发文时间:2025-02-02 撰稿人:

主要期刊论文

[1] J.T. Li#, G.Wang#*, Y.H. Zhao, X.Y. Cui, H.C. Cui, Y.X. Xiong. Investigation on Saturation Vapor Pressure of NH3-H2O-LiBr in Absorption Energy Storage[J]. Heat Transfer Engineering,2024,(SCI,EI,IF="2.3",JCR Q4)

[2] J.L. Gao#, G. Wang#*, J.T. Li, X.Y. Cui, Y.X. Ya, X.S. Lv. Design and Verification of Experimental Device for Pressurized Bubbling Apsorption Transport Characteristics[J]. Buildings,2024,(SCI, EI,IF="3.8",JCR Q3)

[3] G.Wang#*, J.T. Li, G. Yan, R.J. Xu, G.Z. Xie, X.S Lü. Numerical investigation on heat and mass transfer characteristics of inclined plate falling absorption with nano-Lithium Bromide solution[J]. Applied Thermal Engineering, (2023)122124.(SCI, EI, IF=6.54," JCR Q1)

[4] J.H. Li#, G. Wang#*, J.T. Li, et al.  Empirical model for predicting the viscosity of lithium bromide solution with added CuO nanoparticles and E414[J]. Frontiers in Energy Research, 01(2023) (SCI, EI, IF="3.858," JCR Q3)

[5] G. Wang#*, P.W. Dong, Y. Lu, M. Zeng, Q.L. Zhang. Experimental and theoretical investigation on the surface tension of nano-Lithium Bromide solution[J]. International Communications in Heat and Mass Transfer, 123(2021): 105231.(SCI, EI, IF="5.683," JCR Q1)

[6] G. Wang#, M. Zeng*, Q.L. Zhang. Experimental Investigation of Saturated Pressure and Mass Transfer Characteristics of Nano-Lithium Bromide Solution[J]. International Communications in Heat and Mass Transfer, 115(2020): 104605, (SCI, EI, IF="4.127," JCR Q1)

[7] G. Wang#, Q.L. Zhang, M. Zeng*, et al. Investigation on Mass Transfer Characteristics of the Falling Film Absorption of LiBr Aqueous Solution Added with Nanoparticles[J]. International Journal of Refrigeration, 89(2018)149-158 (SCI, EI, IF="3.233," JCR Q2)

[8]  F. Liu#, X.F. Zhang, J.R. Zeng, Y.F. Li, G Wang*. Numerical Study on Indoor Heat and Moisture Transfer Characteristics of an Ancient Palace Buiding in Beijing[J]. Processes. 2023, 7(11):1900. (SCI, IF="3.352", JCR Q2)

[9] Q.L. Zhang#*, B.Z. Wang, G Wang*. Drying characteristics of sewage sludge preconditioned by CaO and sawdust under low-temperature drying conditions[J]. Envieronmental Technology. 2023 (SCI, IF="3.457", JCR Q3)

[10] P.W Dong#, G.Q. Liu, F. Liu, G. Yan,G. Wang*. Effect of structure and operation parameters on heat and mass transfer coefficients of single-bubble absorption for lithium bromide solution[J]. International Journal of Heat and Mass Transfer, 201(2022)123587(SCI, EI, IF=" 5.431," JCR Q1)

[11] Q.L. Zhang#*, X.C. Zhang, G. Wang. Experimental evaluation of heat transfer performance of falling film evaporator for wastewater source heat pump with backwash system. International Journal of Refrigeration, 113(2020)80-93, (SCI, EI, IF="3.233," JCR Q1)

[12] Q.L. Zhang#*, Z.S Yang, G. Wang. Numerical and experimental investigation on dynamic thermal performance of floor heating system with phase change material for thermal storage. Indoor and Built Environment, (2020)1420326X9900535,(SCI, EI, IF="1.367," JCR Q3)

[13] Q.L. Zhang#*, X.C. Zhang, D.H. Sun, G. Wang. Municipal space heating using a ground source absorption heat pump driven by an urban heating system[J]. Geothermics, 78 (2019) 224–232.( SCI, IF="3.47," JCR Q1)

[14] J. Duan#, L.X. Wang*, S.H. Zhuo, Z.Y. Meng, F. Liu, G. Wang. Seasonal variation of airborne phthalates in classroom and dormitory, and its exposure assessment in college students[J]. Energy and Buildings, 2022: 112078. ( SCI, IF="5.879," JCR Q1)

[15] Q.L. Zhang#*, Y.X. Yang, X.C. Zhang X, F. Liu, G. Wang. Carbon neutral and techno-economic analysis for sewage treatment plants[J]. Environmental Technology & Innovation, 2022: 102302. ( SCI, IF="5.263," JCR Q2)

[16] Q.L. Zhang#*, Y.M. Liu, Z.S. Yang, G. Wang, X.S. Lv. Investigation of thermal performance of cascaded latent heat thermal energy srorage system based on composite phase change matericals[J]. International Journal of Energy, 2023, 2:197-218.( SCI, IF="1.467," JCR Q4)

[17] 陈泽华#,王刚*,赵泳涵,等. 溶液吸收式蓄能循环特性分析[J]. 制冷学报,2025,(已录取,北大核心)

[18] 李季桐#, 王刚, 熊亚选*,等. 不同工质单效吸收式制冷系统的能量和火用分析[J]. 化工进展,2023,42:104-112(EI)

[19] 李季桐#, 王刚*, 熊亚选,等.  增压型鼓泡吸收输运特性实验装置的设计与研究[J]. 制冷学报, 2023,45(02):127-134.(北大核心)

[20] 王刚#*,董佩文,张威,等. 添加纳米颗粒对溴化锂溶液表面张力的影响及其机理研究[J].有色金属工程,2021,11(04):27-34.(北大核心)

[21] 王刚#*,董佩文,刘芳,等. 异辛醇影响溴化锂溶液传质特性的实验研究[J]. 有色金属(冶金部分),2020, (12):75-79. (北大核心)

[22] 王刚#,熊亚选*,吴玉庭,等. 温熔盐热管的传热启动和等温性能[J]. 化工学报,2020,71(11):5099-5106 (EI) .

[23] 刘芳#,董佩文,王刚*. 新型饱和蒸汽压及传质系数测试装置[J]. 实验室研究与探索,2020,7(39):71-73.

[24] 王刚#,张群力,郝学军.“一带一路”背景下中法合作办学建筑环境与能源应用类相关专业人才培养模式研究[J].产业与科技论坛, 2020, 19(05):190-192.

[25] 王亮亮#,王刚*,朱俊军. 夏热冬冷地区供暖现状及技术特点分析[J]. 制冷与空调,2019,8(19):1-4.

[26] 解国珍#*, 褚伟鹏, 王刚. 添加纳米粒子的溴化锂溶液传质特性[J]. 制冷学报,2016,4(32):33-38

[27] 王刚#, 解国珍*, 王亮亮. 溴化锂吸收式循环的内外热物理参数与机组制冷特性耦合[J]. 化工学报, 2012,63:1-7(EI).

[29] 王刚#, 解国珍*, 张丽蓉. 制冷空调行业HCFCs工质替代的分析[J]. 制冷与空调(四川), 2012,1:18-23.

[29] 解国珍#*, 张新兴, 王刚. 添加纳米微粒的溴化锂溶液稳定性及烧结特性研究[J].制冷学报,2012,1:7-11

主要会议论文

[1] G. Wang#*, Q.L. Zhang, G.Z. Xie, et al. Experimental Investigation of Dynamic Mass Transfer Characteristics between The Gas-Liquid Interface of H2OLiBr Added with Nanoparticles. The 9th Asian Conference on Refrigeration and Air-conditioning. 2018-06.

[2] 王刚#*,解国珍,齐好,等. 气、液两相添加剂对溴化锂溶液传质特性的协同影响. 2018年第四届中国制冷空调专业产业论坛,2018-10

[3] 王刚#*,李季桐,崔晓岩,等,氨-水-溴化锂三元工质饱和蒸汽压力的测量与关联. 2023年中国制冷学会年会,2023-11

[4] Y.H.Zhao#, G. Wang*, J.T. Li, et al. Experimental study on the characteristics of lithium bromide absorption three-phase energy storage.  the 3rd International Conference on Energy Storage and Saving (ICENSS-2024), 2024-09.

发明专利

[1] 王刚,陈泽华,李季桐,等. 基于互叉式蜂窝平板溢流换热的三相蓄能装置及方法. 发明专利:ZL202211015416.1

[2] 王刚,陈泽华,李季桐,等. 增压型三相蓄能装置及其控制方法. 发明专利:ZL202211222848.X

[3] 李季桐(学),王刚,陈泽华,等. 用于三相溶液蓄能的互叉式蜂窝平板溢流换热器及方法. 发明专利:ZL202211015390.0

[4] 王刚,李继恒,董佩文,等. 一种鼓泡吸收型溴化锂吸收式热泵及其控制方法. 发明专利:ZL202010973659.0

[5] 王刚,董佩文,刘芳,等. 一种自增压型溴化锂鼓泡吸收装置及控制方法. 发明专利:ZL202010263304.2

[6] 王刚, 李鸣儒, 任亮, 徐荣吉,等. 一种空气净化引风窗户及其引风方法. 发明专利:CN 201510214371.

[7] 王刚,熊亚选,徐荣吉等. 一种尾气处理系统及方法. 发明专利: CN201510239479.9.

[8] 王刚,张群力,徐荣吉. 一种高效节能的微通道换热器装置及方法. 发明专利:ZL201710442076.3

[9] 王刚,熊亚选,徐荣吉等. 一种尾气处理系统. 实用新型:ZL201520303238.1.

[10] 王刚,李鸣儒,任亮等. 一种空气净化引风窗户. 实用新型:ZL201520271471.6.

[11] 王刚,王增威,付德彪等. 一种流体引射装置. 实用新型:ZL 201620313716.1

[12] 王刚,朱亦珺,董佩文,张群力,刘芳. 一种液体样品真空采集装置. 实用新型专利:ZL201921499452.3

[13] 王刚,林顺磊,刘雨星,蒋鹏飞,张睿,董佩文.一种迷你空气源热泵挂烫装置. 实用新型专利:ZL201921243179.8

[14] 徐荣吉,王刚,许淑惠等. 一种小便温控冲水方法及小便池. 发明专利:CN 201510294000.1

[15] 徐荣吉,王刚,胡文举等. 吸收式制冷装置以及集热液体的流程控制方法. 发明专利:CN 201610792282.2.

[16] 熊亚选,史建峰,王刚等. 一种用于沙漠的空气调节系统及其方法. 发明专利:ZL201410692621.0

[17] 熊亚选,王刚,陈红兵等. 连续供水式房间供暖控温与热计量装置与方法. 发明专利:ZL 201710514959.0

标准编制

2021 《数据中心用冷水机组性能测试与评价方法》中国制冷学会团体标准,主要参与,已完成;

2021 《数据中心冷却系统--第1部分:综合性能系数(GCOP)测试与计算方法》中国制冷学会团体标准,主要参与,已完成;

2021 《数据中心冷却系统--第2部分:不同地区综合性能系数GCOP和能效等》中国制冷学会团体标准,主要参与,已完成;

 

访问量: 开通时间 :2019-04-14 最后更新时间 :2025-02-02