发展应该集中在加强涡轮设计,集成先进的电源管理系统,并进行现场测试,以验证系统在现实世界场景中的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Analysis of Self-Energising Unmanned Underwater Vehicle (UUV)
This research focuses on the development of a self-energizing underwater vehicle that utilizes wave energy to power its circuit. The objective of the research work is to demonstrate the feasibility of harnessing renewable energy sources in an underwater environment and showcase the potential for sustainable power generation. To ensure the structural integrity of the vehicle under water, rigorous simulation analysis has been conducted using ANSYS software. The hull design has undergone thorough scrutiny to determine its ability to withstand water pressure at depths of up to 5 meters. The simulation results confirm that the submarine's hull design is robust and capable of withstanding the expected operating conditions. This study holds great significance in the field of marine engineering as it explores alternative energy sources for underwater applications. By harnessing wave energy, this work contributes to the development of sustainable technologies that can potentially revolutionize underwater operations. The use of renewable energy sources minimizes environmental impact and reduces reliance on traditional power sources. Throughout this research, challenges were encountered, including optimizing the turbine system efficiency, ensuring reliable power transfer, and maintaining the structural integrity of the submarine. These challenges were addressed through careful design considerations and iterative improvements. The knowledge gained from this study can be applied to various underwater applications such as marine exploration, environmental monitoring, and data collection. Future research and development should focus on enhancing the turbine design, integrating advanced power management systems, and conducting field tests to validate the system's performance in real-world-scenarios.
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