首页> 外文会议>American Society of Mechanical Engineers(ASME) Turbo Expo vol.5 pt.B; 20040614-17; Vienna(AT) >ON THE FEASIBILITY OF NUCLEAR VERSUS COMBUSTION GAS TURBINE PROPULSION FOR HIGH-SPEED CARGO SHIPS
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ON THE FEASIBILITY OF NUCLEAR VERSUS COMBUSTION GAS TURBINE PROPULSION FOR HIGH-SPEED CARGO SHIPS

机译:高速货运船用核对燃气轮机推进的可行性研究

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This paper presents the outcome of a study on the feasibility of a nuclear powered High-Speed Pentamaran, initiated by Nigel Gee and Associates and the Delft University of Technology. It explores the competitiveness of a nuclear power plant for the critical characteristics of a marine propulsion plant. Three nuclear reactor types are selected: the Pressurized Water Reactor (PWR), the Pebble-bed and Prismatic-block HTGR. Their characteristics are estimated for a power range from 100 MWth to 1000 MWth in a parametric design, providing a level base for comparison with conventional gas turbine technology. The reactor scaling is based on reference reactors with an emphasis on marine application. This implies that preference is given to passive safely and simplicity, as they are key-factors for a marine power plant. A case study for a 60-knot Pentamaran shows the impact of a nuclear power plant on a ship designed with combustion gas turbine propulsion. The Prismatic-block HTGR is chosen as most suitable because of its low weight compared to the PWR, in spite of the proven technology of a PWR. The Pebble-bed HTGR is considered too voluminous for High-Speed craft. Conservative data and priority to simple systems and high safety leads to an unfavorable high weight of the nuclear plant in competition with the original gas turbine driven Pentamaran. The nuclear powered ship has some clear advantages at high sailing ranges.
机译:本文介绍了由Nigel Gee and Associates和代尔夫特理工大学发起的有关核动力高速Pentamaran可行性研究的结果。它探讨了核动力装置在船舶推进装置关键特性方面的竞争力。选择了三种核反应堆类型:压水堆(PWR),卵石床和棱柱形HTGR。在参数设计中,估计其功率范围为100 MWth至1000 MWth的特性,为与常规燃气轮机技术进行比较提供了一个水平基础。反应堆规模基于参考堆,重点是海洋应用。这意味着优先考虑被动安全和简单,因为它们是海洋电厂的关键因素。对一个60结的Pentamaran进行的案例研究表明,核电站对设计有燃气涡轮推进器的船舶的影响。尽管具有压水堆的成熟技术,但棱镜块HTGR的重量比压水堆低,因此被选为最合适。卵石床HTGR被认为对于高速航行器来说过于庞大。保守的数据以及对简单系统和高安全性的重视导致与原始燃气轮机驱动的Pentamaran竞争时,核电站的重量过高。核动力船在高航程方面具有明显的优势。

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