Title of article :
Numerical analysis of refrigerant flow along non-adiabatic capillary tubes using a two-fluid model
Author/Authors :
A.L. Seixlack، نويسنده , , M.R. Barbazelli، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Pages :
9
From page :
523
To page :
531
Abstract :
This work presents a numerical model to simulate steady state refrigerant flow along capillary tube-suction line heat exchangers, commonly used in small refrigeration systems. The flow along the straight and horizontal capillary tube is divided into two regions: a single-phase and a two-phase flow region. The flow is taken as one-dimensional and the metastable flow phenomenon is neglected. The two-fluid model is employed for the two-phase flow region, considering the hydrodynamic and the thermodynamic non-equilibrium between the liquid and vapor phases. Comparisons are made with experimental measurements of the mass flow rate and temperature distribution along capillary tube-suction line heat exchangers working with refrigerant R134a in different operating conditions. The results indicate that the present model provides a good estimation of the refrigerant mass flow rate. Moreover, comparisons with a homogeneous model are also made. Some computational results referring to the quality, void fraction and velocities of each phase are also presented and discussed.
Keywords :
Non-adiabatic capillary tube , Two-fluid model , computer modeling
Journal title :
Applied Thermal Engineering
Serial Year :
2009
Journal title :
Applied Thermal Engineering
Record number :
1041829
Link To Document :
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