极地探险水下航行器的发展与挑战

Jiancheng Yu, Aiqun Zhang, Zhigang Li, Kuichen Yan
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引用次数: 8

摘要

水下航行器在极地考察中的应用可以显著提高探测效率、成本效益和时空密度。现有技术足以开发先进的水下航行器用于极地考察。近十年来,世界各国在研制极地考察用水下航行器方面做了大量工作。本文首先详细介绍了极地考察中水下航行器的作用和必要性。其次,综述了世界各国极地潜航器的发展和应用情况,重点介绍了中国极地潜航器的发展情况。世界各国科学家对水下航行器技术进行了科学研究,设计了许多用于极地考察的专用水下航行器。详细描述了由SIA(中国沈阳自动化研究所)开发的远程操作车辆SeaPole。这个水下航行器在中国第二次北极考察(从2003年7月15日到9月26日)期间被使用。许多以前从未获得过的重要数据都是通过使用该车辆获得的。第三,论述了极地探险专用水下航行器的发展趋势。本文提出了一种用于极地考察的新型水下航行器——arv,阐述了其概念设计和若干关键参数。最后,本文阐述了极地考察对水下航行器的要求,并讨论了极地对水下航行器的特殊挑战,包括高纬度导航定位、低温、冰雪覆盖的非结构化海洋环境和危险海洋环境等。这些挑战需要水下航行器技术的新进步,从而能够开发出更实用、更可靠的极地探险水下航行器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The development and the challenges of underwater vehicles for polar expedition
The application of underwater vehicles for polar expedition can result in significant improvements in efficiency, cost-effective, and spatial and temporal density of exploration. Existing technology is adequate to develop advanced underwater vehicles for utilization in polar expedition. Great efforts have been made in developing underwater vehicles using for polar expedition over the world in the last decade. Firstly, this paper describes the actions and necessaries of underwater vehicles for polar expedition in detail. Secondly, this paper surveys the development and applications of underwater vehicles for polar expedition over the world, and presents those in China in particular. The scientists over the world have carried out the scientific research on the underwater vehicles technologies and designed many special underwater vehicles used for polar expedition. SeaPole, a remotely operated vehicle, developed by SIA (Shenyang Institute of Automation, China), is described in detail. This underwater vehicle was used during the China Second Arctic Expedition (from July 15 to September 26, 2003). Many important data, which have not ever been acquired before, are acquired by using this vehicle. Thirdly, this paper discusses the trends of the special underwater vehicles for polar expedition. ARVs, a new type of underwater vehicle, is proposed for polar expedition by SIA, and its concept design and some essential parameters are expressed in this paper. Finally, this paper describes the requirements of polar expedition to underwater vehicles and discusses the special challenges of Polar Regions for underwater vehicles, which include the high-latitude navigation and positioning, low temperatures, ice-covered unstructured and hazardous ocean environment, and so on. These challenges need new advancement in underwater vehicles technologies that can enable the development of more practical, reliable underwater vehicles for polar expedition.
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