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dc.contributor.authorJaworski, Artur J.*
dc.date.accessioned2021-02-12T03:18:18Z
dc.date.available2021-02-12T03:18:18Z
dc.date.issued2019*
dc.date.submitted2019-12-09 11:49:15*
dc.identifier42530*
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/59163
dc.description.abstractFluid flow and heat transfer processes play an important role in many areas of science and engineering, from the planetary scale (e.g., influencing weather and climate) to the microscopic scales of enhancing heat transfer by the use of nanofluids; understood in the broadest possible sense, they also underpin the performance of many energy systems. This topical Special Issue of Energies is dedicated to the recent advances in this very broad field. This book will be of interest to readers not only in the fields of mechanical, aerospace, chemical, process and petroleum, energy, earth, civil ,and flow instrumentation engineering but, equally, biological and medical sciences, as well as physics and mathematics; that is, anywhere that “fluid flow and heat transfer” phenomena may play an important role or be a subject of worthy research pursuits.*
dc.languageEnglish*
dc.subjectTA1-2040*
dc.subjectT1-995*
dc.subject.othern/a*
dc.subject.otherthermal performance*
dc.subject.othermicrobubble pump*
dc.subject.otherparticle deposition*
dc.subject.otherflow oscillation*
dc.subject.otherorthogonal jet*
dc.subject.otherflat plate*
dc.subject.othergas turbine engine*
dc.subject.otherair heater*
dc.subject.otherflow behavior*
dc.subject.othertransonic compressor*
dc.subject.otherfriction factor*
dc.subject.othernonlinear thermal radiation*
dc.subject.otheroscillators*
dc.subject.otherporous cavity*
dc.subject.otherPOD*
dc.subject.otherturbulent flow*
dc.subject.otherthermosyphon*
dc.subject.otherturbulence*
dc.subject.othermass transfer*
dc.subject.othertip leakage flow*
dc.subject.othercapture efficiency*
dc.subject.otherpipe flow*
dc.subject.othercorrelation*
dc.subject.otherdecomposition dimensionalities*
dc.subject.otherheat transfer*
dc.subject.otherpressure loss*
dc.subject.otherCANDU-6*
dc.subject.othernumerical modeling*
dc.subject.otherCFD*
dc.subject.othermagnetic field*
dc.subject.otherboundary layer*
dc.subject.othertwo-phase flow*
dc.subject.otherheat transfer performance*
dc.subject.otherColebrook-White*
dc.subject.othercomputational burden*
dc.subject.otherphase change*
dc.subject.othersurrogate model*
dc.subject.otherPadé polynomials*
dc.subject.othertraveling-wave heat engine*
dc.subject.otherflow regime*
dc.subject.othernumerical simulation*
dc.subject.otherenergetics*
dc.subject.other( A g ? F e 3 O 4 / H 2 O ) hybrid nanofluid*
dc.subject.otherpumps*
dc.subject.otherBEM*
dc.subject.otherSPIV*
dc.subject.otheracoustic streaming*
dc.subject.othermicrobubbles*
dc.subject.otherAspen®*
dc.subject.otherpush-pull*
dc.subject.otherPositive Temperature Coefficient (PTC) elements*
dc.subject.otheriterative procedure*
dc.subject.othertransient analysis*
dc.subject.otherspiral fin-tube*
dc.subject.othertoxic gases*
dc.subject.otherunsteady heat release rate*
dc.subject.otherwater hammer*
dc.subject.othermethod of moment*
dc.subject.othervisualization*
dc.subject.othersuperheated steam*
dc.subject.otherimpingement heat transfer enhancement*
dc.subject.otherX-ray microtomography*
dc.subject.othermoderator*
dc.subject.otherwind turbine*
dc.subject.otherflow rate*
dc.subject.otherfin-tube*
dc.subject.otherflue gas*
dc.subject.otheractuator disc*
dc.subject.othertemperature distributions*
dc.subject.othersupercritical LNG*
dc.subject.othersharp sections*
dc.subject.othermoment of inertia*
dc.subject.otherColebrook equation*
dc.subject.otherpump efficiency*
dc.subject.othertower*
dc.subject.otherOpenFOAM*
dc.subject.othercomputational fluid dynamics*
dc.subject.otherchemical reaction*
dc.subject.otherpump performance*
dc.subject.otherlogarithms*
dc.subject.othernumerical results*
dc.subject.otherdownwind*
dc.subject.otherthermodynamic*
dc.subject.othertriaxial stress*
dc.subject.otherflow friction*
dc.subject.otherenergy conversion*
dc.subject.otherentropy generation*
dc.subject.otherzigzag type*
dc.subject.otherinertance-compliance*
dc.subject.othersection aspect ratios*
dc.subject.otherlaminar separation bubble*
dc.subject.otheraxial piston pumps*
dc.subject.otherthermogravimetry*
dc.subject.otherpressure drop*
dc.subject.otherload resistances*
dc.subject.othervortex breakdown*
dc.subject.otherT-section prism*
dc.subject.otherflow-induced motion*
dc.subject.othercentrifugal pump*
dc.subject.otherload*
dc.subject.othervortex identification*
dc.subject.otherdecomposition region*
dc.subject.othercondensation*
dc.subject.otherperformance characteristics*
dc.subject.otherpipes*
dc.subject.otherdetached-eddy simulation*
dc.subject.otherComputational Fluid Dynamics (CFD) simulation*
dc.subject.otherthermal cracking*
dc.subject.otherreal vehicle experiments*
dc.subject.otherbubble size*
dc.subject.otherthermal energy recovery*
dc.subject.otherhydraulic resistances*
dc.subject.otherconcentration*
dc.subject.othertower shadow*
dc.subject.otherfire-spreading characteristics*
dc.subject.otherthermoacoustic electricity generator*
dc.subject.otherbubble generation*
dc.subject.othermulti-stage*
dc.subject.otherthermal effect*
dc.subject.otherferrofluid*
dc.subject.otherPHWR*
dc.subject.otherfluidics*
dc.subject.othermultiphase flow*
dc.subject.otherprinted circuit heat exchanger*
dc.subject.otherparticle counter*
dc.subject.otherdew point temperature*
dc.titleSelected Problems in Fluid Flow and Heat Transfer*
dc.typebook
oapen.identifier.doi10.3390/books978-3-03921-428-0*
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0*
virtual.oapen_relation_isPublishedBy.publisher_nameMDPI - Multidisciplinary Digital Publishing Institute
virtual.oapen_relation_isPublishedBy.publisher_websitewww.mdpi.com/books
oapen.relation.isbn9783039214280*
oapen.relation.isbn9783039214273*
oapen.pages460*
oapen.edition1st*


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