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Engineering Fluid Dynamics 2018

Engineering Fluid Dynamics 2018

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“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.

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Keywords

  • abnormal blade installation angle
  • acoustic energy
  • aerodynamic noise
  • aspect ratio
  • axial fan
  • axial gap
  • blade exit angle
  • blade wrap angle
  • cavitation inception
  • centrifugal pump
  • CFD simulation
  • CGCT-blade integrated optimization
  • circumferential groove casing treatment
  • computational fluid dynamics (CFD)
  • deep sea mining
  • dimensional analysis
  • disc spacing distance
  • disc thickness
  • distribution characteristic
  • evacuation
  • evaporation and condensation
  • experimental research
  • fire
  • fire propagation
  • flow around cylinder
  • flow control
  • Fluid dynamics
  • fluid structure interaction (FSI)
  • gas turbine
  • global optimization
  • heat transfer
  • hot streak
  • hydraulic collecting
  • hydrodynamic response
  • impeller
  • isentropic efficiency
  • leading edge
  • manganese nodules exploitation
  • Multiphase flow
  • natural ventilation
  • noise spectrum
  • Numerical methods
  • Numerical Simulation
  • OpenFOAM
  • optimized design
  • orthogonal test
  • plug-holing
  • radiation noise
  • rotating stall
  • Simulation and Modeling
  • source term
  • suction flow field
  • sweep and lean
  • Tesla turbine
  • thermosyphon
  • tunnel slope
  • tunnel vehicle fire
  • two-stage axial fan
  • unsteady heat release rate
  • ventilation performance
  • volume of fluid
  • vortex generators
  • vortex induced vibration (VIV) ratio
  • wind tunnel

Links

DOI: 10.3390/books978-3-03928-113-8

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