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王丽伟
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[1]wangliwei. Chemisorption cold storage system powered by low grade thermal energy 化工学报, 2010,
[2] Anisotropic thermal conductivity and permeability of compacted expanded natural graphite APPLIED THERMAL ENGINEERING, 2010,
[3] Anisotropic thermal conductivity and permeability of compacted expanded natural graphite Applied Thermal Engineering, 2010, 30(13)1805-1811, 2010,
[4]wangliwei. Performance Improvement of a Combined Double-Way Thermochemical Sorption Refrigeration Cycle with Reheating Process AICHE JOURNAL, 2010,
[5] A two-stage deep freezing chemisorption cycle driven by low-temperature heat source ENERGY CONVERSION AND MANAGEMENT, 2010,
[6]wangliwei. Experimental study of a novel CaCl2/expanded graphite-NH3 adsorption refrigerator INTERNATIONAL JOURNAL OF REFRIGERATION-REVUE INTERNATIONALE DU FROID, 2010,
[7]wangliwei. Heat transfer performance test and simulation for solidified compound adsorbent of hydrogen storage CHEMICAL ENGINEERING, 2010,
[8]wangliwei. Experimental investigation on a combined double-way thermochemical and adsorption refrigeration system 5TH ASIAN CONFERENCE ON REFRIGERATION AND AIR CONDITIONING, ACRA 2010 - GREEN BREEZE FROM ASIA: FRONTIERS OF REFRIGERANTS, HEAT TRANSFER AND SYSTEM, 2010,
[9] A comparison of the performances of adsorption and resorption refrigeration systems powered by the low grade heat RENEWABLE ENERGY, 2009,
[10]wangliwei. Application of a New Type of Composite Adsorbent in Adsorption Chilling Systems JOURNAL OF REFRIGERATION, 2009,
[11]wangliwei. Sorption performance of consolidated composite sorbent used in; solar-powered sorption air-conditioning system JOURNAL OF CHEMICAL INDUSTRY AND ENGINEERING (CHINA), 2009,
[12] A Review on Adsorption Working Pairs for Refrigeration Renewable and Sustainable Energy Reviews. 2009, 13(3): 518-534, 2009,
[13] A review on adsorption working pairs for refrigeration RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2009,
[14] A comparison of the performances of adsorption and resorption refrigeration systems powered by the low grade heat Renewable Energy, 2009, 34: 2373–2379, 2009,
[15]wangliwei. High-efficient thermochemical sorption refrigeration driven by low-grade thermal energy CHINESE SCIENCE BULLETIN, 2009,
total241 12/17
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