SVIBOR - Papers quoted in CC - project code: 2-08-340

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SVIBOR

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Papers quoted in Current Contents on project 2-08-340


Quoted papers: 2
Other papers: 13
Total: 15


Title: Heat and Mass Transfer at a Heat Pipe

Authors:
Guzović, Zvonimir (113641)
Journal: Strojarstvo
Number: 56
ISSN: 0562-1887
Volume: 33
Year: 1991
Pages: from 303 to 314
Number of references: 3
Language: hrvatski
Summary: The paper presents hat and mass transfer at heat pipe withcorresponding phenomena: Effect of capillary forces, flow andpressure differences at different phases of working fluid, effectof body forces, entraintment, heat transfer and temperaturedifferences and compatibility of used materials.
Keywords: Heat pipe, Heat transfer, Mass transfer

Title: HEAT AND MASS TRANSFER IN ROTATIG MACHINERY

Authors:
Matijašević, Branimir (29640)
Journal: Strojarstvo
ISSN: 0562-1887
Year: 1995
Number of references: 26
Language: hrvatski
Summary: This article presents review of the systems and types of rotating fluid flows which occur in a rotating machinery. By them the primary and secondary flows of the fluid can be described. The review and coments of commonly used corelations for calculation of the moment and covective heat transfer coefficients make possible more reliable application by defining boundary condittions in rotating machinery heat and mass transfer analyses. Especially comments are made on the influenece of geometry and the temperatures of flow channel walls on heat and mass transfer conditions.
Keywords: Heat and mass transfer, Rotating fluid flow, Raotaing mschinery

Title: The influence of the cooling channel design on flow rate of cooling media in synchronous machines

Authors:
Pavličević, Milorad (35543)
Matijašević, Branimir (29640)
Number: naro
ISSN: 621.313.13
Volume: Među
Year: 1992
Pages: from 45 to 49
Number of references: 103
Language: hrvatski
Summary: The influence of the cooling channel design on flow rate ofcooling media in synchronous machines. Summary: Yhis paper deal with results of an analises of acharasteristical design in air cooled synchronous machines. Ananalyses was performed to determine the influence of shape or geometry of cooling channel and type of fans to flow rate ofcoolin media. The computed value good agreement with those measured on anrealized object. It is pointed out the way of the optimizeddesign of the cooling system.
Keywords: Synchronous machines


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