近期论文
查看导师新发文章
(温馨提示:请注意重名现象,建议点开原文通过作者单位确认)
ORCiD:0000-0003-0689-9064 ; Scopus author ID:8454267500
《船舶在波浪上的运动理论》朱仁传,缪国平,上海交通大学出版社,2019年4月出版,ISBN: 978-7-313-20259-8. 上海交大优秀研究生教材奖。
《船舶原理》第二篇船体阻力,张怀新,朱仁传,上海交通大学出版社,2017年12月出版, ISBN: ISBN 978-7-313-17996-8. 全国首届教材建设奖。
2022
Numerical investigation on evaluating nonlinear waves due to an air cushion vehicle in steady motion by a higher order desingularized boundary integral equation method. Mengxiao Gu , Renchuan Zhu*, Xiangjun Yang , Hui Wang , Kaiyuan Shi,Ocean Engineering, 246(2022): 110598. SCI-A
Numerical investigation on steady wave of high-speed ship with transom stern by potential flow and CFD methods. Hui Wang, Renchuan Zhu, Mengxiao Gu, Xiaofan Gu. Ocean Engineering 247(2022): 110714. SCI-A
A study on hydrodynamic characteristics of a planing hull by CFD simulation and modified M-S method. Hui Wang, Renchuan Zhu, Shan Huang, Le Zha & Mengxiao Gu (2019), Ships and Offshore Structures, DOI:10.1080/17445302.2022.2032995. SCI-B
Simulations of nonlinear waves generated by an Air-Cushion Vehicle. Kaiyuan Shi, Renchuan Zhu*, Mengxiao Gu, Xiaocong Wang. Ocean Engineering 253(2022): 111181. SCI-A
Three alternative boundary integral flow representations for wave diffraction-radiation by offshore structures. Jiayi He, Chen-Jun Yang, Ren-Chuan Zhu, Francis Noblesse. Ocean Engineering, 257(2022): 111609. SCI-A
An alternative linear flow model and boundary integral flow representation for ship motions in regular waves. Jiayi He, Ren-Chuan Zhu, FrancisNoblesse. European Journal of Mechanics/B Fluids, 94 (2022): 190-199. SCI-B
Fourier–Chebyshev approximation of Kochin functions in the Fourier–Kochin approach to panel methods Three alternative boundary integral flow representations for wave diffraction-radiation by offshore structures. Jiayi He, Chen-Jun Yang, Ren-Chuan Zhu, Francis Noblesse. Ocean Engineering, 258(2022): 111761. SCI-A
Study on HOBEM Based on Analytical Panel Integrals Related to Translating-Pulsating Source for Hydrodynamic Responses of Vessels Sailing in Waves, YANG Yun-tao, ZHU Ren-chuan, LI Yu-long, China Ocean Eng., 2022, 36(3): 348–362. DOI: https://doi.org/10.1007/s13344 -022-0031-x, SCI-B
Implementation of a velocity decomposition method coupled with volume-of-fluid method for simulating free-surface flows. J. Zhao, R.C. Zhu, W.J. Zhou. Ocean Engineering, 263(2022): 112339. SCI-A
波浪上船体与液舱晃荡耦合的非线性时域模拟, 李超凡,朱仁传, 周文俊, 哈尔滨工程大学学报, 2022, 43(2):188-195. EI
重大件货物海上运输的惯性力分析,杨红莹, 朱仁传, 杨云涛, 俞赟,哈尔滨工程大学学报,2022,43(3):325-332. EI
波浪中航行船舶水动力和运动分析的Rankine 源高阶面元法研究,杨云涛,朱仁传,高慧,中国造船.2022.63(1):14-27. EI-C
基于一种新数学模型的滑行艇阻力研究(英文),王慧,朱仁传,查乐,黄山,顾孟潇. 2022, 26(06):775-791. EI-C
基于重叠网格的全垫升气垫船垫升运动计算研究,杨祥俊; 诸葛凌波; 顾孟潇; 朱仁传,中国造船.2022. 63(2). EI-C
船舶耐波性近期研究进展与若干评述. 朱仁传,徐德康,王慧,石凯元,詹可. 船舶. 2022, 198(3):1-19. DOI:10.19423/j.cnki.31-1561/u. 2022.03.001
2021
Le Zha, Renchuan Zhu*, Liang Hong, Shan Huang. Hull form optimization for reduced calm-water resistance and improved vertical motion performance in irregular head waves. Ocean Engineering 233(2021): 109208. SCI-A
Huiyu Wu, Jiayi He, Ren-Chuan Zhu, Chen-Jun Yang, Francis Noblesse. Practical representation of flows due to general singularity distributions for wave diffraction- radiation by offshore structures in finite water depth. European Journal of Mechanics/B Fluids, Vol. 89 (2021):1-14. SCI-B
Ji Zhao, Renchuan Zhu, Xi Chen, Liang Hong. A velocity decomposition method combining potential and viscous flow for the estimation of submarine’s hydrodynamic coefficients. Ocean Engineering, 200 (2020): 106947. SCI-A. https://doi.org/10.1016/j.oceaneng.2020.108398
基于质量源法的全垫升气垫船兴波模拟研究, 陈熙,朱仁传,顾孟潇,高嵩.哈尔滨工程大学学报,2021, 42(2):166-171. EI
Boundary-integral representation sans waterline integral for flows around ships steadily advancing in calm water Jiayi He, Huiyu Wu, Chen-Jun Yang, Ren-Chuan Zhu, Wei Li, Francis Noblesse∗, European Journal of Mechanics/B Fluids, 89(2021):259-266. SCI-B
Numerical implementation of the Neumann-Michell theory incorporating with the analytical panel integral for ship waves,Le Zha, Renchuan Zhu*, Hui Wang, Shan Huang, Ocean Engineering 236(2021): 109566. SCI-A
基于神经网络的船体剖面水动力机器学习与验证, 孔繁钰,朱仁传,范佘明. 水动力学研究与进展A辑, 2021,36(3):380-387.
Investigation into the direct calculation of added wave resistance of ship in forward motion with reflection ratio correction, Yun Yu; Renchuan Zhu; Dekang Xu; Shan Huang; Liang Hong, Ocean Engineering 239(2021): 109857. SCI-A
Machine Learning to approximate free-surface Green’s function and its application in wave-body interactions, Shan Huang, Renchuan Zhu, Hongyu Chang, Hui Wang, Yun Yu, Engineering Analysis with Boundary Elements. 2021, SCI-B
A semi-analytical pulsating source incorporated with the panel method for wave-body interactions,Shan Huang, Renchuan Zhu, Le Zha, Mengxiao Gu & Hui Wang, Ships and Offshore Structures, 2021, DOI: 10.1080/17445302.2021.1937800, SCI-B
Diffraction–radiation of regular water waves and irregular frequencies: A straightforward flow-modeling approach and analysis, Jiayi He, Huiyu Wu, Chen-Jun Yang, Ren-Chuan Zhu, Wei Li, Francis Noblesse, European Journal of Mechanics/B Fluids, 90(2021):7-14. SCI-B
基于傅里叶伪谱方法的气垫船移动兴波时域模拟,石凯元,朱仁传,顾孟潇,高嵩. 中国造船.2021.62(3):85-193. EI-C
2020
内河滚装船车辆受力直接计算研究, 俞赞,朱仁传,吴彬,陆志妹,杨葆和,中国造船。2020. 62(1): 172-182. EI-C
求解船行波问题的多域边界元法,顾晓帆,朱仁传,査乐,周华伟,中国造船。2020.61(4):1-10. EI-C
基于CFD的滑行艇兴波与姿态模拟分析,王慧,朱仁传,杨云涛,黄山,中国造船。2020.61(3): 1-14. EI-C
Weakly nonlinear ship motion calculation and parametric rolling simulation based on the 3DTGF-HOBEM method To cite this article: Wen-jun Zhou, Renchuan Zhu, Xi Chen & Liang Hong (2019): , Ships and Offshore Structures, DOI: 10.1080/17445302.2019.1708042. SCI-B
Froude–Krylov nonlinear computations of three dimensional wave loads by a hybrid time domain boundary element method Penghao Shan,Yuhan Wang, Fuhua Wang, Jiameng Wu, Renchuan Zhu. Ocean Engineering 195 (2020): 106763. SCI-A
Effects of wave-field nonlinearity on motions of ship advancing in irregular waves using HOS method, Qian Xiao, Wenjun Zhou, Renchuan Zhu, Ocean Engineering, 199 (2020): 106947. SCI-A
Havelock form translating-pulsating panel source Green’s function and its numerical calculation, Shan Huang, Renchuan Zhu, Liang Hong. Ocean Engineering 216 (2020): 107802. SCI-A
Numerical Investigation on the free-surface Green’s function and integral over panel. Hua Jiang, Renchuan Zhu, Qingwei Ma & Shan Huang (2020), Ships and Offshore Structures, DOI: 10.1080/17445302.2020.1718827 SCI-B
基于三维非线性区域分割法的船舶运动时域计算研究,周文俊,朱仁传,陈曦,赵骥,中国造船,2020,61(1):1-17. EI-C
基于高阶谱方法的非线性聚焦波下船体运动的模拟,肖倩,朱仁传,黄山,汪小佳,中国造船,2020,61(1):50-59. EI-C
Numerical Simulation of Ship Roll and Bilge Keel Damping Calculation三维船体横摇运动数值模拟及舭龙骨阻尼特性研究(英文),蒋银,朱仁传,缪国平,范菊,船舶力学, 2020,24(6):706-719. EI-C
四维路径积分法解随机海浪下船舶横摇倾覆概率, 何诚亮,范菊,朱仁传,缪国平,水动力学研究与进展A辑, 2020,35(2):155-163.
Practical flow-representations for arbitrary singularity-distributions in ship and offshore hydrodynamics, with applications to steady ship waves and wave diffraction-radiation by offshore structures. Jiayi He, Huiyu Wu, Ren-Chuan Zhu, Chen-Jun Yang, Francis Noblesse. European Journal of Mechanics/B Fluids, Vol. 83 (2020): 24-41. SCI-B
Why can steep short waves occur at a ship waterline and how to filter them in a practical way? Jiayi He, Huiyu Wu, Chen-Jun Yang, Ren-Chuan Zhu, Francis Noblesse*. European Journal of Mechanics/B Fluids, Vol.83(2020): 164-174. SCI-B
Practical evaluation of flows due to arbitrary singularity distributions in the 3D theory of ship motions in regular waves at τ<1/4. Jiayi He, Huiyu Wu, Ren-Chuan Zhu, Chen-Jun Yang, Francis Noblesse. European Journal of Mechanics/B Fluids, Vol.83(2020): 212-225. SCI-B
2019
An efficient algorithm with new residual functions for the transient free surface green function in infinite depth,Penghao Shan, Yuhan Wang, Fuhua Wang, Jiameng Wu, Renchuan Zhu?, Ocean Engineering, 178 (2019): 435–441. 校SCI-A
A Semi-analytical High-Order Translating-Pulsating Source Method for Forward-Speed Ship Motions,Yuntao Yang, Renchuan Zhu*, Liang Hong, Shan Huang, Ocean Engineering, 182 (2019): 627–644. 校SCI-A
Study on weakly nonlinear motions of ship advancing in waves and influences of steady ship wave,Xi Chen, Ren-chuan Zhu*, Ji Zhao, Wen-jun Zhou, Ju Fan,Ocean Engineering, 150 (2018): 243–257. 校SCI-A
Time-Domain Analysis of Motion Responses of Side-by-Side Vessels During Offshore Installations and Underway Replenishment,Xi Chen, Ren-chuan Zhu, Yun-tao Yang,International Journal of Offshore and Polar Engineering, March 2018, 28(1): 19–30. 校SCI-B
A 3D multi-domain high order boundary element method to evaluate time domain motions and added resistance of ship in waves, Chen Xi, Zhu Ren-chuan*, Zhou Wen-Jun, Zhao Ji,Ocean Engineering, 159 (2018):112-128. 校SCI-A
An investigation on HOBEM in evaluating ship wave of high speed displacement ship,Chen Xi, Zhu Ren-chuan*, Ya-lan Song, Ju Fan, Journal of Hydrodynamics, Ser. B Vol.159 (2018):92-99 SCI
Numerical study on fluid resonance of 3-D multi-bodies by a non-reflection numerical wave tank,Yuntao Yang, Renchuan Zhu?, Xi Chen, Yin Jiang, Applied Ocean Research, Vol.80(2018):166-180. 校SCI-B
Efficient approximation of free-surface Green function and OpenMP parallelization in frequency-domain wave–body interactions, P Shan, R Zhu, F Wang, J Wu. Journal of Marine Science and Technology, 2018 (1):1-11. 校SCI-B
Non-parametric identification of nonlinear damping and restoring forces for ship free roll decay in numerical tank, Yin Jiang, Ren-chuan Zhu, Guo-ping Miao, Ju Fan, Chao Ma,Journal of Marine Science and Technology, 2017,Vol. 25(4): 404-416. SCI
Computations of linear and nonlinear ship waves by higher-order boundary element method,Xi Chen, Renchuan Zhu, Chao Ma, Ju Fan,Ocean Engineering,Vol.114(2016):142–153. 校SCI-A EI
Study on Havelock form translating–pulsating source Green's function distributing on horizontal line segments and its applications,Hong Liang,Zhu Ren-chuan, Miao Guo-ping, Fan Ju,Ocean Engineering,Vol.124(2016): 306–323. 校SCI-A
An investigation into added resistance of vessels advancing in waves, Liang Hong, Ren-chuan Zhu, Guo-ping Miao, Ju Fan,Shuai Li, Ocean Engineering,Vol.123(2016): 238–248. 校SCI-A
Offshore floating wind turbine and its dynamic problems, ZHU Renchuan, Miao Guoping, Fan Ju, Liu Hua,Applied Mathematics and Mechanics, SCI,2016,37(13):1-14.
改进的预报集装箱船波浪增阻的半经验公式,杨春蕾,朱仁传,莫中华,洪亮,缪国平,中国造船,2018,59(1):68-78. EI
Kelvin源求解船行波及其在总阻力估算上的应用,宋雅岚,朱仁传,缪国平,黄庆立,水动力学研究与进展A辑, 2018,Vol.33(1):1-8.
VLCC 油船波浪增阻预报方法的实用修正,杨春蕾,朱仁传,莫中华,洪亮,周文俊,缪国平,海洋工程,2018,Vol.36(3):89-95.
高阶面元法求解非线性船行波问题[J],王新宇,朱仁传,陈曦,等.哈尔滨工程大学学报,2018, 39(2):229- 235. EI
海上浮式风机平台弱非线性耦合动力响应分析,胡天宇,朱仁传,范菊, 哈尔滨工程大学学报,2018, 39(7): 1132-1137.EI
基于三维辐射能量法的船舶波浪增阻计算分析, 洪亮,朱仁传,缪国平,董国祥, 船舶力学, Vol.22(7):807-817. EI
有航速Kramers-Kronig关系及浮体运动的间接时域法,汪小佳,朱仁传,洪亮,中国造船,2018,59(2):9-15. EI
深海浮式风机在波浪上的运动响应分析,陈曦,范菊,朱仁传,缪国平,水动力学研究与进展A辑, 2018,Vol.33(4):409-419.
A Revised Based Method for Predicting Added Waves Resistance on Comparison of Theoretical and Empirical Results for VLCC Hull Forms,YANG Chun-lei, ZHU Ren-chuun, FAN Tuo, ZHOU Wen-jun, MIAO Guo-ping,英文,船舶力学,第22卷第12期
Investigation on Time Domain Motions for Ship and Floating Structure and Coupled with Nonlinear Sloshing,LI Yu-long, ZHU Ren-chuan, TANG Kai, MIAO Guo-ping, YAO Peng, DENG Rui,英文,船舶力学,第22卷第12期
应用混合格林函数法计算波浪中浮体运动及离散参数取值的算例分析,唐恺,朱仁传,缪国平,范菊,陈超,中国造船,2015,Vol.56(1):102-113.EI
液舱晃荡对船舶横摇运动影响的数值研究,洪 亮,朱仁传,缪国平,范 菊,中国造船,2015,Vol.56(1):1-10.EI
一种船桨干扰的粘势流耦合求解方法, 杨春蕾,朱仁传,缪国平,范菊,上海交通大学学报,2014, Vol.48 (12):1795-1801, EI
均匀连续分层流的自由面格林函数,高阳,朱仁传,缪国平,姚志崇,上海交通大学学报,2014,Vol.48(12):1788-1794, EI
Retard function and ship motions with forward speed in time-domain, TANG Kai, ZHU Ren-chuan, MIAO Guo-ping, HONG Liang, Journal of Hydrodynamics, Ser. B, Vol.26(5):689-696. SCI
自由面格林函数分类计算及船海水动力学中的应用,朱仁传,缪国平,洪亮,唐恺,高阳, 水动力学研究与进展A辑, 2014,Vol.29(4):469-478.
Domain decomposition and matching for time-domain Analysis of Motions of Ships advancing in head sea, China Ocean Engineering , 2014,Vol.28(4):433–444. SCI EI
基于CFD的高速船甲板上浪载荷的工程计算方法,龚丞 朱仁传 缪国平 范菊, 船舶力学, Vol.18(5):24-531. EI
顶浪中船舶运动的数值模拟与波浪增阻计算,方昭昭,赵丙乾,朱仁传,中国造船,2014,Vol.55(2):8-17. EI
波浪中浮体运动的时域混合格林函数法, 唐恺,朱仁传,缪国平,范菊,上海交通大学学报,2014,Vol.48(4):508-515, EI
海上浮式风力机及其动力学问题,朱仁传,缪国平, 范菊,刘桦,应用数学和力学,2013,Vol.34(10):1110-1118.
随机海浪下的船舶非线性横摇与安全池研究,柴威, 范菊, 朱仁传, 黄祥鹿, 缪国平,水动力学研究与进展A辑, 2013,Vol.28(4):431-437.
三维频域有航速格林函数的数值计算与分析,洪亮, 朱仁传, 缪国平, 范菊,水动力学研究与进展A辑, 2013,Vol.28(4):423-430.
顶浪中船舶水动力计算与运动模拟研究,方昭昭,赵丙乾,金武雷,朱仁传,中国舰船研究,Vol.8(5):34-41.
Numerical simulation of rolling for 3-D ship with forward speed and nonlinear damping analysis,Chun-lei YANG , Ren-chuan ZHU, Guo-ping MIAO, Ju FAN. Journal of Hydrodynamics, Ser. B, Vol.25(1):148-155. SCI
应用路径积分法求解船舶横摇倾覆概率,柴威,范菊,朱仁传,黄祥鹿,缪国平,上海交通大学学报,2013,Vol. 47(2):317-322+328, EI: 20131416175019
时域分析波浪中浮体运动的时延函数计算研究, 唐恺,朱仁传,缪国平,范菊,上海交通大学学报,2013,Vol. 47(2):300-307, EI: 20131416175016