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7.3.4 Experimental Analysis 197 7.3.4.1 Refrigerant System 197 7.3.4.2 Experimental Results and Discussion 198 7.4 Dedicated Mechanical Subcooling 201 7.4.1 Optimum Parameters of the DMS Cycle 205 7.4.1.1 Subcooling Degree 205 7.4.1.2 Heat Rejection Pressure 207 7.4.2 Theoretical Studies 209 7.4.3 Experimental Studies 210 7.5 Integrated Mechanical Subcooling 212 7.5.1 Optimum Parameters of the IMS Cycle 215 7.5.1.1 Subcooling Degree 215 7.5.1.2 Heat Rejection Pressure 216 7.5.2 Theoretical Studies 219 7.6 Summary 219 Nomenclature 220 Greek Symbols 220 Subscripts 221 References 221 8 High Temperature CO2 Heat Pump System and Optimization 229 Lin Chen and Dipankar N. Basu 8.1 Background 229 8.2 Basic System Design 230 8.2.1 Key Features in High Temperature CO2 Heat Pump 230 8.2.2 Overall System Design 231 8.2.3 Real System Construction 231 8.3 High Temperature Operation and Key Equipment 232 8.3.1 Basic High Temperature CO2 Heat Pump Operations 232 8.3.1.1 Water Source Heat Pump 233 8.3.1.2 Air Source Heat Pump 234 8.3.1.3 Ground Source Heat Pump 234 8.3.1.4 Hybrid Heat Pump 234 8.3.2 Compressors 234 8.3.3 Heat Exchanger/Gas Cooler 236 8.3.4 Expander 238 8.4 System Optimization 238 8.4.1 Basic System Components Optimization 238 8.4.2 Discharge Pressure Optimization 238 8.4.3 System Optimization 239 8.5 Applications and Challenges 239 8.5.1 Heating and Cooling 239 8.5.2 Other Industrial Sectors 240 8.5.3 COP Analysis and Comparison 241 8.6 Commercialized Products by High Temperature CO2 Heat Pump 242 Contents ixPDF Image | What is a heat pump
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CO2 Organic Rankine Cycle Experimenter Platform The supercritical CO2 phase change system is both a heat pump and organic rankine cycle which can be used for those purposes and as a supercritical extractor for advanced subcritical and supercritical extraction technology. Uses include producing nanoparticles, precious metal CO2 extraction, lithium battery recycling, and other applications... More Info
Heat Pumps CO2 ORC Heat Pump System Platform More Info
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