《中国舰船研究》2020年第2期目录

《中国舰船研究》编辑部

《中国舰船研究》编辑部. 《中国舰船研究》2020年第2期目录[J]. 中国舰船研究, 2020, 15(2).
引用本文: 《中国舰船研究》编辑部. 《中国舰船研究》2020年第2期目录[J]. 中国舰船研究, 2020, 15(2).
Chinese Journal of Ship Research. Contens of CJSR 2020, Vol.15, No.2[J]. Chinese Journal of Ship Research, 2020, 15(2).
Citation: Chinese Journal of Ship Research. Contens of CJSR 2020, Vol.15, No.2[J]. Chinese Journal of Ship Research, 2020, 15(2).

《中国舰船研究》2020年第2期目录

Contens of CJSR 2020, Vol.15, No.2

知识共享许可协议
《中国舰船研究》2020年第2期目录《中国舰船研究》编辑部,采用知识共享署名4.0国际许可协议进行许可。
  • 摘要: 计及流体影响的船舶回转冰阻力数值模拟…倪宝玉,黄其,陈绾绶,薛彦卓(1)十字形和X形艉舵航行体的水动力特性对比…陈纪军,潘子英,彭超,夏贤,邱耿耀,李永成(8)波浪增阻计算方法在船型综合优化设计中的应用…孟巧,曲媛,陈玲(17)基于船舶破损安全性的舱室优化方法…边金宁,陈淼,韩涛(23)频选天线罩对阵列天线波束扫描特性影响分析…莫熠,奚秀娟,陈亮,吴为军,王冬冬(31)一种基于有源频率选择表面的可调吸波体特性分析…曾宪亮,张麟兮,万国宾(36)基于CFD的风洞及循环水槽设计系统程序开发…蒋望梁,陈作钢(42)基于视野锥的维修可视性分析方法改进…何春华,方舟,李阳,易朋兴(49)艉部新型球面舱壁结构强度及稳定性分析…侯磊(56)基于改进梯度提升决策树—蒙特卡罗法的超大型集装箱船绑扎桥可靠性分析…李放,王德禹(63)悬挂式铝合金整体壁板压杆的稳定性校核方法…吴剑国,章艺超,张平,陈海涛(70)LNG加注船C型舱优化方案设计…陈兴,叶超,奉宁琛(76)计及日照温差作用的坐坞舰船结构响应分析…李陈峰,王庭策,唐涛,张志超,任慧龙,周学谦(82)舰船加筋板结构的圆孔形穿甲损伤识别方法…吴昊,刘维勤,胡雨晨(88)大尺度高速水下无人艇控制系统设计与试验验证…王文晋,王冠学,李奔,徐国华(95)动力定位船舶全回转推进器工作区优化…尚留宾,王威,刘志华(104)水面无人艇领航—跟随固定时间编队控制…李贺,王宁,薛皓原(111)间歇通信环境下的船舶编队控制…刘睿,于双和,尹广帅(119)基于实时小波变换的燃料电池混合动力船舶能量管理策略…张泽辉,陈辉,高海波,管聪(127)潜艇X舵控制分配器设计和仿真…商建朋,李文魁,黄跃鹏(137)基于有限元法的喷水推进轴系回旋振动分析…马召召,周瑞平,刘琪,范君浩,胡云飞(143)基于小波理论的舰船IMU加速度计信号处理算法…徐博,刘斌,刘德政,崔耀虎,邓伟(151)大洋勘探船岩芯储存库内温度场的数值模拟…郭月姣,吴毅昊,马双,陈旭,孟博,雷淑雅,石大川,冯国增(159)
    Abstract: Numerical simulation of ice resistance of ship turning in level ice zone considering fluid effects…NI Baoyu, HUANG Qi, CHEN Wanshou, et al(1)Comparison of hydrodynamic characteristics of SUBOFF with cruciform and X-form rudder arrangement…CHEN Jijun, PAN Ziying, PENG Chao, et al(8)Application of wave added resistance calculation method in comprehensive optimization design of ship hull form…MENG Qiao, QU Yuan, CHEN Ling(17)Cabin optimization method based on damaged ship safety…BIAN Jinning, CHEN Miao, HAN Tao(23)Analysis of influence of FSS radome on array antenna scanning…MO Yi, XI Xiujuan, CHEN Liang, et al(31)Performance analysis of a tunable absorber based on active frequency selective surface…ZENG Xianliang, ZHANG Linxi, WAN Guobin(36)Development of CFD-based design program for wind tunnel and circulating water channel…JIANG Wangliang, CHEN Zuogang(42)Improvement of maintenance visibility analysis method based on human visual field cone…HE Chunhua, FANG Zhou, LI Yang, et al(49)Strength and stability analysis of new spherical bulkhead structure at stern…HOU Lei(56)Reliability analysis of lashing bridge of ultra-large container ship based on improved gradient boosting decision tree-Monte Carlo method…LI Fang, WANG Deyu(63)Stability checking method of pressure bars for suspended aluminum alloy single-piece bulkhead…WU Jianguo, ZHANG Yichao, ZHANG Ping, et al(70)Optimization scheme design for type C tank of LNG bunker vessel…CHEN Xing, YE Chao, FENG Ningchen(76)Structural response analysis of docking naval ship accounting for temperature variation due to sunshine…LI Chenfeng, WANG Tingce, TANG Tao, et al(82)Recognition method for stiffened plate structures of ship with round hole shaped armor piercing damage…WU Hao, LIU Weiqin, HU Yuchen(88)Control system design and experiment for large-scale high-speed unmanned underwater vehicle…WANG Wenjin, WANG Guanxue, LI Ben, et al(95)Workspace optimization of azimuth thrusters applied by dynamic positioning…SHANG Liubin, WANG Wei, LIU Zhihua(104)Leader-follower fixed-time formation control of unmanned surface vehicles…LI He, WANG Ning, XUE Haoyuan(111)Formation control of vessels with intermittent communication…LIU Rui, YU Shuanghe, YIN Guangshuai(119)Energy management strategies for fuel cell hybrid ships based on real-time wavelet transform…ZHANG Zehui, CHEN Hui, GAO Haibo, et al(127)Design and simulation of X-rudder control allocator for Submarine…SHANG Jianpeng, LI Wenkui, HUANG Yuepeng(137)Analysis on whirling vibration of waterjet propulsion shafting based on finite element method…MA Zhaozhao, ZHOU Ruiping, LIU Qi, et al(143)Signal processing algorithm of ship IMU accelerometer based on wavelet theory…XU Bo, LIU Bin, LIU Dezheng, et al(151)Numerical simulation of temperature field in core storage of ocean exploration vessel…GUO Yuejiao, WU Yihao, MA Shuang, et al(159)
  • [1] 倪宝玉, 黄其, 陈绾绶, 等. 计及流体影响的船舶回转冰阻力数值模拟[J]. 中国舰船研究, 2020, 15(2):1-7. NI B Y, HUANG Q, CHEN W S, et al. Numerical simulation of ice resistance of ship turning in level ice zone considering fluid effects[J]. Chinese Journal of Ship Research, 2020, 15(2):1-7.
    [2] 陈纪军, 潘子英, 彭超, 等. 十字形和 X 形艉舵航行体的水动力特性对比[J]. 中国舰船研究, 2020, 15(2):8-16. CHEN J J, PAN Z Y, PENG C, et al. Comparison of hydrodynamic characteristics of SUBOFF with cruciform and Xform rudder arrangement[J]. Chinese Journal of Ship Research, 2020, 15(2):8-16.
    [3] 孟巧, 曲媛, 陈玲. 波浪增阻计算方法在船型综合优化设计中的应用[J]. 中国舰船研究, 2020, 15(2):17-22. MENG Q, QU Y, CHEN L. Application of wave added resistance calculation method in comprehensive optimization design of ship hull form[J]. Chinese Journal of Ship Research, 2020, 15(2):17-22.
    [4] 边金宁, 陈淼, 韩涛. 基于船舶破损安全性的舱室优化方法[J]. 中国舰船研究, 2020, 15(2):23-30. BIAN J L, CHEN M, HAN T. Cabin optimization method based on damaged ship safety[J]. Chinese Journal of Ship Research, 2020, 15(2):23-30.
    [5] 莫熠, 奚秀娟, 陈亮, 等. 频选天线罩对阵列天线波束扫描特性影响分析[J]. 中国舰船研究, 2020, 15(2):31-35. MO Y, XI X J, CHEN L, et al. Analysis of influence of FSS radome on array antenna scanning[J]. Chinese Journal of Ship Research, 2020, 15(2):31-35.
    [6] 曾宪亮, 张麟兮, 万国宾. 一种基于有源频率选择表面的可调吸波体特性分析[J]. 中国舰船研究, 2020, 15(2):36-41. ZENG X L, ZHANG L X, WAN G B. Performance analysis of a tunable absorber based on active frequency selective surface[J]. Chinese Journal of Ship Research, 2020, 15(2):36-41.
    [7] 蒋望梁, 陈作钢. 基于 CFD 的风洞及循环水槽设计系统程序开发[J]. 中国舰船研究, 2020, 15(2):42-48. JIANG W L, CHEN Z G. Development of CFD-based design program for wind tunnel and circulating water channel[J]. Chinese Journal of Ship Research, 2020, 15(2):42-48.
    [8] 何春华, 方舟, 李阳, 等. 基于视野锥的维修可视性分析方法改进[J]. 中国舰船研究, 2020, 15(2):49-55. HE C H, FANG Z, LI Y, et al. Improvement of maintenance visibility analysis method based on human visual field cone[J]. Chinese Journal of Ship Research, 2020, 15(2):49-55.
    [9] 侯磊. 艉部新型球面舱壁结构强度及稳定性分析[J]. 中国舰船研究, 2020, 15(2):56-62. HOU L. Strength and stability analysis of new spherical bulkhead structure at stern[J]. Chinese Journal of Ship Research, 2020, 15(2):56-62.
    [10] 李放, 王德禹. 基于改进梯度提升决策树-蒙特卡罗法的超大型集装箱船绑扎桥可靠性分析[J]. 中国舰船研究, 2020, 15(2):63-69. LI F, WANG D Y. Reliability analysis of lashing bridge of ultra-large container ship based on improved gradient boosting decision tree-Monte Carlo method[J]. Chinese Journal of Ship Research, 2020, 15(2):63-69.
    [11] 吴剑国, 章艺超, 张平, 等. 悬挂式铝合金整体壁板压杆的稳定性校核方法[J]. 中国舰船研究, 2020, 15(2):70-75, 87. WU J G, ZHANG Y C, ZHANG P, et al. Stability checking method of pressure bars for suspended aluminum alloy singlepiece bulkhead[J]. Chinese Journal of Ship Research, 2020, 15(2):70-75, 87.
    [12] 陈兴, 叶超, 奉宁琛. LNG加注船C型舱优化方案设计[J]. 中国舰船研究, 2020, 15(2):76-81. CHEN X, YE C, FENG N C. Optimization scheme design for type C tank of LNG bunker vessel[J]. Chinese Journal of Ship Research, 2020, 15(2):76-81.
    [13] 李陈峰, 王庭策, 唐涛, 等. 计及日照温差作用的坐坞舰船结构响应分析[J]. 中国舰船研究, 2020, 15(2):82-87. LI C F, WANG T C, TANG T, et al. Structural response analysis of docking naval ship accounting for temperature variation due to sunshine[J]. Chinese Journal of Ship Research, 2020, 15(2):82-87.
    [14] 吴昊, 刘维勤, 胡雨晨. 舰船加筋板结构的圆孔形穿甲损伤识别方法[J]. 中国舰船研究, 2020, 15(2):88-94. WU H, LIU W Q, HU Y C. Recognition method for stiffened plate structures of ship with round hole shaped armor piercing damage[J]. Chinese Journal of Ship Research, 2020, 15(2):88-94.
    [15] 王文晋, 王冠学, 李奔, 等. 大尺度高速水下无人艇控制系统设计与试验验证[J]. 中国舰船研究, 2020, 15(2):95-103. WANG W J, WANG G X, LI B, et al. Control system design and experiment for large-scale high-speed unmanned underwater vehicle[J]. Chinese Journal of Ship Research, 2020, 15(2):95-103.
    [16] 尚留宾, 王威, 刘志华. 动力定位船舶全回转推进器工作区优化[J]. 中国舰船研究, 2020, 15(2):104-110. SHANG L B, WANG W, LIU Z H. Workspace optimization of azimuth thrusters applied by dynamic positioning[J]. Chinese Journal of Ship Research, 2020, 15(2):104-110.
    [17] 李贺, 王宁, 薛皓原. 水面无人艇领航-跟随固定时间编队控制[J]. 中国舰船研究, 2020, 15(2):111-118. LI H, WANG N, XUE H Y. Leader-follower fixed-time formation control of unmanned surface vehicles[J]. Chinese Journal of Ship Research, 2020, 15(2):111-118.
    [18] 刘睿, 于双和, 尹广帅. 间歇通信环境下的船舶编队控制[J]. 中国舰船研究, 2020, 15(2):119-126. LIU R, YU S H, YIN G S. Formation control of vessels with intermittent communication[J]. Chinese Journal of Ship Research, 2020, 15(2):119-126.
    [19] 张泽辉, 陈辉, 高海波, 等. 基于实时小波变换的燃料电池混合动力船舶能量管理策略[J]. 中国舰船研究, 2020, 15(2):127-136. ZHANG Z H, CHEN H, GAO H B, et al. Energy management strategies for fuel cell hybrid ships based on real-time wavelet transform[J]. Chinese Journal of Ship Research, 2020, 15(2):127-136.
    [20] 商建朋, 李文魁, 黄跃鹏. 潜艇 X 舵控制分配器设计和仿真[J]. 中国舰船研究, 2020, 15(2):137-142. SHANG J P, LI W K, HUANG Y P. Design and simulation of X-rudder control allocator for Submarine[J]. Chinese Journal of Ship Research, 2020, 15(2):137-142.
    [21] 马召召, 周瑞平, 刘琪, 等. 基于有限元法的喷水推进轴系回旋振动分析[J]. 中国舰船研究, 2020, 15(2):143-150. MA Z Z, ZHOU R P, LIU Q, et al. Analysis on whirling vibration of waterjet propulsion shafting based on finite element method[J]. Chinese Journal of Ship Research, 2020, 15(2):143-150.
    [22] 徐博, 刘斌, 刘德政, 等. 基于小波理论的舰船 IMU 加速度计信号处理算法[J]. 中国舰船研究, 2020, 15(2):151-158, 164. XU B, LIU B, LIU D Z, et al. Signal processing algorithm of ship IMU accelerometer based on wavelet theory[J]. Chinese Journal of Ship Research, 2020, 15(2):151-158, 164.
    [23] 郭月姣, 吴毅昊, 马双, 等. 大洋勘探船岩芯储存库内温度场的数值模拟[J]. 中国舰船研究, 2020, 15(2):159-164. GUO Y J, WU Y H, MA S, et al. Numerical simulation of temperature field in core storage of ocean exploration vessel[J]. Chinese Journal of Ship Research, 2020, 15(2):159-164.
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出版历程
  • 刊出日期:  2020-04-29

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