2022
DOI: 10.1016/j.est.2022.104294
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Improvement of a liquid air energy storage system: Investigation of performance analysis for novel ambient air conditioning

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Cited by 15 publications
(4 citation statements)
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“…Air compressor (AC) [26,33] Z AC = 7900 (P AC ) 0.62 Air turbine (AT) [26,33] Z AT = 1100 (P AT ) 0.81 Cryo-turbine (CT) [26,33] Z CT = 1100(P CT ) 0.81 Inter-cooler (IC) [6] Z IC = 12, 000(A IC /100) 0.6 Condenser (CON) [6] Z CON = 32, 800(A CON /80) 0.68 Evaporator (EVA) [6] Z EVA = 32, 800(A EVA /80) 0.68 Re-heater (RH) [6] Z RH = 12, 000(A RH /100) 0.6 Superheater (SH) [6] Z SH = 12, 000(A SH /100) 0.6 Liquid air tank (LAT) [6] Z LAT = 320 × V LAT Liquid methanol tank (LMT) [33] Z LMT = 572 × V LMT Liquid propane tank (LPT) [33] Z LPT = 1326 × V LPT Liquid thermal oil tank (LOT) [33] Z LOT = 423 × V LOT Liquid air pump (LAP) [33] Z LAP = 483P LAP LNG pump (LNGP) [28] Z LNGP = 1120 (P LNGP ) 0.8 Combustion chamber (CRV) [34] Z CRV = 25.65•m CRV 0.995−p CRV,out /p CRV,in 1 + e (0.018•T CRV,out −26.4) Flue gas turbine (GT) [34] Z GT = 1100 (P GT ) 0.81 Air throttle valve (ATV) [6] Z ATV = 114.5 (m ATV ) 0.67 Separator (SEP) [6] Z SEP = 114.5 (m SEP ) 0.67 Table 3. Investment cost models for the materials.…”
Section: Equipment Model (Usd)mentioning
confidence: 99%
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“…Air compressor (AC) [26,33] Z AC = 7900 (P AC ) 0.62 Air turbine (AT) [26,33] Z AT = 1100 (P AT ) 0.81 Cryo-turbine (CT) [26,33] Z CT = 1100(P CT ) 0.81 Inter-cooler (IC) [6] Z IC = 12, 000(A IC /100) 0.6 Condenser (CON) [6] Z CON = 32, 800(A CON /80) 0.68 Evaporator (EVA) [6] Z EVA = 32, 800(A EVA /80) 0.68 Re-heater (RH) [6] Z RH = 12, 000(A RH /100) 0.6 Superheater (SH) [6] Z SH = 12, 000(A SH /100) 0.6 Liquid air tank (LAT) [6] Z LAT = 320 × V LAT Liquid methanol tank (LMT) [33] Z LMT = 572 × V LMT Liquid propane tank (LPT) [33] Z LPT = 1326 × V LPT Liquid thermal oil tank (LOT) [33] Z LOT = 423 × V LOT Liquid air pump (LAP) [33] Z LAP = 483P LAP LNG pump (LNGP) [28] Z LNGP = 1120 (P LNGP ) 0.8 Combustion chamber (CRV) [34] Z CRV = 25.65•m CRV 0.995−p CRV,out /p CRV,in 1 + e (0.018•T CRV,out −26.4) Flue gas turbine (GT) [34] Z GT = 1100 (P GT ) 0.81 Air throttle valve (ATV) [6] Z ATV = 114.5 (m ATV ) 0.67 Separator (SEP) [6] Z SEP = 114.5 (m SEP ) 0.67 Table 3. Investment cost models for the materials.…”
Section: Equipment Model (Usd)mentioning
confidence: 99%
“…The dynamic payback period (DPP) represents the payback years that the discounted NPV recovers the initial investment cost. The DPP method takes into account the influence of the time factor on the monetary value, which is defined as [26]:…”
Section: Materials Mathematical Model (Usd)mentioning
confidence: 99%
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“…The peak electricity load is also low and has a good percentage of RES. These days, many researchers are working on optimizing TTES and conducting technoeconomic analyses to integrate it with renewable energy sources [29][30][31].…”
Section: Introductionmentioning
confidence: 99%