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Results 1 to 25 of 188

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Design and thermodynamic analysis of an H2O―LiBr AHP system for naval surface ship applicationEZGI, Cüneyt.International journal of refrigeration. 2014, Vol 48, pp 153-165, issn 0140-7007, 13 p.Article

Thermal conductivity measurement of oil in Water (O/W) nanoemulsion and oil in H2O/LiBr (O/S) binary nanoemulsion for absorption applicationHEA YOUN SUL; HONG, Hiki; YONG TAE KANG et al.International journal of refrigeration. 2011, Vol 34, Num 6, pp 1360-1365, issn 0140-7007, 6 p.Article

Numerical investigation of steam absorption in falling film of LiBr aqueous solution with solitary wavesMOHAMMAD ARIFUL ISLAM; MIYARA, Akio; SETOGUCHI, Toshiaki et al.International journal of refrigeration. 2009, Vol 32, Num 7, pp 1597-1603, issn 0140-7007, 7 p.Article

Proposal and validation of a model for the dynamic simulation of a solar-assisted single-stage LiBr/water absorption chillerEVOLA, G; LE PIERRES, N; BOUDEHENN, F et al.International journal of refrigeration. 2013, Vol 36, Num 3, pp 1015-1028, issn 0140-7007, 14 p.Article

Extension of the characteristic equation to absorption chillers with adiabatic absorbersGUTIERREZ-URUETA, G; RODRIGUEZ, P; ZIEGLER, F et al.International journal of refrigeration. 2012, Vol 35, Num 3, pp 709-718, issn 0140-7007, 10 p.Article

New method for COP optimization in water- and air-cooled single and double effect LiBr-water absorption machinesMARCOS, J. D; IZQUIERDO, M; PALACIOS, E et al.International journal of refrigeration. 2011, Vol 34, Num 6, pp 1348-1359, issn 0140-7007, 12 p.Article

Experimental performances of a LiBr-water absorption facility equipped with adiabatic absorberGUTIERREZ-URUETA, G; RODRIGUEZ, P; VENEGAS, M et al.International journal of refrigeration. 2011, Vol 34, Num 8, pp 1749-1759, issn 0140-7007, 11 p.Article

Corrosion behaviors of carbon steel in 55% LiBr solution containing PWVA inhibitorHU, X. Q; LIANG, C. H; WU, X. N et al.Materials and corrosion (1995). 2011, Vol 62, Num 5, pp 444-448, issn 0947-5117, 5 p.Article

Energy and exergy analysis of a double absorption heat transformer operating with water/lithium bromideMARTINEZ, H; RIVERA, W.International journal of energy research. 2009, Vol 33, Num 7, pp 662-674, issn 0363-907X, 13 p.Article

Moving beyond the limits of mass transport in liquid absorbent microfilms through the implementation of surface-induced vorticesBIGHAM, Sajjad; DAZHI YU; CHUGH, Devesh et al.Energy (Oxford). 2014, Vol 65, pp 621-630, issn 0360-5442, 10 p.Article

Experimental verification of the variable effect absorption refrigeration cycleXU, Z. Y; WANG, R. Z.Energy (Oxford). 2014, Vol 77, pp 703-709, issn 0360-5442, 7 p.Article

Experimental investigation of two-phase flow characteristics of LiBr/H2O solution through orifice plates in vacuum environmentSHENG WANG; XIAOYUN XIE; YI JIANG et al.International journal of refrigeration. 2014, Vol 38, pp 267-274, issn 0140-7007, 8 p.Article

Solution procedure and performance evaluation for a water-LiBr absorption refrigeration machineWONCHALA, Jason; HAZLEDINE, Maxwell; BOULAMA, Kiari Goni et al.Energy (Oxford). 2014, Vol 65, pp 272-284, issn 0360-5442, 13 p.Article

Parametric study of an absorption refrigeration machine using advanced exergy analysisSUNYOUNG GONG; KIARI GONI BOULAMA.Energy (Oxford). 2014, Vol 76, pp 453-467, issn 0360-5442, 15 p.Article

Experimental study of a graphite disks absorber couple to a heat transformerOLARTE-CORTES, J; TORRES-MERINO, J; SIQUEIROS, J et al.Experimental thermal and fluid science. 2013, Vol 46, pp 29-36, issn 0894-1777, 8 p.Article

Pourbaix diagrams for titanium in concentrated aqueous lithium bromide solutions at 25 °CMUNOZ-PORTERO, M. J; GARCIA-ANTON, J; GUINON, J. L et al.Corrosion science. 2011, Vol 53, Num 4, pp 1440-1450, issn 0010-938X, 11 p.Article

Corrosion behavior of iron-based alloys in the LiBr + ethylene glycol + H2O mixtureSAMIENTO-BUSTOS, E; GONZALEZ-RODRIGUEZ, J. G; URUCHURTU, J et al.Corrosion science. 2009, Vol 51, Num 5, pp 1107-1114, issn 0010-938X, 8 p.Article

Pitting corrosion transformation of SUS304 stainless steel in lithium bromide solution at high temperatureCHEN, H.-X; MA, X.-H; CHEN, J.-B et al.Materials and corrosion (1995). 2009, Vol 60, Num 5, pp 360-364, issn 0947-5117, 5 p.Article

Pourbaix diagrams for chromium in concentrated aqueous lithium bromide solutions at 25 °CMUNOZ-PORTERO, M. . J; GARCIA-ANTON, J; GUINON, J. L et al.Corrosion science. 2009, Vol 51, Num 4, pp 807-819, issn 0010-938X, 13 p.Article

Drop formation of swirl-jet nozzles with high viscous solution in vacuum-new absorbent in spray absorption refrigerationWARNAKULASURIYA, F. S. K; WOREK, W. M.International journal of heat and mass transfer. 2008, Vol 51, Num 13-14, pp 3362-3368, issn 0017-9310, 7 p.Article

A novel variable effect LiBr-water absorption refrigeration cycleXU, Z. Y; WANG, R. Z; XIA, Z. Z et al.Energy (Oxford). 2013, Vol 60, pp 457-463, issn 0360-5442, 7 p.Article

Corrosion of steel in lithium bromide solution containing inhibitorLI, J. L; LIANG, C. H; HUANG, N. B et al.Corrosion engineering, science and technology. 2012, Vol 47, Num 4, pp 297-301, issn 1478-422X, 5 p.Article

Thermogalvanic effects on the corrosion of copper in heavy brine LiBr solutionsFERNANDEZ-DOMENE, R. M; BLASCO-TAMARIT, E; GARCIA-GARCIA, D. M et al.Corrosion science. 2012, Vol 63, pp 304-315, issn 0010-938X, 12 p.Article

Exergy analysis of absorber using water/lithium bromide solutionKAYNAKLI, O.Heat and mass transfer. 2008, Vol 44, Num 9, pp 1089-1097, issn 0947-7411, 9 p.Article

Theoretical analysis of the thermal performance of a plate heat exchanger at various chevron angles using lithium bromide solution with nanofluidTING CHEN; JINHYUN KIM; HONGHYUN CHO et al.International journal of refrigeration. 2014, Vol 48, pp 233-244, issn 0140-7007, 12 p.Article

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