共查询到18条相似文献,搜索用时 296 毫秒
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总结了目前船用分立制氧、制氮系统和氧、氮提纯系统的不足之处,得出开发常温空分氧氮一体化联合分离系统的必要性。在此基础上,探讨了常温空分氧氮一体化联合分离系统的总体设计,构建了一种基于常温空分的联合制氧、制氮的创新系统方案,即以变压吸附技术与膜分离技术耦合的工艺技术对空气组分进行分离,仅以空气为原料,无需任何辅料,在仅消耗电力资源的情况下同时获取氧气和氮气。最后指出了常温空分氧氮一体化联合分离系统的发展趋势和应用范围。 相似文献
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变压吸附式制氮系统(PSA)作为惰性气体系统在油船、化学品船、LPG船等液货船的防爆系统中占有重要的地位.在介绍变压吸附制氮系统工作原理及具体应用的基础上,提出了PSA系统设计时在选型、性能、运行和控制、环境适应性以及管线布置等方面的原则要求,同时详细说明了对PSA系统在出厂、装船检验的检查要点,以保证船舶的作业安全. 相似文献
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制氮技术在船舶领域的应用 总被引:1,自引:0,他引:1
讨论目前船舶和海洋石油平台中使用的典型氮气制取技术,列举了深冷空分、燃烧分离、分子筛分离和气体膜分离等四种方法,并对各种方法的优缺点和使用场合进行了比较。 相似文献
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为保障电力系统供电的生命力,一般舰船都设有两个电站或多个电站,向全船负载供电。通过对电力系统冗余设计、电气设备布置、损害管制设计进行了研究与分析。从而得出结论:多电站供电网络是冗余设计的结果,实际运行不需要环网供电。 相似文献
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针对舰船电站设备出现典型故障的情况进行了全面的分析,为确保供电连续性和安全性,提高舰船电力系统生命力,提出了发生故障时电站运行的控制策略. 相似文献
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《舰船科学技术》2016,(6):52-56
Pointing at naval ship projects creation and evaluation at stage of naval ship concept design,in the mechanism of integrated design based on naval ship synthesis model, ship projects creation and intelligent fuzzy evaluation method is researched, thus the applicability of each algorithm is obtained. Firstly,the naval ship synthesis model is introduced to design process, value and application status of synthesis model in integrated design is then exposed. Then the applicability of single target and multi targets SA algorithm is improved, and the quick generation of naval ship projects is done. After that, multiple projects evaluation method based on Vague fuzzy set is introduced to established the intelligent evaluation model, which can integrate effectively the quantitative and qualitative indexes. At last, the analysis of results comparison shows the advancement and rationality of each method. The example shows the integrated design process researched in this paper can be a great orientation of naval ship project design, and can also be used in other parts of naval ship development. 相似文献
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《舰船科学技术》2016,(11)
Pointing at naval ship projects creation and evaluation at stage of naval ship concept design,in the mechanism of integrated design based on naval ship synthesis model,ship projects creation and intelligent fuzzy evaluation method is researched,thus the applicability of each algorithm is obtained.Firstly,the naval ship synthesis model is introduced to design process,value and application status of synthesis model in integrated design is then exposed.Then the applicability of single target and multi targets SA algorithm is improved,and the quick generation of naval ship projects is done.After that,multiple projects evaluation method based on Vague fuzzy set is introduced to established the intelligent evaluation model,which can integrate effectively the quantitative and qualitative indexes.At last,the analysis of results comparison shows the advancement and rationality of each method.The example shows the integrated design process researched in this paper can be a great orientation of naval ship project design,and can also be used in other parts of naval ship development. 相似文献
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核动力舰船生物屏蔽技术 总被引:2,自引:1,他引:1
核动力舰船生物屏蔽不同陆上核动力装置生物屏蔽,其重量、体积受到极大限制,屏蔽空间也极度不规则。如何设计出经济上合理、技术上可行、体积小、重量轻、相对性能最佳的生物屏蔽,是一项复杂的系统工程。本文概述了核动力舰船生物屏蔽设技术的特点和要求;总结了核动力舰船生物屏蔽设计的一般方法、设计流程和生物屏蔽材料研制及应用情况;提出了将点核积分法同蒙特卡罗方法相结合的核动力舰船生物屏蔽设计方法,可为核动力舰船生物屏蔽设计提供参考。 相似文献