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Autonomous underwater vehicles and sensors powered by ocean thermal energy

机译:海洋热能为动力的无人水下航行器和传感器

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This paper will describe a compact energy generation and storage system to harvest temperature differentials in the ocean. This is a unique power source underwater in the absence of solar and wave energy. The current state-of-the-art autonomous underwater vehicles and sensors are mostly powered by primary battery, and therefore have limited capacity and lifetime. Harvesting the ocean thermal energy associated with vertical temperature differentials between the warm surface and cold deep water has the potential to power these autonomous underwater vehicles and sensors indefinitely. Results from the development, deployment and recovery of a prototype thermal recharging underwater float (known as SOLO-TREC) in the ocean will be presented. With eight hours energy harvesting and sampling interval, SOLO-TREC has made more than a thousand dives between the ocean surface and 500 meters water depth over a period of 1.5 years. Recent progress to commercialize this thermal recharging technology in support of several climate and oceanographic initiatives will be presented. Future applications of this thermal energy harvesting technology to power autonomous underwater vehicles such as gliders and propeller-driven AUVs will also be discussed.
机译:本文将描述一种紧凑的能量产生和存储系统,以收集海洋中的温差。在没有太阳能和波浪能的情况下,这是水下独特的能源。当前最先进的自主水下航行器和传感器主要由一次电池供电,因此容量和使用寿命有限。收集与温暖的表面和冷的深水之间的垂直温度差相关的海洋热能,有可能无限期地为这些自主的水下航行器和传感器提供动力。将介绍海洋中的热能补给水下浮标(称为SOLO-TREC)原型的开发,部署和回收结果。 SOLO-TREC拥有八小时的能量采集和采样间隔,在1.5年的时间里已经在海面和500米水深之间进行了1000多次潜水。将介绍在一些气候和海洋学计划的支持下,将这种热补给技术商业化的最新进展。还将讨论这种热能收集技术在为自主水下机器人(例如滑翔机和螺旋桨驱动的AUV)提供动力方面的未来应用。

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