@ARTICLE{Bieliński_Henryk_Validation_2016, author={Bieliński, Henryk}, number={No 3}, journal={Archives of Thermodynamics}, pages={109-138}, howpublished={online}, year={2016}, publisher={The Committee of Thermodynamics and Combustion of the Polish Academy of Sciences and The Institute of Fluid-Flow Machinery Polish Academy of Sciences}, abstract={The current paper presents the experimental validation of the generalized model of the two-phase thermosyphon loop. The generalized model is based on mass, momentum, and energy balances in the evaporators, rising tube, condensers and the falling tube. The theoretical analysis and the experimental data have been obtained for a new designed variant. The variant refers to a thermosyphon loop with both minichannels and conventional tubes. The thermosyphon loop consists of an evaporator on the lower vertical section and a condenser on the upper vertical section. The one-dimensional homogeneous and separated two-phase flow models were used in calculations. The latest minichannel heat transfer correlations available in literature were applied. A numerical analysis of the volumetric flow rate in the steady-state has been done. The experiment was conducted on a specially designed test apparatus. Ultrapure water was used as a working fluid. The results show that the theoretical predictions are in good agreement with the measured volumetric flow rate at steady-state.}, type={Artykuły / Articles}, title={Validation of the generalized model of two-phase thermosyphon loop based on experimental measurements of volumetric flow rate}, URL={http://ochroma.man.poznan.pl/Content/105631/PDF/08_paper.pdf}, doi={10.1515/aoter-2016-0023}, keywords={thermosyphon loop, two-phase flow, minichannels}, }