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王丽伟
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[1]wangliwei. Performance analysis on a novel self-adaptive sorption system to reduce nitrogen oxides emission of diesel engine APPLIED THERMAL ENGINEERING, 2017,
[2]wangliwei. Investigation on an innovative resorption system for seasonal thermal energy storage ENERGY CONVERSION AND MANAGEMENT, 2017,
[3]wangliwei. A modified ammonia-water power cycle using a distillation stage for more efficient power generation ENERGY, 2017,
[4] 低温余热驱动的无泵有机朗肯循环瞬时稳态发电性能 化工学报, 2017,
[5] Analysis of resorption working pairs for air conditioners of electric vehicles APPLIED ENERGY, 2017,
[6]wangliwei. 一种吸附式空气取水装置的性能实验 化工学报, 2016,
[7] Optimization and performance experiments of a MnCl2/CaCl2–NH3 two-stage solid sorption freezing system for a refrigerated truck International Journal of refrigeration, 2016,
[8] Experimental investigation on a MnCl2-CaCl2-NH3 resorption system for heat and refrigeration cogeneration APPLIED ENERGY, 2016,
[9] Optimization and performance experiments of a MnCl2/CaCl2-NH3 two-stage solid sorption freezing system for a refrigerated truck INTERNATIONAL JOURNAL OF REFRIGERATION-REVUE INTERNATIONALE DU FROID, 2016,
[10] Investigation of the Solid Sorption Freezing System Driven by the Engine Exhaust for a Refrigerated Truck JOURNAL OF ENGINEERING THERMOPHYSICS, 2016,
[11] Investigation on non-equilibrium performance of composite adsorbent for resorption refrigeration Energy Conversion and Management, 2016,
[12]wangliwei. Investigation on non-equilibrium performance of composite adsorbent for resorption refrigeration ENERGY CONVERSION AND MANAGEMENT, 2016,
[13] [2] . Experimental investigation on a MnCl2–CaCl2–NH3 thermal energy storage system. , 2016, . June Renewable Energy, 2016,
[14]wangliwei. Thermodynamic analysis of mass and heat recovery adsorption refrigeration cycles and scheme selection CIESC JOURNAL, 2016,
[15] Experimental investigation of a MnCl2/CaCl2-NH3 two-stage solid sorption freezing system for a refrigerated truck ENERGY, 2016,
total241 6/17
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