Matches in SemOpenAlex for { <https://semopenalex.org/work/W4384832010> ?p ?o ?g. }
- W4384832010 endingPage "1460" @default.
- W4384832010 startingPage "1440" @default.
- W4384832010 abstract "This study explores the differences between two novel cogeneration systems with different connection modes. These two systems are the series and parallel systems composed of the Brayton cycle, the organic flash cycle, and the organic Rankine cycle, respectively, which both recover flue gas waste heat and LNG cold energy. First, the equipment and overall system performance of the series system and the parallel system are compared from three aspects of thermodynamics, economy, and exergoenvironment to evaluate the basic performance of the two systems under initial conditions. Next, the performance variations of both systems are assessed by varying the compressor outlet pressure, flash pressure, R14 mass flow rate, and heat source temperature. Finally, the Multi-Objective Cuckoo Search algorithm is used to optimize the systems for two and three objectives, taking the exergy efficiency, payback period and product unit exergoenvironmental impact as objective functions. The final results indicate that the three-objective optimized parallel system has the best performance, the exergy efficiency, payback period, and product unit exergoenvironmental impact of that is 62.25%, 1.389 years, and 7.799 × 10−3 mpt/kJ, respectively. By comparing the performance differences between the series system and the parallel system, this study provides application ideas for engineering requirements." @default.
- W4384832010 created "2023-07-21" @default.
- W4384832010 creator A5018031390 @default.
- W4384832010 creator A5029621872 @default.
- W4384832010 creator A5036235141 @default.
- W4384832010 creator A5051646536 @default.
- W4384832010 creator A5075225025 @default.
- W4384832010 creator A5091062586 @default.
- W4384832010 date "2023-09-01" @default.
- W4384832010 modified "2023-10-18" @default.
- W4384832010 title "Comparative analysis of two cogeneration systems with different connection modes" @default.
- W4384832010 cites W1968113060 @default.
- W4384832010 cites W1970204203 @default.
- W4384832010 cites W1991224261 @default.
- W4384832010 cites W2003890325 @default.
- W4384832010 cites W2053331638 @default.
- W4384832010 cites W2102536253 @default.
- W4384832010 cites W2145103368 @default.
- W4384832010 cites W2153879578 @default.
- W4384832010 cites W219647206 @default.
- W4384832010 cites W2209981133 @default.
- W4384832010 cites W2240411306 @default.
- W4384832010 cites W2290642128 @default.
- W4384832010 cites W2476491873 @default.
- W4384832010 cites W2547923643 @default.
- W4384832010 cites W2564125435 @default.
- W4384832010 cites W2605796069 @default.
- W4384832010 cites W2616914764 @default.
- W4384832010 cites W2739874479 @default.
- W4384832010 cites W2754533469 @default.
- W4384832010 cites W2773931861 @default.
- W4384832010 cites W2776864797 @default.
- W4384832010 cites W2792261502 @default.
- W4384832010 cites W2887333028 @default.
- W4384832010 cites W2896110926 @default.
- W4384832010 cites W2904806028 @default.
- W4384832010 cites W2907580976 @default.
- W4384832010 cites W2922703668 @default.
- W4384832010 cites W2969246802 @default.
- W4384832010 cites W2990757026 @default.
- W4384832010 cites W3005763583 @default.
- W4384832010 cites W3006478760 @default.
- W4384832010 cites W3011192174 @default.
- W4384832010 cites W3016484605 @default.
- W4384832010 cites W3026029240 @default.
- W4384832010 cites W3026132159 @default.
- W4384832010 cites W3036439962 @default.
- W4384832010 cites W3037195016 @default.
- W4384832010 cites W3117677541 @default.
- W4384832010 cites W3134819857 @default.
- W4384832010 cites W3143082061 @default.
- W4384832010 cites W3158193659 @default.
- W4384832010 cites W3163332759 @default.
- W4384832010 cites W3176617145 @default.
- W4384832010 cites W3186703963 @default.
- W4384832010 cites W3197539425 @default.
- W4384832010 cites W3199223325 @default.
- W4384832010 cites W3204131182 @default.
- W4384832010 cites W3217379141 @default.
- W4384832010 cites W3217695854 @default.
- W4384832010 cites W4200340612 @default.
- W4384832010 cites W4205593568 @default.
- W4384832010 cites W4205675019 @default.
- W4384832010 cites W4210315685 @default.
- W4384832010 cites W4211109072 @default.
- W4384832010 cites W4224991087 @default.
- W4384832010 cites W4225859699 @default.
- W4384832010 cites W4236838657 @default.
- W4384832010 cites W4281552461 @default.
- W4384832010 cites W4283019122 @default.
- W4384832010 cites W4293198857 @default.
- W4384832010 cites W4293768033 @default.
- W4384832010 cites W4311766503 @default.
- W4384832010 cites W4313530568 @default.
- W4384832010 cites W4318016580 @default.
- W4384832010 cites W4320479306 @default.
- W4384832010 cites W4323349361 @default.
- W4384832010 cites W4362678147 @default.
- W4384832010 cites W4366831573 @default.
- W4384832010 doi "https://doi.org/10.1016/j.psep.2023.07.056" @default.
- W4384832010 hasPublicationYear "2023" @default.
- W4384832010 type Work @default.
- W4384832010 citedByCount "0" @default.
- W4384832010 crossrefType "journal-article" @default.
- W4384832010 hasAuthorship W4384832010A5018031390 @default.
- W4384832010 hasAuthorship W4384832010A5029621872 @default.
- W4384832010 hasAuthorship W4384832010A5036235141 @default.
- W4384832010 hasAuthorship W4384832010A5051646536 @default.
- W4384832010 hasAuthorship W4384832010A5075225025 @default.
- W4384832010 hasAuthorship W4384832010A5091062586 @default.
- W4384832010 hasConcept C101519877 @default.
- W4384832010 hasConcept C107706546 @default.
- W4384832010 hasConcept C113146524 @default.
- W4384832010 hasConcept C119599485 @default.
- W4384832010 hasConcept C121332964 @default.
- W4384832010 hasConcept C127413603 @default.
- W4384832010 hasConcept C131097465 @default.
- W4384832010 hasConcept C139719470 @default.