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Development of a passively pre-tensioned buoyancy engine for fail-safe underwater vehicle operation

机译:开发用于故障安全水下车操作的被动预张力浮力发动机

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This paper develops a systematic method to assess the suitability of buoyancy control systems to different mission profiles, risk acceptance thresholds and environmental sensitivities. We analyse various existing variable buoyancy engines (VBE) for different platforms and mission profiles. Our results identify a capability gap for low-energy seafloor survey platforms such as the Lagrangian imaging float that conduct most of their buoyancy control manoeuvres at depth and rely on end of missions recovery for data extraction. Based on these requirements, we introduce a novel VBE concept that uses the energy mechanically stored in a pre-tensioned spring to passively surface in the event of power loss and reduce power consumption when changing buoyancy at depth. The equations to size the pre-tensioning spring are developed and simulations are performed to demonstrate the reduced power consumption at depth. Unlike safety systems that use drop weights, the pre-tensioned VBE minimises environmental impact by achieving net positive buoyancy without leaving anything behind in the environment.
机译:本文开发了一种系统方法,可以评估浮力控制系统对不同任务概况,风险验收阈值和环境敏感性的适用性。我们分析了不同平台和任务配置文件的各种现有的可变浮力发动机(VBE)。我们的结果确定了低能量海底调查平台的能力差距,如拉格朗日成像浮动,以深入行动其大部分浮力控制演习,并依赖于任务恢复的结束进行数据提取。基于这些要求,我们介绍了一种新颖的VBE概念,该概念使用电力损耗在电力损耗的情况下机械地存储在预张紧弹簧中的能量,并在更换浮力时降低功耗。尺寸的方程被开发并进行仿真,以展示深度的降低的功耗。与使用下降重量的安全系统不同,预张紧的VBE通过实现净积极的浮力来最大限度地减少对环境的影响,而不会在环境中留下任何东西。

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