1、 天津市技术创新引导专项, 基于正/逆有机朗肯的热泵储电系统开发与动态特性研究, 2022-10至2024-09, 主持。 2、 企事业合作项目,太阳能热电系统的研发, 2022-09至2023-09,主持。 3、 企事业合作项目,高温热泵储能系统研发,2023-04 至 2024-04,主持。 4、 企事业合作项目,热泵储电技术关键部件与系统性能测试,2023-06 至2025-06,主持。 5、 企事业合作项目,竣工测绘、人防测绘及绿色建筑技术检测技术服务,2025.05-2026.05,主持。 6、 企事业合作项目,新型散热器测试控制系统开发,2025.06-2026.5,主持。 7、 企事业合作项目,宽温域复叠式空气源热泵系统研发,2026.01-2026.07,主持。 8、 企事业合作项目,热泵储电机组设计开发服务,2026.01-2026.07,主持。 9、 天津市重点实验室开放基金,太阳能光伏光热驱动热泵储电系统储能特性研究,2026.01-2026.12,主持。 10、 部属重点实验室开放基金,核电站余热驱动型热泵储电系统优化设计研究,2026.01-2027.12,主持。 11、 国家重点研发计划项目子课题,建筑材料与室内环境的监测预防调控智能一体化技术,2024.01-2028.12,参与。 12、 天津市技术创新引导专项,高速地铁列车过站行驶空气动力学及舒适度研究,2024.01-2025.12,参与。 13、 国家“973”科技项目,能质调配转化及系统能量优化集成方法,2015至2019,参与。 14、 企事业合作项目,绿色建筑碳排放计算模型开发,2021-05至2022-05,参与。 15、 企事业合作项目,天津市建筑领域碳达峰行动方案编制数据调研及重点任务技术服务,2021-05至2021-12,参与。 16、 企事业合作项目,集中供热能质提升关键技术研发与应用,2024.12-2025.7.1,参与。 |
论文: [1]宋文俊,贺中禄*等人,基于亚临界有机朗肯循环的热泵储电系统性能实验研究,储能科学与技术,2024,Vol.13,No.12 [2] W. Song, B. cao, Zhonglu He*, S. Ma, X. ma, C. Guo, Experimental study of pumped thermal electricity storage system based on Rankine cycle, Applied Thermal Engineering, 277 (2025) 126977. [3] B. Cao, Y. Shi, Zhonglu He*, S. Ma, X. Gao, W. Song, H. Ma, Performance analysis and optimization of finned tube latent thermal energy storage in pumped thermal electricity storage system based on Rankine cycle, Applied Thermal Engineering, 279 (2025) 128110. [4] B. Cao, L. Liu, S. Ma, Y. Wu, Zhonglu He*, W. Song, H. Ma, Investigation on heat transfer characteristics of PCM during heat storage/release in pumped thermal electricity storage system, Applied Thermal Engineering, 267 (2025) 125707. [5] Y. You, Y. Huo, C. Guo, Zhonglu He*, Y. Zhao, B. Yang, J. Chen, C. Meng, X. Chen, Prediction of the thermodynamic performance evolution of a novel aerogel composite insulation material under service conditions based on data-driven methods, Energy and Buildings, 354 (2026) 116960. [6] Zhonglu He, Ning Zhou, Chunmei Guo,Jiulong Liu*,Study on configurational operation strategy of ground heat exchangers under the effect of groundwater flow. Thermal Science and Engineering Progress.2024. Volume 47, January 2024, 102302. [7] Zhonglu He, Yufeng Zhang, Shengming Dong, Hongting Ma*. Thermodynamic analysis of a low-temperature Organic Rankine cycle power plant operating at off-design conditions, Applied thermal engineering ,Volume 113,25 February 2017,Pages 937-951. [8] Zhonglu He, Yufeng Zhang, Zhangxiang Wu, Hongting Ma*. Experimental study on a bifunctional heat utilization system of power generation and heat pump, Applied thermal engineering ,Volume 124,September 2017, Pages 71-82. [9] Shengming Dong, Yufeng Zhang*, Zhonglu He, et al. Optimum design method of Organic Rankine Cycle system based on semi-empirical model and experimental validation. Energy Conversion and Management, Volume 108, 15 January 2016, Pages 85-95. [10] Shengming Dong, Yufeng Zhang*, Zhonglu He, et al. Investigation of Support Vector Machine and Back Propagation Artificial Neural Network for performance prediction of the organic Rankine cycle system. Energy,Volume 144, 1 February 2018, Pages 851-864 [11] Zhangxiang Wu, Yufeng Zhang, Zhonglu He, et al. Performance investigation of a bi-functional integration system for power and heat supply. Applied thermal engineering ,Volume 148, 5 February 2019, Pages 714-721. [12] RanZheng, Yufeng Zhang, Xiaohui Yu*, Zhonglu He, Shengming Dong. Experimental research and feasibility analysis of low-temperature power generation system used in the petrochemical industry. Journal of Energy Engineering. 标准: [1]国家标准,《低温热源双循环余热回收利用装置性能测试方法》GB/T 40286-2021,参编 [2]国家标准,《低温余热双循环发电装置》GB/T37819-2019,参编 [3]地方标准,《低温热源双循环发电机组》DB 14/T845 ,参编 [4]地方标准,《公共机构节水管理与评价技术规范》DB 12/T 1239-2023 ,参编 [5]地方标准,《绿色公共机构评价技术规范》DB 12/T 995-2023 ,参编 [6]团体标准,《建筑光伏系统检测标准》T/CECS 1952- 2025,参编 |