Experimental investigation for the spiral coiled capillary tube for various spiral pitches for the flow of refrigerant R32
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[1] Ravi Kumar,et al. Experimental analysis of mass flow rate for partially condensed R-32 in an adiabatic straight capillary tube , 2021, Experimental heat transfer.
[2] M. Rasti,et al. A generalized continuous empirical correlation for predicting refrigerant mass flow rates through adiabatic capillary tubes , 2018, Applied Thermal Engineering.
[3] Ravi Kumar,et al. Adiabatic flow characteristics of R-600a inside a helically coiled capillary tube , 2018 .
[4] Jagdev Singh,et al. Use of Artificial Neural Network approach for depicting mass flow rate of R134a /LPG refrigerant through straight and helical coiled adiabatic capillary tubes of vapor compression refrigeration system , 2018 .
[5] K. Hoffmann,et al. Numerical-based non-dimensional analysis of critical flow of R-12, R-22, and R-134a through horizontal capillary tubes , 2015 .
[6] A. Mujumdar,et al. Numerical analysis of laminar heat transfer performance of in-plane spiral ducts with various cross-sections at fixed cross-section area , 2012 .
[7] Akhilesh Gupta,et al. An experimental study of the flow of R-407C in an adiabatic helical capillary tube , 2010 .
[8] Christian J.L. Hermes,et al. Algebraic solution of capillary tube flows: Part I: Adiabatic capillary tubes , 2010 .
[9] P. Sahoo,et al. An experimental study of the flow of R-134a inside an adiabatic spirally coiled capillary tube , 2008 .
[10] Li Yang,et al. A generalized correlation for the characteristics of adiabatic capillary tubes , 2008 .
[11] Z. Yufeng,et al. Experimental investigation on hysteresis effect of refrigerant flowing through a coiled adiabatic capillary tube , 2006 .