HVDC submarine power cable systems-state of the art and future developments

D. Valenza, G. Cipollini
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引用次数: 12

Abstract

The paper begins with an introduction on the reasons that lead to the use of HVDC submarine cable links. The main aspects for the choice of direct current are presented as well as the advantages deriving from the utilization of submarine cables. The second part is dedicated to a discussion on the various type of insulation that could be used in power cables and their possible application to HVDC submarine cables. There is a description of the main characteristics and technical details of two projects. The first is Spain-Morocco link, a 26 km long interconnection for the transmission, in a first phase, of 700 MW from Spain to Morocco at 400 kV AC by means of three cables, plus one spare, of the fluid filled type. The cables are designed for a future change to 450 kV DC, allowing a transmission of 500 MW each (i.e. 2 GW total). One of the peculiarities of the link is the maximum water depth of 615 m (world record for submarine power cables at the time of installation). The second is the Italy-Greece link, a 160 km long interconnection for the transmission of 500 MW (bi-directional) by means of one paper insulated mass impregnated cable having 1250 mm/sup 2/ conductor size and insulated for a rated voltage of 400 kV. This link will attain the world record for the maximum water depth for submarine power cables: 1000 m. The last part deals with the future development expected in this field, in terms of conductor size and voltage leading to an increase in transmissible capacity.
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高压直流海底电力电缆系统的现状和未来发展
本文首先介绍了采用高压直流海底电缆链路的原因。介绍了选用直流电的主要方面以及采用海底电缆的优点。第二部分专门讨论可用于电力电缆的各种类型的绝缘及其在高压直流海底电缆中的可能应用。介绍了两个项目的主要特点和技术细节。第一个是西班牙-摩洛哥线路,这是一条26公里长的互联网络,用于在第一阶段从西班牙到摩洛哥以400千伏交流电传输700兆瓦的电力,通过三条电缆和一条备用的充液型电缆。这些电缆是为将来转换为450千伏直流电而设计的,每根电缆可传输500兆瓦(即总计2吉瓦)。该线路的特点之一是最大水深为615米(安装时海底电力电缆的世界纪录)。第二个是意大利-希腊线路,这是一条长达160公里的互连,用于传输500兆瓦(双向),采用一根纸绝缘质量浸渍电缆,其导体尺寸为1250毫米/sup 2/,额定电压为400千伏。这条线路将达到海底电力电缆最大水深1000米的世界纪录。最后一部分讨论了该领域未来的发展预期,从导体尺寸和电压的角度来提高传输容量。
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