期刊文献+

安静型潜艇的AIP动力系统及其废气管理 被引量:5

Non air-breathing power and its exhaust system of submarines
下载PDF
导出
摘要 介绍了常规动力潜艇推进系统及不依赖于空气的动力系统 (AIP) ,比较了闭式循环柴油机、斯特林发动机、闭式蒸汽轮机装置以及燃料电池等 4种基本AIP系统各自的特点 ,分析了自主式水下动力系统废气排放对潜艇性能 ,尤其是隐蔽性的影响 ,最后阐述了AIP系统废气的吸收。 Air independent propulsion has enjoyed many concerns due to its high a utonomy and low noise. The autonomous power system of non-nuclear-fueled submari ne is introduced in this paper. Four basic AIP are compared, and exhaust systems and their effects on submarine performance are discussed.
出处 《舰船科学技术》 北大核心 2004年第5期22-26,共5页 Ship Science and Technology
关键词 不依赖于空气的动力系统AIP 废气管理 水下动力 AIP (Air Independent Propulsion/Power) exhaust gas treatment and mana gement underwater engine
  • 相关文献

参考文献16

  • 1WHITMAN EDWARD C. Defense conversion in marine technology[J]. Sea Technology,1994,35(11): 4.
  • 2HEWITT J S. AMPS 1.5 MW low-pressure compact reactor[J]. Nuclear Engineering and Design,1988,109(1-2):9-10; 135-140.
  • 3STERZENBACH M. Offshore intervention submarines advanced and economic submersible support vessels[J]. Journal of the Society for Underwater Technology , 1989,15(3): 9-14.
  • 4KERROS P., INIZAN C., GROUSSET D. MESMA AIP system for submarines. Oceans Conference Record (IEEE) 3, Brest, France, 1994,9(13-16): 457-466.
  • 5HOWALDTSWERKE-DEUTSCHE WERFT AG. First fuel cell submarine christened at HDW. Fuel Cells Bulletin (44), 2002(5): 7-8.
  • 6HUTCHINSON R. War beneath the waves from 1776 to the present day-world-wide inventory of active diesels. Jane's submarines, 2001: 1.
  • 7NILSSON HERBERT. Air independent power systems for autonomous submarines. Oceans, New York, 1985: 42-55.
  • 8ANGELA PSOMA, GUNTER SATTLER. Fuel cell systems for submarines: from the first idea to serial production. Journal of Power Sources (106), 2002: 381-383.
  • 9KAREN WINZOSKI. Under the ice: Canada and air independent propulsion. Proceedings of the 2nd Annual Military and Strategic Studies Colloquium. University of Calgary, 2000.3.2414.
  • 10RICHARD SCOTT. Boosting the staying power of the non-nuclear submarine Air-independent propulsion system options are maturing[J]. Jane's International Defense Review , 1999,32(11): 41-50.

二级参考文献10

  • 1[1]McCormick,M.E.,Bhattacharyya R..Drag reduction of a submersible hull by electrolysis.Naval Eng.J,1973,85(2):11-16.
  • 2[2]Madavan N.K.,Deutsch S.,Merkle C.L..Reduction of turbulent skin friction in microbubbles.Phys.Fluids,1984,27:356-363.
  • 3[3]V.G.Bogdevich, A.R.Evseev,Malyuga AG et al.Gas saturation effect on near-wall turbulence characteristics.2nd International Conference on Drag Reduction,Cambridge.BHRA,1977:25-37.
  • 4[6]Grewe P.R.,Eddington W.J..The hovercraft-a new conception marine transport.Quart.Trans.Rov.Inst.of Naval Arch.,1960,112(3).
  • 5[7]Madavan N.K.,Merkel C.L.,Deutsch S.. Numerical investigations into the mechanisms of microbubble drag reduction.J.Fluids Eng,1985,107:370-377.
  • 6[9]H.H.Legner.A simple model for gas bubble drag reduction,Phys.Fluids,1984,27(12):2788-2790.
  • 7[11]Yoshida Y.,Takahashi Y.et al.Reduction of skin friction by microbubbles and its relation with near-wall bubble concentration in a channel.J.of Marine Science and Technology,1997,2:1-11.
  • 8[13]Guin M.M.,Kato H.et al.Simple Lagrangian formulation of bubbly flow in a turbulent boundary layer.J.of Marine Science and Technology,1996,1:241-254.
  • 9[14]Akihiro K.,Hideaki M.Direct numerical simulation of wall turbulent flows with microbubbles.Int.J.Numer.Meth.Fluids,2001,35:593-615.
  • 10[15]Robert Latorre.Ship hull drag reduction using bottom air injection.Ocean Engng,1997,24(2):161-175.

共引文献17

同被引文献14

引证文献5

二级引证文献10

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部