Pages that link to "Item:Q1046372"
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The following pages link to Improved flow pattern map for accurate prediction of the heat transfer coefficients during condensation of R-134a in smooth horizontal tubes and within the low-mass flux range (Q1046372):
Displaying 11 items.
- Condensation heat transfer and flow characteristics of R-134a flowing through corrugated tubes (Q547654) (← links)
- Experimental analysis for the determination of the convective heat transfer coefficient by measuring pressure drop directly during annular condensation flow of R134a in a vertical smooth tube (Q632578) (← links)
- Condensation heat transfer and pressure drop of HFC-134a in a helically coiled concentric tube-in-tube heat exchanger (Q856575) (← links)
- In-tube condensation performance of refrigerants considering penalization terms (exergy losses) for heat transfer and pressure drop (Q985192) (← links)
- Experimental investigation of convective heat transfer coefficient during downward laminar flow condensation of R134a in a vertical smooth tube (Q1007935) (← links)
- A heat transfer correlation for condensation inside horizontal smooth tubes using the population balance approach (Q1297301) (← links)
- Probabilistic flow pattern-based heat transfer correlation for condensing intermittent flow of refrigerants in smooth horizontal tubes (Q2379488) (← links)
- Condensation heat transfer and pressure drop of R134a in annular helicoidal pipe at different orientations (Q2381692) (← links)
- Correlation for boiling heat transfer of R-134a in horizontal tubes including effect of tube diameter (Q2470676) (← links)
- Prediction of two-phase condensation in horizontal tubes using probabilistic flow regime maps (Q2476033) (← links)
- Heat transfer augmentation by coiled wire inserts during forced convection condensation of R-22 inside horizontal tubes (Q3595215) (← links)