胡江涛

作者: 时间:2026-09-07 点击数:

胡江涛,自动化与电气工程学院,建筑电气与智能化系,讲师

电子邮箱:jiangtaohu@gpnu.edu.cn , 联系电话:13297977632

研究领域

城市风环境模拟、GPU并行计算


主授课程

工程制图、建筑机电BIM技术、建筑物联网技术、热工基础


教育经历:

20179月至20192 英国诺丁汉大学,流体与热能工程,联合培养博士研究生

20149月至201912 武汉大学,热能工程,工学博士

20109月至20146 长沙理工大学大学,热能与动力工程,工学学士


工作经历(博士后工作经历除外):

20247 至今   广东技术师范大学,自动化与电气工程学院,讲师

20201月至20246月  中南林业科技大学,土木工程学院,讲师


近五年主持或参加的科学研究项目/课题:

广东省区域联合基金-青年基金项目,基于LBM–LES的粤港澳大湾区城市风环境精细化模拟与防风绿化优化研究,202511月至20281010万元,在研,主持

广东技术师范大学校级科研项目基于图形处理器的城市低空湍流模型研究20251月至2028123.75万元,在研,主持


近五年主持或参加的教学研究项目/课题:


代表性成果和学术奖励情况

[1] Jiang-Tao Hu; Shuo-Jun Mei, Lei Xu, Jian Hang. Predicting urban wind extreme with GPU-accelerated LBM–LES simulation and statistical method[J]. Urban Climate, 2026, 65: 102746. (SCI 2)

[2] Jiang-Tao Hu; Shuo-Jun Mei, Lei Wang, Lei Xu, Thermal performance of SGSP with porous layer under heat extraction, International Journal of Mechanical Sciences, 2025, 300: 110472.(SCI 1)

[3] Jiang-Tao Hu; Shuo-Jun Mei, Lei Wang, Lei Xu, Impact of direct heat extraction on the thermal storage and stability of solar ponds, International Communications in Heat and Mass Transfer, 2025, 169: 109766. (SCI 2TOP)

[4] Jiang-Tao Hu; Shuo-Jun Mei, Natural Convection in Nanofluid Enclosure under Magnetic Field: Entropy Generation and Economic Analysis, Propulsion and Power Research, 2024, 13(2):273-293. (SCI 2)

[5] 胡江涛; 蒋文涛; 梅硕俊, 耦合多孔介质层的内产热腔体双扩散自然对流, 科学技术与工程, 2023, 23(20): 8660-8669.(北大核心)

[6] Jiang-Tao Hu; Shuo-Jun Mei, Thermosolutal convection under cross-diffusion effect in SGSP with porous layer, International Journal of Mechanical Sciences, 2022, 234: 107691. (SCI 1)

[7] Jiang-Tao Hu; Shuo-Jun Mei, Combined thermal and moisture convection and entropy generation in an inclined rectangular enclosure partially saturated with porous wall: Nonlinear effects with Soret and Dufour numbers, International Journal of Mechanical Sciences, 2021, 199: 106412. (SCI 1)

[8] Jiang-Tao Hu; Shuo-Jun Mei, Unsteady double diffusive convection inside a partial porous building enclosure subjected to time-periodic temperature boundary condition, International Communications in Heat and Mass Transfer, 2021, 122: 105128. (SCI 2TOP)

[9] Jiang-Tao Hu, Shuo-Jun Mei, Di Liu, Fu-Yun Zhao, Han-Qing Wang, Hydromagnetic double diffusive moisture convection from an inclined enclosure inserted with multiple heat-generating electronic module, International Journal of Thermal Sciences, 2021, 159: 106554. (SCI 2)

[10] Jiang-Tao Hu, Shuo-Jun Mei, Di Liu, Fu-Yun Zhao, Han-Qing Wang, Buoyancy driven double diffusive moisture convection inside the fluid-porous-solid sandwiched building enclosure containing internal heating sources, International Journal of Heat and Mass Transfer, 2018, 123: 600-615. (SCI 2)

[11] Jiang-Tao Hu, Shuo-Jun Mei, Di Liu, Fu-Yun Zhao, Han-Qing Wang, Buoyancy driven heat and species transports inside an energy storage enclosure partially saturated with thermal generating porous layers, International Journal of Thermal Sciences, 2018, 126: 38-55. (SCI 2)

[12] Jiang-Tao Hu, Xiu-hong Ren, Di Liu, Fu-Yun Zhao, Han-Qing Wang, Natural convective heat and moisture transfer in an inclined building enclosure with one slender wall of finite thickness: Analytical investigation and non-unique steady flow solutions, International Journal of Heat and Mass Transfer, 2017, 104: 1160-1176. (SCI 2)

[13] Jiang-Tao Hu, Xiu-Hong Ren, Di Liu, Fu-Yun Zhao, Han-Qing Wang, Conjugate natural convection inside a vertical enclosure with solid obstacles of unique volume and multiple morphologies, International Journal of Heat and Mass Transfer, 2016, 95: 1096-1114. (SCI 2)



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