In-tube performance evaluation of an air-cooled condenser with liquid–vapor separator
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- Type
- article
- Published
- 2014-12-31
- Cited by
- 29
- References
- 16
- OpenAlex
- https://openalex.org/W2055697036
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:97849636
Keywords
Refrigerant, Pressure drop, Thermodynamics, Heat transfer coefficient, Heat flux
References
- Condensation heat transfer characteristics of CO2 in a horizontal smooth tube
- Application of rough surfaces to heat exchanger design
- Prediction and verification of the thermodynamic performance of vapor–liquid separation condenser
- Experimental verification of a condenser with liquid–vapor separation in an air conditioning system
- Condensation heat transfer and pressure drop of HFC-134a in a helically coiled concentric tube-in-tube heat exchanger
- The Concept of Irreversibility in Heat Exchanger Design: Counterflow Heat Exchangers for Gas-to-Gas Applications
- Condensation heat transfer characteristics of carbon dioxide in a horizontal smooth tube
- Condensation of pure and near-azeotropic refrigerants in microfin tubes: A new computational procedure
- Optimal configuration of cross flow plate finned tube condenser based on the second law of thermodynamics.
- Transferts de chaleur lors de la condensation du mélange HFC23/HFC134a à l'intérieur d'un tube lisse horizontal
- Experimental investigation of condensation heat transfer and pressure drop of R22, R410A and R407C in mini-tubes
- Experimental investigation on condensation heat transfer and pressure drop of new HFC refrigerants (R134a, R125, R32, R410A, R236ea) in a horizontal smooth tube
- Performances of a split-type air conditioner employing a condenser with liquid–vapor separation baffles.
- Experimental study on condensation heat transfer and pressure drop in horizontal smooth tube for R1234ze(E), R32 and R410A
- The effects of corrugation pitch on the condensation heat transfer coefficient and pressure drop of R-134a inside horizontal corrugated tube
- Heat transfer in-tube condensation of a zeotropic mixture of HFC23/HFC134a in a horizontal smooth tube
- Condensation heat transfer and pressure drop of HFC-134a in a helically coiled concentric tube-in-tube heat exchanger
Cited by
- Innovative and sustainable solutions of clean energy technologies and policies (Part I)
- Prediction and verification of the thermodynamic performance of vapor–liquid separation condenser
- Experimental investigation on microchannel condensers with and without liquid–vapor separation headers
- Mathematical modelling and optimization of the liquid separation condenser used in organic Rankine cycle
- Mathematical Optimization of the Liquid Separation Condenser Used in the Organic Rankine Cycle
- Experimental investigation on the thermodynamic performance of double-row liquid–vapor separation microchannel condenser
- Impact of helical baffle structure on heat transfer performance of vertical condensers
- Performance analysis of organic Rankine cycles using R600/R601a mixtures with liquid-separated condensation
- Separation of Liquid and Vapor in Header of MCHE
- Optimized liquid-separated thermodynamic states for working fluids of organic Rankine cycles with liquid-separated condensation
- Thermo-economic-environmental optimization of a liquid separation condensation-based organic Rankine cycle driven by waste heat
- Mathematical modelling and structural optimization of a micro-channel liquid separation condenser in organic Rankine cycle and refrigeration cycle
- Numerical simulation of multi-pass parallel flow condensers with liquid-vapor separation
- Analysis of the heat transfer characteristics of the liquid-vapor separation condenser based on a condensate growth model in horizontal tube
- Thermo-economic performance evaluation of emerging liquid-separated condensation method in single-pressure and dual-pressure evaporation organic Rankine cycle systems
- Comparative study of heat transfer enhancement on liquid-vapor separation plate condenser
- Thermo-economic performance improvement of butane/isopentane mixtures in organic Rankine cycles by liquid-separated condensation method
- Simultaneous design and off-design operation optimization of a waste heat-driven organic Rankine cycle using a multi-period mathematical programming method
- Thermo-economic design, optimization, and evaluation of a novel zeotropic ORC with mixture composition adjustment during operation
- Numerical simulation on the header-orifice structure-based liquid-vapor separator used in liquid-separation condenser
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