SJT Class ROUV
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SJT Class ROUV
SJT-class ROUVs are a series of Chinese remotely operated underwater vehicles (ROUVs) jointly developed by the Shenyang Institute of Automation of the Chinese Academy of Science and the Institute of Underwater Engineering of Shanghai Jiao Tong University (SHJTU). The general designer of the SJT-class of ROUVs is Zhu Jimao (), a professor at SHJTU, who also was the general designer of the earlier Type 7103 DSRV. Many more ROUVs have been developed after the SJT series, based on experience gained from this series. HR-01 ROUV The origin of SJT-class ROUV begins with HR-01 (), one of the first indigenously developed ROUVs. Work began in 1982 and was completed in winter 1985, entering service the following year. In 1989, it won 2nd place in the Science and Technology Advance Award of the Chinese Academy of Science. Based on experience gained from HR-01, the three subsequent SJT-class ROUVs were jointly developed with a Canadian company from 1985 through June 1987. Specifications: *We ...
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Remotely Operated Underwater Vehicle
A remotely operated underwater vehicle (technically ROUV or just ROV) is a tethered underwater mobile device, commonly called ''underwater robot''. Definition This meaning is different from remote control vehicles operating on land or in the air. ROVs are unoccupied, usually highly maneuverable, and operated by a crew either aboard a vessel/floating platform or on proximate land. They are common in deepwater industries such as offshore hydrocarbon extraction. They are linked to a host ship by a neutrally buoyant tether or, often when working in rough conditions or in deeper water, a load-carrying umbilical cable is used along with a tether management system (TMS). The TMS is either a garage-like device which contains the ROV during lowering through the splash zone or, on larger work-class ROVs, a separate assembly which sits on top of the ROV. The purpose of the TMS is to lengthen and shorten the tether so the effect of cable drag where there are underwater currents is minimize ...
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