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Published bySharleen Jordan Modified over 8 years ago
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Class : 가 Group : 4 Member : 김경홍, 김두용, 임채원, 이주호 임채원, 이주호
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Contents Introduction Experiment’s environment and equation (COP) Circuit Step1 - 5 COP Conclusion Q&A
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Introduction Purpose : To optimize COP How did we drive the machine? Step1 : All parts were drove fully. Step2 : Speed of condenser’s fan slowed down. Step3 : Speed of evaporator’s fan and condenser’s fan slowed down. Step4 : Turn the expansion valve to reduce the quantity of refrigerant Step5 : Only speed of evaporator’s fan slowed down.
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Experiment’s environment and equation -5~+5 O CDeclination 0 O CStandard Temp. 100 min.Total Input Time 1 min.Data Input Time 28.8 %Laboratory(Hum.) 22.6 O CLaboratory(Temp.) 08. 04. 18Date Condition
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Experiment’s environment and equation COP equation
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Circuit
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Step 1 : All parts were drove fully. Work (↑) Refrigeration effect (↓)
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Step 1 : All parts were drove fully. COP (↓)
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Step 2 : Speed of condenser’s fan slowed down. Compressor’s pressure (↑) -> Condenser’s driving time (↑) Heat exchange per time (↑) Cycle time (↑) Condenser Compressor
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Step3 : Speed of evaporator’s fan and condenser’s fan slowed down. Unstable temperature The longest cycle time Compressor Condenser
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Step3 : Speed of evaporator’s fan and condenser’s fan slowed down. Evaporator’ Finite element analysis 0.5 m/s Fan speed 0.2 m/s Fan speed
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Step4 : Turn the expansion valve to reduce the quantity of refrigerant Compressor’s temperature and pressure (↑) Evaporator entrance temperature (↑) Evaporator Compressor
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Step5 : Only speed of evaporator’s fan slowed down. Condenser enthalpy : High High heat exchange : Fast and Big CondenserEvaporator Condenser
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COP (coefficient of performance) COP of step 2,3,4 was becoming slowly low. Optimized experiment was step5.
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Conclusion Q H is decided by fan speed of condenser. Q L is decided by fan speed of evaporator. Turing expansion valve causes temperature of evaporator and compressor to rise.
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Question and answer Q & A
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