一.科研论文:
[1] Wang, Yang, Pan, Liang*, et al. Performance investigation of a novel passive cooling strategy for photovoltaic panels using hollow staggered triangular fins [J]. Case Studies in Thermal Engineering (中科院2区), 2025, 76(11). DOI: 10.1016/j.csite.2025.107326.
[2] Zhao, Ziwen, Pan, Liang*, et al. Review on vortex generators for flow-channel-enhanced heat transfer [J]. Journal of Thermal Analysis and Calorimetry (中科院3区), 2026, 2(151). DOI: 10.1007/s10973-025-15204-6.
[3] Hao, Jiejie, Pan, Liang*, et al. Passive Cooling Solutions for High-Efficiency Photovoltaics [J]. Journal of Thermal Analysis and Calorimetry (中科院3区) , 2026, 3(151). DOI: 10.1007/s10973-026-15306-9.
[4] Bai, Jianrui, Pan, Liang*, et al. Key technology research progress of photovoltaic solar thermal collectors: Overview [J]. Journal of Renewable and Sustainable Energy (中科院4区), 2025, 17(5). DOI: 10.1063/5.0279561.
[5] Du, Qi, Pan, Liang*, et al. Performance analysis of solar-assisted ground source heat pump in severe cold regions [J]. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects (中科院4区), 2024, 46(1). DOI: 10.1080/15567036.2024.2414840.
[6] Bai, Jianrui, Pan, Liang*, et al. Venturi effect-based simulation of air-based PVT optimization [J]. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects (中科院4区), 2024, 46(1). DOI: 10.1080/15567036.2023.2292769.
[7] Zhang, Rundong, Pan, Liang*, et al. Numerical model and efficiency analysis of finned staggered solar PV/T air collector [J]. Thermal Science (中科院4区), 2024, 28(2). DOI: 10.2298/TSCI230409179Z.
[8] Zhang, Weijian, Pan, Liang*, et al. Progress in the study of enhanced heat exchange in phase change heat storage devices [J]. ACS Omega (中科院3区), 2023, 25(8). DOI: 10.1021/acsomega.3c01430.
[9] Zhang, Rundong, Pan, Liang*, et al. Review on the structure and application of solar photovoltaic air collector [J]. Journal of Asian Architecture and Building Engineering (中科院4区), 2023, 22(8). DOI: 10.1080/13467581.2022.2085716.
二.教研论文:
[1] 潘亮,张自国. 土建类专业实践课程群“德才并育”课程思政教学模式构建 [J]. 长春工程学院学报(社会科学版), 2024, 25(02): 137-141.
[2] 潘亮,左娜. 基于信息利用的后MOOCs时代高校人才培养新范式理论与实践研究 [J]. 情报科学(CSSCI检索), 2019, 37(12): 114-117.
[3] 潘亮. 信息时代慕课(MOOCs)平台建设与人才培养模式研究 [J]. 情报科学(CSSCI检索), 2018, 36(08): 123-127.
[4] 潘亮. 基于MOOCs的信息流与新型教学模式构建研究 [J]. 情报科学(CSSCI检索), 2014, 32(12): 115-118.
三.发明专利:
[1]潘亮, 白剑锐, 等. 一种相变蓄热光伏光热集热器[P]. ZL202211331435.5, 2026-04-21.
[2]潘亮, 郝杰杰, 等. 一种具有双层叠合六边形结构散热体强化冷却的光伏组件[P]. ZL 202610199230.8, 2026-04-10.
[3]潘亮, 张伟见, 等. 一种光伏光热与地热耦合有序供能系统[P]. ZL202211456378.3, 2026-03-13.
[4] 潘亮, 杜淇, 等. 一种光伏光热与地源热泵联合供能系统[P]. ZL202310886205.3, 2026-02-06.
[5] 潘亮, 赵子文, 等. 一种基于扰流强化冷却与集热功能的光伏光热组件[P]. ZL202511512629.9, 2026-01-06.
[6] 潘亮, 郝杰杰, 等. 一种具有强化被动散热结构的光伏组件[P]. ZL202511511377.8, 2025-12-23.
[7] 潘亮, 白剑锐, 等. 一种强化换热的光伏光热空气型集热器[P]. ZL202211411421.4, 2025-07-22.
[8] 潘亮, 等. 太阳能季节性相变蓄能室温自动调控系统 [P]. ZL201811133992.X, 2023-08-15. (已转化)
[9] 潘亮, 张润东, 等. 一种新型强化空气换热相变蓄热装置[P]. ZL202011536814.9, 2022-09-30. (已转化)
[10] 潘亮, 等. 一种太阳能光伏光热空气集热器[P]. ZL202010861404.5, 2021-09-24. (已转化)
[11] 潘亮, 等. 一种具有供暖和降温功能的蓄能墙体[P]. ZL201710568939.1, 2019-03-05. (已转化)
[12] 潘亮,等. 一种厨房用具有油烟净化、换气和换热功能通风装置[P]. ZL201510166680.9, 2017-08-22. (已转化)
[13] 潘亮,等. 蓄热式太阳能、电能和燃煤热能联合供热热源系统[P]. ZL201410631803.7, 2017-03-01. (已转化)