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39 863 (0,213s)

Result

Experimental evaluation of the drag rotation coefficient of the spherical particle

of the rotating spherical particles moving in water are described. The rubber spherical balls that ensured that the particle rotated in a given plane. Values of the drag coefficient of the ro...

BK - Mechanika tekutin

  • 2004
  • D
Result

A drag force coefficient of the moving in fluid and fast rotating spherical particles

spherical particle moving translationally in water were measured and the experimental of the rotating particle Cd and particle without rotation Cd0 is equal (Re is translational and Re? rotat...

BK - Mechanika tekutin

  • 2008
  • D
Result

Experimental evaluation of the drag force and drag torque acting on a rotating spherical particle moving in fluid

The paper describes results of experiments with rotating spherical particles speeded up in a special inclined chute that ensured the required particle rotational parameters of the particle motion,...

DA - Hydrologie a limnologie

  • 2008
  • Jx
Result

Collision of a rotating spherical particle with flat wall in liquid

The collision of the rotating spherical particle with a flat wall in liquid was studied experimentally. The glass and steel beads rotating in water and silicon oil number but also on the particle angular v...

BK - Mechanika tekutin

  • 2012
  • D
Result

Motion of rotating spherical particles touching a wall

The paper deals with an analysis of motion of rotating spherical particle in calm water, when the particle is in contact with a smooth, horizontal wall on software analysisthe particle trajectories as well...

BK - Mechanika tekutin

  • 2012
  • D
Result

Investigation of drag force and drag moment of rotating translationally moving sphere in calm water

The paper describes results of experiments with rotating spherical particles moving quasi-steadily in the calm water. The motion of the particles was recorded of rotation for each recorded frame. The effec...

BK - Mechanika tekutin

  • 2007
  • D
Result

The Magnus force coefficient oof the spherical particle moving in liquid

The Magnus force coefficient was determined from comparison of theoretical and experimental trajectory of rotating spherical particle moving in calm water. Theoretical trajectories of the particle were calculated u...

BK - Mechanika tekutin

  • 2006
  • D
Result

Role of the shape of various bacteria in their separation by microthermal field-flow fractionation

The steady-state movement of the spherical and non-spherical particles, such as prolate or oblate rotational ellipsoids, cylinders, or parallelepipeds, suspended theoretically.The differences in the ratios of the <...

CB - Analytická chemie, separace

  • 2010
  • Jx
Result

Restitution coefficient of a spherical particle rotating in liquid at collision with flat wall

The collision process of the rotating spherical particle of different size-speed video system recorded the particle motion before and after the collision. It was shown that the restitution coefficient depends on th...

BK - Mechanika tekutin

  • 2012
  • D
Result

Experimental evaluation of the Magnus force coefficient of the rotating spherical particle

and experimental trajectory of rotating spherical particle falling in calm water. Theoretical trajectories of the particle were calculated using 2D numerical model of the rotatingspherical particle moving...

BK - Mechanika tekutin

  • 2005
  • D
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