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个人简介

[1] 2024.1 -- 至今 东北大学 热能工程系 教授 [2] 2018.1 -- 2023.12 东北大学 热能工程系 副教授 [3] 2014.4 -- 2017.12 东北大学 热能工程系 讲师

研究领域

1、工业系统节能与科学用能理论 2、低碳/零碳工业综合能源系统 3、工业能源大数据与智慧能源管理 4、高耗能工业需求侧灵活性 5、新型热力循环与能效提升技术

近期论文

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Liu Y, Sun W. Biochar as a sustainable alternative to pulverized coal: Comprehensive analysis of physicochemical properties, combustion performance, and environmental impact. Energy Technology, 2024, : accepted. Liu Y, Sun W, Liu X. Greening the organic Rankine cycles: Low-global warming potential working fluids for low-temperature waste heat recovery. International Journal of Exergy, 2024, 45(1/2): 126–143. Fang X, Sun W, Zuo C, Liu M. Design and 4E analysis of a hybrid air supply system for blast furnaces driven by excess pressure and waste heat recovery. Journal of Sustainable Metallurgy, 2024, 10(2): 775–796. Fang X, Sun W, Li W, Ma G. Life cycle assessment of carbon footprint in dual-phase automotive strip steel production. Environmental Science and Pollution Research, 2024, 31(17): 26300–26314. Fang X, Sun W, Li W, Ma G, Wang P, Zuo C. Process-based life cycle inventory framework for assessing the carbon footprint of products from complex production paths: Case of dual-phase automotive strip steel. Journal of Cleaner Production, 2024, 447: 141551. 刘新民, 路明, 刘旭, 刘书含, 孙文强. 球团回转窑煤粉供入量预测. 冶金能源, 2024, 43(2): 30–35. Wang J, Sun W. Decomposition of the site-level energy consumption and carbon dioxide emissions of the iron and steel industry. Environmental Science and Pollution Research, 2024, 31(11): 16511–16529. Fu W, Sun W, Huo X. Design and thermodynamic investigation of a waste heat-assisted compressed air energy storage system integrating thermal energy storage and organic Rankine cycle. Energy Technology, 2024, 12(2): 202300838. Ma S, Sun W. Design and experimental investigation of a natural gas burner for pellet rotary kilns. International Journal of Oil, Gas and Coal Technology, 2023, 34(2): 173–186. Wang J, Wang Q, Sun W. Optimal power system flexibility-based scheduling in iron and steel production: A case of steelmaking–refining–continuous casting process. Journal of Cleaner Production, 2023, 414: 137619. Wang J, Wang Q, Sun W. Quantifying flexibility provisions of the ladle furnace refining process as cuttable loads in the iron and steel industry. Applied Energy, 2023, 342: 121178. 傅文煜, 孙文强, 王连勇. 煤气化渣的应用研究进展. 环境工程, 2023, 41(12): 319–328. Liu SH, Sun WQ, Li WD, Jin BZ. Prediction of blast furnace gas generation based on data quality improvement strategy. Journal of Iron and Steel Research International, 2023, 30(5): 864–874. Liu S, Sun W. Attention mechanism-aided data- and knowledge-driven soft sensors for predicting blast furnace gas generation. Energy, 2023, 262: 125498. 房晓晴, 刘书含, 孙文强. 高炉煤气管网水力建模及调度策略. 东北大学学报(自然科学版), 2023, 44(1): 69–75. 王强, 孙文强, 徐宪东, 周越, 吴建中, 蔡九菊. 钢铁工业钢包精炼炉(LF炉)作为可削减负荷的灵活性评估. 材料与冶金学报, 2022, 21(2): 150–156. Zhang H, Sun W, Li W, Ma G. A carbon flow tracing and carbon accounting method for exploring CO2 emissions of the iron and steel industry: An integrated material–energy–carbon hub. Applied Energy, 2022, 309: 118485.【ESI高被引论文】 刘书含, 孙文强, 石晓星, 范天骄, 谢国威, 蔡九菊. 基于BP神经网络的热风炉群煤气消耗量预测. 中国冶金, 2022, 33(2): 77–83. Zhang H, Sun W, Li W, Wang Y. Physical and chemical characterization of fugitive particulate matter emissions of the iron and steel industry. Atmospheric Pollution Research, 2022, 13(1): 101272. 刘书含, 孙文强, 范天骄, 谢国威. 事件和数据融合的加热炉煤气消耗量预测方法. 材料与冶金学报, 2021, 20(4): 304–309. 赖茜, 王永, 李卫东, 刘常鹏, 马光宇, 李小玲, 孙文强. 炼钢工序颗粒物排放特征. 环境保护科学, 2021, 47(6): 112–116. 赖茜, 王子豪, 孙文强. 高炉煤气产生量预测方法对比研究. 冶金能源, 2021, 40(3): 22–26. 赖茜, 梁伟, 王世彪, 孙文强. 钢铁企业余热强化的压缩空气储能系统性能研究. 冶金能源, 2021, 40(2): 23–28. Sun W, Wang Q, Zhou Y, Wu J. Material and energy flows of the iron and steel industry: Status quo, challenges and perspectives. Applied Energy, 2020, 268: 114946.【ESI高被引论文】 Sun W, Shao Y, Zhao L, Wang Q. Co-removal of CO2 and particulate matter from industrial flue gas by connecting an ammonia scrubber and a granular bed filter. Journal of Cleaner Production, 2020, 257: 120511. Sun W, Wang Q, Zheng Z, Cai J. Material-energy-emission nexus in the integrated iron and steel industry. Energy Conversion and Management, 2020, 213: 112828. Sun W, Wang Z, Wang Q. Hybrid event-, mechanism- and data-driven prediction of blast furnace gas generation. Energy, 2020, 199: 117497. Sun W, Xu X, Lv Z, Mao H, Wu J. Environmental impact assessment of wastewater discharge with multi-pollutants from iron and steel industry. Journal of Environmental Management, 2019, 245: 210–215. Sun W, Zhou Y, Lv J, Wu J. Assessment of multi-air emissions: Case of particulate matter (dust), SO2, NOx and CO2 from iron and steel industry of China. Journal of Cleaner Production, 2019, 232(9): 350–358. Sun WQ, Xu XD, Zhang Y, Wu JZ. Chlorine corrosion of blast furnace gas pipelines: Analysis from thermal perspective. Journal of Mining and Metallurgy, Section B: Metallurgy, 2019, 55(2): 197–208. 王彦辉, 赵亮, 孙文强, 叶竹, 蔡九菊. 炼焦工序颗粒物排放特征. 环境科学, 2018, 39(12): 5359–5364.【入选中国知网精品期刊双语出版项目】 Sun W, Wang Y, Zhang F, Zhao Y. Dynamic allocation of surplus byproduct gas in steel plant by dynamic programming with reduced state space algorithm. Engineering Optimization, 2018, 50(9): 1578-1592. Sun WQ, Yue XY, Wang YH, Cai JJ. Energy and exergy recovery from exhaust hot water using ORC (organic Rankine cycle) and a retrofitted configuration. Journal of Central South University, 2018, 25(6): 1464-1474.【期刊2018年度优秀论文】 Sun W, Yue X, Wang Y. Exergy efficiency analysis of ORC (organic Rankine cycle) and ORC-based combined cycles driven by low-temperature waste heat. Energy Conversion and Management, 2017, 135: 63-73.【ESI高被引论文】 Sun W, Zhang F. Design and thermodynamic analysis of a flash power system driven by process heat of continuous casting grade steel billet. Energy, 2016, 116: 94-101.

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