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)
2023年
[32] Zhang H, Wen B*, Tian X, Wang M, Peng Z. Experimental study on mitigating vibration of floating offshore wind turbine using Tuned Mass Damper. Ocean Engineering. Under review
[31] Chen Z, Tian X, Chen X, Wen B*, Li X. An experimental study of the wire-driven compliant robotic fish, Ocean Engineering. Under review
[30] Li Z, Tian X, Wen B*, Peng Z. Dynamic performance evaluation of variable-speed wind turbine transmission system in non-stationary conditions. Journal of Renewable and Sustainable Energy. Under review
[29] Chen X, Tian X, Wen B*, Jiang Z, Dong Y, Peng Z, Wang Y. Development and Performance Evaluation of a Novel Wind Generation System for the Floating Wind Turbine Model Test. Ocean Engineering. 2023, 270: 113384.
2022年
[28] 朱德政,温斌荣,田新亮*,彭志科,董晔弘,叶小嵘. 基于统一变桨和独立变桨的浮式风力机试验研究. 太阳能学报. 2022. (EI)
[27] 梁泽浩,田新亮,温斌荣*,彭志科,李 欣,武广兴. 面向浮式风机混合模型试验的多通道载荷复现器设计与性能测试. 太阳能学报. 2022. (EI)
[26] 王一,周舒旎,温斌荣*,田新亮,彭志科,等. 漂浮式风机运动抑制方法综述. 中国海洋平台. 2022.
[25] 温斌荣, 田新亮, 彭志科*, 李占伟. 大型漂浮式风电装备耦合动力学研究: 历史, 进展与挑战. 力学进展. 2022. 52(3): 1-78. (封面论文)
[24] Wen B, Jiang Z, Li Z, Peng Z, Dong X, Tian X*. On the Aerodynamic Loading Effect of a Model Spar-type Floating Wind Turbine: an Experimental Study. Renewable Energy. 2022;184:306-319.
[23] X Liang, P Wang, X Zhang, B Wen, X Li, X Tian*. Multi-objective robust energy management for environment powered unmanned surface vehicles. Ocean Engineering 247, 110624.
[22] C Yang, Z Cheng*, L Xiao, X Tian, M Liu, B Wen. A gradient-descent-based method for design of performance-scaled rotor for floating wind turbine model testing in wave basins. Renewable Energy. 2022;187:144-155.
2021年
[21] Wen B, Li Z, Jiang Z, Tian X, Dong X*, Peng Z. Floating wind turbine power performance incorporating equivalent turbulence intensity induced by floater oscillations. Wind Energy. 2022; 25 (2), 260-280.
[20] Li Z, Wen B, Dong X, Long X, Peng Z*. Effect of blade pitch control on dynamic characteristics of a floating offshore wind turbine under platform pitching motion. Ocean Engineering. 2021;232:109109.
[19] Jiang Z, Wen B, Chen G, Xiao L, Li X, Peng Z, Tian X*. Feasibility studies of a novel spar-type floating wind turbine for moderate water depths: hydrodynamic perspective with model test. Ocean Engineering. 2021;233:1090707.
2020年
[18] Wen B, Tian X, Jiang Z, Dong X, Peng Z*, Zhang W, Wei K. Monitoring blade loads for model floating wind turbine in wave basin tests using Fiber Bragg Grating sensors: a feasibility study. Marine Structures. 2020;71:102729. (SCI, 交大A档, 中科院一区, TOP期刊)
[17] Wen B, Li Z, Jiang Z, Peng Z, Dong X, Tian X*. Experimental study on the tower loading characteristics of a floating wind turbine based on wave basin model tests. Journal of Wind Engineering and Industrial Aerodynamics. 2020;207:104390. (SCI, 中科院一区, TOP期刊)
[16] Wen B, Tian X, Dong X, Li Z, Peng Z*, Zhang W, Wei K. Design approaches of performance-scaled rotor for wave basin model tests of floating wind turbines. Renewable Energy. 2020;148:573-584. (SCI, 交大B档, 中科院一区, TOP期刊)
[15] Wen B, Li Z, Jiang Z, Tian X, Dong X, Peng Z*. Blade loading performance of a floating wind turbine in wave basin model tests. Ocean Engineering. 2020;199:107061. (SCI, 交大A档, 中科院一区, TOP期刊)
[14] Li Z, Wen B, Wei K, Yang W, Peng Z*, Zhang W. Flexible dynamic modeling and analysis of drive train for Offshore Floating Wind Turbine. Renewable Energy. 2020;145:1292-1305. (SCI, 交大B档, 中科院一区, TOP期刊)
[13] Li Z, Wen B, Dong X, Peng Z*, Qu Y, Zhang W. Aerodynamic and aeroelastic characteristics of flexible wind turbine blades under periodic unsteady inflows. Journal of Wind Engineering and Industrial Aerodynamics. 2020;197:104057. (SCI, 中科院一区, TOP期刊, ESI 高被引论文)
[12] Li Z, Wen B, Peng Z*, Dong X, Qu Y. Dynamic modelling and analysis of wind turbine drivetrain considering the effects of non-torque loads. Applied Mathematical Modelling. 2020;83:146-168. (SCI, 中科院一区, TOP期刊)
[11] Tian X*, Xiao J, Liu H, Wen B, Peng Z. A novel dynamics analysis method for Spar-type floating offshore wind turbine. China Ocean Engineering. 2020;34(1):99–109. (SCI, 交大B档,5)
[10] Cao Q, Xiao L*, Cheng Z, Liu M, Wen B. Operational and extreme responses of a new concept of 10MW semi-submersible wind turbine in intermediate water depth: An experimental study. Ocean Engineering. 2020;217:108003. (SCI, 交大A档, 中科院一区, TOP期刊)
[9] 刘浩学, 温斌荣, 魏汉迪, 汪学锋, 彭志科, 田新亮*. 海上浮式风机混合模型试验系统开发. 实验室研究与探索. 2020;39(5):71-76.
2019年
[8] Wen B, Tian X, Dong X*, Peng Z, Zhang W, Wei K. A numerical study on the angle of attack to the blade of a horizontal-axis offshore floating wind turbine under static and dynamic yawed conditions. Energy. 2019;168:1138-1156. (SCI, 交大A档, 中科院一区, TOP期刊)
[7] Wen B, Tian X, Zhang Q, Dong X*, Peng Z, Zhang W, Wei K. Wind shear effect induced by the platform pitch motion of a Spar-type floating wind turbine. Renewable Energy. 2019;135:1186-1199. (SCI, 交大B档, 中科院一区, TOP期刊)
[6] 王新茹, 陈刚, 肖龙飞, 温斌荣, 田新亮*. 实尺度大型水平轴风机气动特性数值模拟. 中国海洋平台. 2019;34(6):31-39
2018年
[5] Wen B, Dong X, Tian X*, Peng Z, Zhang W, Wei K. The power performance of an offshore floating wind turbine in platform pitching motion. Energy. 2018;154:508-521. (SCI, 交大A档, 中科院一区, TOP期刊)
[4] Wen B, Tian X, Dong X*, Peng Z, Zhang W. On the power coefficient overshoot of an offshore floating wind turbine in surge oscillations. Wind Energy. 2018;21(11):1076-1091. (SCI, 交大B档)
[3] 温斌荣, 魏莎, 魏克湘, 杨文献, 彭志科*, 褚福磊. 风切变和塔影效应对风力机输出功率的影响分析. 机械工程学报. 2018;54(10):124-132. (EI, 封面文章)
2017年
[2] Wen B, Tian X, Dong X*, Peng Z, Zhang W. Influences of surge motion on the power and thrust characteristics of an offshore floating wind turbine. Energy. 2017;141:2054-2068. (SCI, 交大A档, 中科院一区, TOP期刊)
[1] Wen B, Wei S, Wei K, Yang W, Peng Z*, Chu F. Power fluctuation and power loss of wind turbines due to wind shear and tower shadow. Frontiers of Mechanical Engineering. 2017;12(3):1-12. (SCI)
会议论文
[12] 温斌荣, 田新亮, 李占伟, 江志昊, 董兴建, 彭志科. 风浪流联合激励下海上浮式风机塔筒振动特性试验研究. 第18届全国非线性振动暨15届全国非线性动力学和运动稳定性学术会议. 广州,中国,2021.
[11] Wen B, Tian X, Jiang Z, Kou Y, Peng T, Peng Z. Advances in physical model testing of floating offshore wind turbines at Shanghai Jiao Tong University. MARINE Conference, 2021.
[10] Wen B, Jiang Z, Tian X, Peng Z. Unsteady aerodynamics of floating wind turbine: an experimental study. The 24th Annual Conference of HKSTAM 2020, online.
[9] Wen B, Jiang Z, Li Z, Peng Z, Dong X, Tian X. Floating wind turbine dynamics in wind-induced inclination: an experimental study. OMAE2020. Fort Lauderdale, FL, USA. 2020. OMAE2020-18342.
[8] Wen B, Tian X, Jiang Z, Li Z, Zhao Y, Peng T, Peng Z. Developments of experimental facilities and techniques for floating wind turbine model tests. ISOPE 2020. Shanghai, China.
[7] Jiang Z, Wen B, Tian X, Chen G, Xiao L, Peng Z. Feasibility study of deploying a spar-type floating wind turbine in moderate water depths: a hydrodynamics perspective with model tests. OMAE 2020. Fort Lauderdale, FL, USA. 2020. OMAE2020-18451.
[6] 温斌荣, 李占伟, 江志昊, 田新亮, 董兴建, 彭志科. 风浪环境下大型海上浮式风机非线性运动响应试验研究. 2020年全国设备监测诊断与维护学术会议. 福州,中国,2020.
[5] 李占伟, 温斌荣, 何清波, 彭志科. 考虑非扭矩载荷影响的风机传动系统动力学特性分析. 2020年全国设备监测诊断与维护学术会议. 福州, 中国, 2020.
[4] Wen B, Zhang Q, Liu H, Tian X, Dong X, Peng Z, Zhao Y, Kou Y. An experimental apparatus for investigating the unsteady aerodynamics of a floating wind turbine. OMAE 2019. Glasgow, Scotland, UK, 2019. OMAE2019-95915.
[3] Wen B, Tian X, Li Z, Dong X, Peng Z. Unsteady aerodynamics of floating wind turbines under floater oscillations. 21st Cross Straits Symposium on Energy and Environmental Science and Technology. Shanghai, China. 2019.
[2] Li Z, Wen B, Peng Z, Yang W. Flexible dynamic modeling and analysis of drive train for offshore floating wind turbine. The first International Nonlinear Dynamics Conference. Rome, Italy. 2019.
[1] Wen B, Zhang Q, Wei S, Tian X, Dong X, Peng Z. Comparisons between the typical wind shear and the wind shear induced by platform pitch motion for an offshore floating wind turbine. OMAE 2018. Madrid, Spain, 2018. OMAE2018-77797.