热能工程研究所

热能工程研究所

刘淑丽

刘淑丽



教授

√博导 √硕导

能源与动力工程专业

办公地址

北京理工大学中关村校区求是楼220

100081

办公电话

15128654025

shuli79@126.comShuli.liu@bit.edu.cn

个人简介及研究方向

刘淑丽,教授,国家海外高层次青年人才。先后获重庆大学学士、硕士学位,英国诺丁汉大学博士学位,师从Saffa Riffat院士、赵旭东院士。现任北京理工大学机械与车辆学院能源与动力工程系教授、博士生导师、硕士生导师。

主持国家级、省部级项目十余项,包括国家自然科学基金重点项目、面上项目,十四五国家重点研发计划课题子任务,JKW前沿创新工程类项目,政府间国际科技创新合作重点专项项目,科技部、人社部外国专家项目,云南省科技厅重大科技专项课题等;同时主持英国工程和自然科学研究委员会(EPSRC)、英国知识转移计划(KTP)、英国文化协会牛顿基金,以及Tata SteelTriton ShowerOrbit House Group等资助项目。

连续4年入选斯坦福大学全球前2%顶尖科学家榜单,获2026ASHRAE欧洲区创新科技奖、2026年世界可持续能源协会杰出青年成就奖、2026年日内瓦国际发明展金奖、2025ASHRAE英国区创新科技奖、2024年世界可持续能源协会创新奖等国际奖项。

已在Energy & Environmental ScienceIF=30.5)、Renewable and Sustainable Energy ReviewsIF=18.0)、Chemical Engineering JournalIF=12.5)、Applied EnergyIF=12.2)、EnergyIF=10.1)等行业顶级SCI期刊发表论文170余篇;受邀在国际学术会议上作大会主题报告40余次。目前论文总引用5700余次,H因子41

研究方向:储热材料研发、传热传质强化、热管理技术、建筑节能、太阳能热利用、室内热环境调控

代表性论文及研究项目

代表性论文(近1年通讯及一作):

[1] Sohrabi A, Liu S*, Ji M, Li Y, Khan SY, Kumar M, Xiong C, Shen Y. Enhanced thermochemical energy storage performance of SrCl2-MgCl2 composites hosted by expanded graphite: Synthesis and experimental study. JOURNAL OF ENERGY STORAGE. 2026;180:124116.

[2] Kumar M, Karim A, Khan SY, Shen Y, Ji W, Sohrabi A, Haq MSU, Xu Z, et al. Cell to module level thermal management of batteries using partial and full coverage of multi-melting point flexible composite phase change materials. INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER. 2026;178:111941.

[3] Khan SY, Haq MSU, Kumar M, Sohrabi A, Li Y, Ji M, Eftekhari M, et al. Dual-functional system for localized electrical space heating using composite phase change material. ENERGY. 2026;142012.

[4] Zhang S, Xu Z, Shen Y, Wang Y, Liu S*. Parametric study on inclination angle and aspect ratio of direct absorption/storage solar collectors for building heating. APPLIED THERMAL ENGINEERING. 2026;132285.

[5] Khan SY, Ali H, Mazhar AR, Ji W, Wang J, Li Y, Kumar M, Shen Y, et al. Electrically driven composite phase change materials for latent thermal energy storage in localized space heating: Progress, challenges, and prospects. RENEWABLE AND SUSTAINABLE ENERGY REVIEWS. 2026;231:116739.

[6] Li W, Zhong C, Liu S*, Gao Y, Wang L, Deng S, Wang Z. Slag-based hydrated salt composites for thermochemical energy storage: Preparation, characterization and performance. JOURNAL OF ENERGY STORAGE. 2026;156:121538.

[7] Wang Y, Han J, Zhou W, Shen Y, Khan SY, Kumar M, Liu S*. Preparation and evaluation of the metal-carbon-based composite phase change materials based on deep eutectic solvents with high photothermal conversion efficiency for building ... ENERGY. 2026;140739.

[8] Zhu X, Xu Z, Wang Y, Shao Y, Khan SY, Kumar M, Liu S*. Directionally conductive and flexible phase change composites enabled by graphite alignment and silicone rubber encapsulation for high-efficiency solar thermal storage. CHEMICAL ENGINEERING JOURNAL. 2026;174904.

[9] Xiong C, Sun H, Hu R, Wang Y, Xu Z, Liu S*, Shen Y. A new material for solar energy application in cold region: ChCl/biomass-derived deep eutectic solvent-based nanofluids. APPLIED THERMAL ENGINEERING. 2026;130402.

[10] Kumar M, Sun X, Liu S*, Khan SY, Shen L, Shen Y, Li Y, Mazhar AR, et al. Performance evaluation of battery thermal management system using anisotropic, shape-stable, flexible composite PCM. APPLIED THERMAL ENGINEERING. 2026;130397.

[11] Huang S, Sun S, Liu S*, Deng S, Wang Z. Advancements in hybrid photovoltaic thermal (PV/T) systems multi objective optimization strategies and emerging Frontiers. SOLAR ENERGY. 2026;305:114179.

[12] Liu X, Chen T, Zhou W, Liu S*, Ji W. A metabolic rate prediction method under the effects of multiple factors for Chinese young males. BUILDING AND ENVIRONMENT. 2026;114178.

[13] Wang Y, Xu Z, Fu Y, Liu S*, Shen Y, Ji W, Chen T, Li Y. A novel optimized control strategy based on BP neural network for dynamic heating of sorption energy storage system. JOURNAL OF ENERGY STORAGE. 2026;141:119180.

[14] Xu Z, Zhang S, Chen T, Wang Y, Liu S*, Shen Y. Achieving high photo/electro-thermal efficiency and thermal anisotropy through oriented thermally conductive composite phase change material. CHEMICAL ENGINEERING JOURNAL. 2025;172279.

[15] Shen Y, Zhang S, Liu S*, Xu Z, Jin H, Li J, Sun X, Shen L. Thermal energy release analyses of direct absorption/storage solar collector based on the photo-thermal conversion composite PCM for heat pump evaporator heat source. ENERGY. 2025;139538.

[16] Han X, Liu S*, Zeng C. Innovating thermochemical energy storage: thermal performance enhancement of cascade reactor with rotating water spray. ENERGY. 2025;139315.

[17] Haq MSU, Ji W, Pei X, Liu S*, Geng Y, Lin B, Ali H. Explainable deep learning combined attention-based LSTM for building energy prediction: a framework from the perspective of supply side. ENERGY AND BUILDINGS. 2025;116638.

[18] Wang Y, Chen T, Liu S*, Ji W, Shen Y, He B, Li Y, Xu Z. Development and system performance evaluation of new thermochemical energy storage composite materials for direct photothermal conversion at low temperature. ENERGY. 2025;332:137161.

[19] Wang Y, Li Y, Liu S*, Chen T, Shen Y, Ji W. Performance evaluation and parameter analysis of the energy release process based on a thermochemical energy storage reactor. CARBON NEUTRAL TECHNOLOGIES. 2025;100006.

[20] Li Y, Liu S*, Zou Y, Wang Y, Chen T, Shen Y. Sensitivity analysis of thermal performance parameters of zeolite-filled thermochemical reactor during energy release. ENERGY STORAGE SCIENCE AND TECHNOLOGY. 2025;14(9):3330.

[21] Khan SY, Liu S*, Shen Y, Eftekhari M, Wang J, Kumar M, Mazhar AR, Ji W, et al. Numerical investigation of the thermal performance of CPCM in T-slot profile channel for potential compactness in modular energy storage. APPLIED THERMAL ENGINEERING. 2025;128139.

[22] Sohrabi A, Liu S*, Cuce E, Shen Y, Khan SY, Kumar M. Utilization of low-grade thermal energy for residential applications: A review of the existing and potential technologies. RENEWABLE AND SUSTAINABLE ENERGY REVIEWS. 2025;219:115832.

[23] Wang Y, Xu Z, Liu S*, Shen Y, Ji W, Chen T, Li Y. Multi-objective optimization of thermochemical energy storage systems with configuration planning for different applications. APPLIED THERMAL ENGINEERING. 2025;274:126578.

[24] Khan SY, Kumar M, Liu S*, Shen Y, Mazhar AR, Ji W, Haq MSU, et al. Development, optimization, and characterization of shape stable conductive composite phase change materials for versatile thermal energy storage needs. JOURNAL OF ENERGY STORAGE. 2025;128:117231.

[25] Talha T, Talha M, Liu S*, Mazhar AR, Perwez U, Moiz M, Afzal A. Experimental study of unglazed transpired solar collectors integrated with buildings in humid sub-tropics. ENERGY AND BUILDINGS. 2025;339:115767.

[26] Wang Y, Li Y, Xu Z, Liu S*, Shen Y, Ji W, Chen T, Li Y, Pulvirenti B. Comprehensive evaluation of the photothermal conversion thermochemical energy storage composite materials: Material characterization, kinetics analysis and building heating... ENERGY AND BUILDINGS. 2025;338:115699.

[27] Chen T, Liu S*, Wang Y, Shen Y, Ji W, Zhang S, Li S, Khan SY, Kumar M. Multi-objective optimization and thermal performance evaluation of a novel Trombe wall. ENERGY. 2025;323:135661.

[28] Chen T, Liu S*, Wang Y, Khan SY, Kumar M, Shen Y, Ji W, Eftekhari M, et al. Investigating new measures by jointly employing distinct and local heat transfer enhancement in latent heat thermal energy storage systems for buildings. ENERGY AND BUILDINGS. 2025;335:115555.

[29] Chen T, Liu S*, Wang Y, Shen Y, Ji W, Xu Z, Zhou W, Mazhar AR. An optimization method coupling the response surface methodology and multi-objective particle swarm to enhance the performance of a novel water Trombe wall. APPLIED THERMAL ENGINEERING. 2025;267:125785.

[30] Li Y, Liu S*, Wang Y, Chen T, Shen Y. Parameter analysis of the heat release process of zeolite thermochemical energy storage reactor. JOURNAL OF PHYSICS: CONFERENCE SERIES. 2025;3011(1):012084.

[31] Khan SY, Rauf S, Liu S*, Chen W, Shen Y, Kumar M. Revolutionizing the solar photovoltaic efficiency: a comprehensive review on the cutting-edge thermal management methods for advanced and conventional solar photovoltaics. ENERGY & ENVIRONMENTAL SCIENCE. 2025;18:1130-75.

[32] Wang Y, Chen T, Khan SY, Liu S*, Shen Y, Shao Y, Ji W, Xu Z. Evaluation and optimization of a novel CPC-PV/T driven cooling, heating and power cogeneration system based on thermochemical energy storage. ENERGY. 2025;316:134626.

[33] Li S, Ji W, Chen H, Chen T, Sun J, Liu S*. Performance of a curved corrugated surface Trombe wall coupled phase change material in buildings by numerical models and experiments. ENERGY AND BUILDINGS. 2025;327:115095.

[34] Liu S*, Han J, Shen Y, Khan SY, Ji W, Jin H, Khan Y, Kumar M, Mazhar AR. The contribution of artificial intelligence to phase change materials in thermal energy storage: From prediction to optimization. RENEWABLE ENERGY. 2025;238:121973.


代表性专利:

[1] Heater can with midway baffle, GB1305613.0, 27/03/2013

[2] Heater can with internal return for element, GB1305617.1, 27/03/2013

[3] Heater can with PCM material to assist with mechanical shutdown, GB1314203.9, 08/08/2013

[4] 刘淑丽, 沈永亮, 熊崇杰, 胡瑞, 苏媛媛, 王语瑶. 一种基于纳米流体的太阳能热泵供热系统及供热方法. CN118463273A.

[5] 刘淑丽刘宪泽许至琦陈廷森沈永亮. 一种具有自适应功能的外围护结构. CN120425841A.

[6] 刘淑丽熊崇杰沈永亮韩骏瑞周文豪. 一种基于光热储一体化材料的移动式储能供热装置. CN120368771A.

[7] 刘淑丽韩骏瑞沈永亮周文豪陈廷森刘宪泽. 一种可多尺度多物理场耦合控制的光热转化与热存储系统. CN120292733A.

[8] 刘淑丽, 张少良, 许至琦, 沈永亮, 陈廷森, 王义函. 热泵供暖系统及其控制方法. CN118548525A.

[9] 刘淑丽,韩骏瑞,沈永亮,纪文杰,熊崇杰,周文豪. 一种低共熔溶剂基金属-碳复合相变材料及其制备方. CN118813207B.

[10] 刘淑丽, 沈永亮, 张少良, 张鹏威, 杨柳. 一种太阳能梯级相变蓄热耦合空气源热泵供热系统及方法. CN112856551B.

[11] 刘淑丽, 张少良, 沈永亮, 杨柳, 高彬栩. 基于变沸点双向热管的聚光-相变蓄热型建筑围护结构. CN113137769B.

[12] 刘淑丽, 陈廷森, 张少良, 沈永亮, 纪文杰. 地下空间数据中心可移动冷源靶向精准降温系统及方法. CN116847636A.

[13] 刘淑丽, 邬春晖, 陈廷森, 张少良, 纪文杰, 沈永亮. 一种满足动态热舒适性的通风系统. CN216069979U.


代表性研究项目:

[1] 国家自然科学基金重点项目,低品位自然能源分布式供暖中能量转化-提升-匹配机理与方法研究,526380012027-2031,在研,主持

[2] “十四五”国家重点研发计划,地域气候适应性建筑热工设计与构造关键技术研究,2024YFB38093032025-2027,在研,子任务负责人

[3] “十四五”国家重点研发计划,面向中低温热能高效利用的相变储热材料研究,2024YFB38136002024.12-2027.11在研,子任务负责人

[4] 国家重点研发计划政府间国际科技创新合作重点专项,低碳热能技术热质强化理论及建筑应用,SQ2026YFE01613002026-2027,在研,项目负责人

[5] 国家重点研发计划政府间国际科技创新合作重点专项,低碳建筑非透明围护结构高效保温隔热材料与构造研究,SQ2024YFE01034412025-2026,在研,课题负责人

[6] 云南省科技厅重大科技专项计划,气候温和地区城市人居环境低碳营造关键技术研究,202402AG0500112024.10 -2027.09,在研,课题负责人

[7] JKW前沿创新工程类项目,XX热能存储技术,2023.07-2025.06,结题,主持

[8] 基于热质强化理论的低碳热能技术及其建筑应用,国家外国专家类项目(H)H202401142024.01-2025.12,结题,主持

[9] 国家自然科学基金面上项目,变沸点双向热管与复合相变材料耦合新型通风墙体热质传递机理,521780632022-2025,结题,主持

[10] 中华人民共和国科技部高端外国专家引进计划项目,基于太阳能光伏光热综合利用的智慧供能与梯级储能系统关键技术研究,2022.01-2023.12,结题,主持

[11] 山东省鸢都产业领军人才产业创新类项目,基于非稳态热源的梯级多能互补供能系统,2021-012024-12,结题,主持

[12] 北京市教育委员会,北京市专项课题项目,3030036121906,北京市既有居住区绿色化改造预测模型的研究,2019-062020-12,结题,主持

[13] Newton Fund, Researcher Links Workshop Grant, UK-China, ‘Investigation of the Impact of Occupant Behavior on Building Performance in the UK and China’ (£41k), 2019, PI

[14] Newton Fund, Researcher Links Workshop Grant, UK-China, ‘Building energy and technology perspective in China and UK’ (£41.2k), 04, 2017~01, 2018, PI

[15] EPSRC, ‘an intelligent digital household network to transform low carbon lifestyles’, EP/K002716/1 Case for Support to the EPSRC (BuildTEDDI) (£1.06m), 12, 2012~01, 2018, PI

社会职务

[1] Applied Thermal Engineering期刊Subject editor及特刊主编

[2] Carbon Neutral TechnologiesGreen Technology & Innovation Journal of Green Energy and ResourcesJournal of Low Carbon Technology、《建筑节能》、《中国建筑金属结构》等期刊编委

[3] CIBSE(英国皇家注册设备工程师协会)会员

[4] ASHRAE(美国供暖,制冷和空调工程师学会)会员

[5] IET(工程技术学会)会员

[6] WSSET(世界可持续能源技术学会)会员

[7] International Journal of Low-Carbon TechnologiesJournal of Environmentally Sustainable BuildingsAdvances in Mechanical EngineeringJournal of Engineering等期刊客座编辑

招生信息

课题组科研经费充裕,在中关村校区和西山实验室基地有实验室与先进设备仪器,充分支持学生做持续、深入、有突破性的研究探索。每年有博、硕士研究生招收指标。欢迎具备材料学、能源与动力工程、建筑环境与能源应用工程、暖通空调、工程热物理、热能工程等相关学科背景的同学加入!