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dc.contributor.authorHjertager, Bjørn*
dc.date.accessioned2021-02-11T12:35:21Z
dc.date.available2021-02-11T12:35:21Z
dc.date.issued2020*
dc.date.submitted2020-01-30 16:39:46*
dc.identifier43629*
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/46418
dc.description.abstract“Engineering Fluid Dynamics 2018”. The topic of engineering fluid dynamics includes both experimental as well as computational studies. Of special interest were submissions from the fields of mechanical, chemical, marine, safety, and energy engineering. We welcomed both original research articles as well as review articles. After one year, 28 papers were submitted and 14 were accepted for publication. The average processing time was 37.91 days. The authors had the following geographical distribution: China (9); Korea (3); Spain (1); and India (1). Papers covered a wide range of topics, including analysis of fans, turbines, fires in tunnels, vortex generators, deep sea mining, as well as pumps.*
dc.languageEnglish*
dc.subjectTA1-2040*
dc.subjectT1-995*
dc.subject.classificationbic Book Industry Communication::T Technology, engineering, agriculture::TB Technology: general issues::TBX History of engineering & technologyen_US
dc.subject.otherfluid structure interaction (FSI)*
dc.subject.othernumerical methods*
dc.subject.otheraxial gap*
dc.subject.otherimpeller*
dc.subject.otherradiation noise*
dc.subject.othernatural ventilation*
dc.subject.otherventilation performance*
dc.subject.otherComputational Fluid Dynamics (CFD)*
dc.subject.otherexperimental research*
dc.subject.otherhot streak*
dc.subject.otherdisc thickness*
dc.subject.otherfire*
dc.subject.othercircumferential groove casing treatment*
dc.subject.otherblade wrap angle*
dc.subject.othersweep and lean*
dc.subject.othercomputational fluid dynamics (CFD)*
dc.subject.otherOpenFOAM*
dc.subject.othergas turbine*
dc.subject.otherfire propagation*
dc.subject.otherdisc spacing distance*
dc.subject.otherhydraulic collecting*
dc.subject.otherthermosyphon*
dc.subject.otherwind tunnel*
dc.subject.otherflow control*
dc.subject.othersource term*
dc.subject.otherleading edge*
dc.subject.otherflow around cylinder*
dc.subject.othervortex generators*
dc.subject.otherplug-holing*
dc.subject.othernoise spectrum*
dc.subject.otherCGCT-blade integrated optimization*
dc.subject.otherdimensional analysis*
dc.subject.otherdeep sea mining*
dc.subject.otherheat transfer*
dc.subject.otherabnormal blade installation angle*
dc.subject.otheraxial fan*
dc.subject.otherrotating stall*
dc.subject.otheroptimized design*
dc.subject.otherorthogonal test*
dc.subject.otherfluid dynamics*
dc.subject.othersimulation and modeling*
dc.subject.otheraerodynamic noise*
dc.subject.othercentrifugal pump*
dc.subject.othersuction flow field*
dc.subject.othertwo-stage axial fan*
dc.subject.othercavitation inception*
dc.subject.otherevaporation and condensation*
dc.subject.othernumerical simulation*
dc.subject.otherCFD simulation*
dc.subject.otheraspect ratio*
dc.subject.otherevacuation*
dc.subject.othertunnel slope*
dc.subject.otherTesla turbine*
dc.subject.othervortex induced vibration (VIV) ratio*
dc.subject.otherglobal optimization*
dc.subject.othervolume of fluid*
dc.subject.otherblade exit angle*
dc.subject.otheracoustic energy*
dc.subject.othertunnel vehicle fire*
dc.subject.othermultiphase flow*
dc.subject.otherdistribution characteristic*
dc.subject.otherunsteady heat release rate*
dc.subject.otherhydrodynamic response*
dc.subject.othermanganese nodules exploitation*
dc.subject.otherisentropic efficiency*
dc.titleEngineering Fluid Dynamics 2018*
dc.typebook
oapen.identifier.doi10.3390/books978-3-03928-113-8*
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0*
oapen.relation.isbn9783039281121*
oapen.relation.isbn9783039281138*
oapen.pages256*
oapen.edition1st*


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