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Tao Guo*, Si-yuan Liu, Xue-jie Hu, et al. Physics of secondary flow phenomenon and erosion characteristics in the injector of a Pelton turbine [J]. Eng. Appl. Comput. Fluid Mech.,2025,19:1,2479700. (中科院大类Ⅰ区) Tao Guo*, Bang Yan, Xin-tao Lu, et al. The effect of relative position on the motion and interactions of particle sedimentation under gravity in a finite-width vertical channel[J]. Eng. Appl. Comput. Fluid Mech., 2024, 18, 2406250. (中科院大类Ⅰ区, Top) Tao Guo*, Hai-Yang Wang, Zhu-mei Luo. Analysis of internal flow characteristics and loss mechanism of Pelton turbine’s water supply component[J]. Renewable Energy,2025(248),123135:1-19. (中科院大类Ⅰ区, Top) Xu Li-hui, Guo Tao*. Analysis of hydraulic stability of a Francis turbine under partial load conditions based on Liutex method and entropy production theory[J]. Energy, 2025;328:136528. (中科院大类Ⅰ区, Top) Xu Li-hui, Guo Tao*, Wang Wen-quan. Effects of vortex structure on hydraulic loss in a low head Francis turbine under overall operating conditions base on entropy production method[J]. Renewable Energy, 2022 (198):367-379.(中科院大类Ⅰ区, Top) Tao Guo*, Xuejie HU, Bang Yan, et al. Influence of initial relative positions on the square dual-particle sedimentation under free-release conditions [J]. Physics of fluids, 2025, 18, 2406250.(中科院大类Ⅱ区) Tao Guo*, Wen-Lu Wu, Zhu-Mei Luo, et al. Mode transition and drag characteristics of non-circular cylinders in a uniform flow[J]. Ocean Engineering, 297(2024)117025:1-15. (中科院大类Ⅱ区) Tao Guo*, Haiyang Wang. Analysis of hydrodynamic characteristics and loss mechanism of hydrofoil under high Reynolds number [J]. Ocean Engineering, 287(2023), 115892:1-15. (中科院大类Ⅱ区) Hai-Yang Wang, Tao Guo*, Zhu-Mei Luo, et al. Research on sediment erosion and jet flow characteristics of Pelton turbine's injector [J]. Physics of fluids, 37,063358(2025). (中科院大类Ⅱ区) Hai-Yang Wang, Bin Huang, Tao Guo, et al. Analysis of hydrodynamic and loss characteristics of hydrofoil under the effect of tip clearance[J]. Ocean Engineering, 316(2025), 119936:1-16. (中科院大类Ⅱ区, Top) Yun Ding, Xin-ran Li, Wen-Quan Wang, Guanzhe Cui, Tao Guo, Yan Yan. Unsteady hydrodynamic performance of a submarine with a new kind of pump-jet propulsor[J]. Ocean Engineering, 336(2025), 121847:1-15.(中科院大类Ⅱ区, Top) Han Liang, Zhu-mei Luo, Tao Guo,et al. Numerical analysis of energy loss in a laboratory-scale tandem double cylinders based on entropy production method[J]. AIP Advances. 15, 025317, 1-14 (2025) Tao Guo*, Jin-ming Zhang and Zhu-mei Luo. Analysis of channel vortex and cavitation performance of the Francis turbine under partial flow conditions[J]. Processes, 2021,9(8) Tao Guo*, Li-hui Xu, Wen-quan Wang. Influence of upstream disturbances on the vortex structure of Francis turbine based on the criteria of identification of various vortexes[J]. Energies,2021,14(22) Lin-sheng Dai, Zhu-mei Luo, Tao Guo, et al. Two three-dimensional super-Gaussian wake models for hilly terrain [J]. J. Renewable and Sustainable Energy, 16, 013304, 1-13 (2024). Zhu-mei Luo, Lin-sheng Dai, Tao Guo, et al. Two three-dimensional super-Gaussian wake models for wind turbine wakes[J]. Journal of Energy Engineering. 150(4):04024020,1-12 (2024) Zhu-mei Luo, Cong Nie, Shun-li Lv, Tao Guo*, et al. The effect of J-groove on vortex suppression and energy dissipation in a draft tube of Francis turbine[J]. Energies, 2022, 15, 1707. Guang-he Dong, Zhu-mei Luo, Tao Guo, et al. The splitter blade pump-turbine in pump mode: the hump characteristic and hysteresis effect flow mechanism[J]. Processes, 2024,12,324. Han Hu, Han-cong Liu, Min-jie Duan, Ao-jie Li, Yi Liu and Tao Guo. Bibliometric research of hydro turbine blades through CiteSpace analyzing methods: An evaluation between 2015 and 2024[J]. Innovation and Emerging Technologies, 2025, 12. Yi Liu, Ao-jie Li, Yu-xin Lei, Tao Guo*, et al. Molecular dynamics simulation of palmitic acid molecular passivation affecting the surface activity of aluminum nanoparticles[J]. Scientific Reports, 2025,15,8287. Yi Liu, Yu-xin Lei, Tao Guo*, et al. Application investigations of force fields for molecular dynamic simulations of medical aluminum particles[J]. Int. J. Comput. Mat. Sci., 2450028(2024). J. Huang, M. Zhu, J. Duan, Z. Peng, J. Qian, L. Chen, Y. Zeng, and T. Guo, Study on the modal characteristics of runner with cracked blade for Francis turbine under the effect of fluid[J]. Measurement Science and Technology, 36(2025):056117 |
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郭涛*,李富春,陈彦州,等. 不同岩体交叉裂隙结构下滴状流的分流机理研究[J/OL]. 岩土工程学报: https://link.cnki.net/urlid/32.1124.tu.20250312.1644.010 刘思远,郭涛*,岩棒,等. 相对位置对椭圆双颗粒沉降运动和相互作用的影响[J/OL]. 工程科学与技术: https://link.cnki.net/urlid/51.1773.TB.20250228.1404.002 郭涛*,甘文港,汪海洋,等. 冲击式水轮机配水环的内流特性及水力损失分析[J]. 清华大学学报(自然科学版),2025,65(5):921-929. 郭涛*,张晋铭,孙震,等. 运行负载扰动条件下水轮机流态演化和空化性能研究[J]. 工程力学,2024,41(12):224-236. 郭涛*,孙震,张帆. T型通道微流控芯片中液滴生成的影响因素研究[J]. 工程力学,2024,41(07):239-248. 郭涛*,杨渊茗,孙震,等. 光伏板柔性拖曳结构与传统刚性结构风振响应对比[J]. 太阳能学报,2024,45(10):317-325. 郭涛*,杨渊茗,黄国强,等. 山区峡谷地形下柔性支撑光伏阵列的风振特性研究[J]. 太阳能学报,2023,44(11): 131-140. 罗竹梅,李俊,郭涛*,等. 低速海流能俘能装置阵列优化布置研究[J]. 太阳能学报,2024,45(11):561-569. 李俊,罗竹梅,郭涛,等. 基于熵产理论的三维涡激振动低速水流能俘能分析[J]. 太阳能学报,2023,44(06):45-52. 郭涛*,王文全,王欣宇. 局部翼面运动对水翼水动力学特性的影响研究[J]. 振动工程学报,2023,36(01):170-178. 郭涛*,张纹惠,王文全,等. 基于IBM法的低雷诺数下涡激振动高质量比效应的研究[J]. 工程力学,2022(03):222-232. 郭涛*,张晋铭,张纹惠,等. 一种模拟动边界绕流的锐利界面浸入边界法[J]. 爆炸与冲击,2022,42(08):132-144. 郭涛*,桂博,徐李辉,等. 基于P-D-ε特性的重力坝主余震损伤累积分析[J]. 振动.测试与诊断,2022,42(04):710-717+825-826. 郭涛*,徐李辉,罗竹梅. 上游扰动条件下尾水管涡带演化和压力脉动研究[J]. 农业机械学报,2022,53(06):192-201. 罗竹梅,聂聪,郭涛*. 涡激振动驱动的柱群结构集中俘获海流能研究[J]. 太阳能学报,2021,42(04):89-94. 郭涛*,张立翔,李世杰. 约束方式对蜗壳初始保压缝隙形成机理的影响分析[J].农业工程学报,2020,36(08):40-47. 郭涛*,张纹惠,武亮. 考虑多指标因素的重力坝抗震安全评价方法研究[J]. 振动工程学报,2020,33(01):196-205. 郭涛*,张立翔,李世杰. 基于非均匀缝隙的充水保压蜗壳三维仿真算法研究[J]. 水利学报,2015,46(12):1434-1443. 郭涛*,张立翔. 混流式水轮机小开度下导水机构内湍流特性和叶道涡结构研究[J]. 工程力学,2015,32(06):222-230. 郭涛*,张立翔. 混流式水轮机尾水管近壁湍流特性和流场结构研究[J]. 农业机械学报,2014,45(09):112-118. 郭涛*,张立翔,姚激. 水力发电机组转子偏心的精细校正 [J]. 振动.测试与诊断,2012,32(2):244-249. 郭涛*,张立翔,姚激. 大型水电站充水保压蜗壳结构联合承载分析[J]. 土木建筑与环境工程,2011,33(4):80-84. |