We propose that the collision rates of non-spherical particles settling in a turbulent environment are significantly higher than those of spherical particles of the same mass and volume. The theoretical argument is based on the dependence of the particle drag force on the particle orientation, thus varying gravitational settling velocities, which can remain different until contact due to the particle inertia. Therefore, non-spherical particles can collide with large relative velocities. Direct numerical simulations (DNS) of streamwise decaying isotropic turbulence seeded with small, heavy, rotationally symmetric ellipsoids of five different aspect ratios are performed to confirm these arguments. The motion of 21 million ellipsoids is tracke...
Motivated by applications in engineering as well as in other disciplines where the motion of particl...
Motivated by applications in engineering as well as in other disciplines where the motion of particl...
Motivated by applications in engineering as well as in other disciplines where the motion of particl...
We propose that the collision rates of non-spherical particles settling in a turbulent environment a...
We propose that the collision rates of non-spherical particles settling in a turbulent environment a...
Collisions of small and heavy non-spherical particles settling in turbulence are very important for ...
Collisions of small and heavy non-spherical particles settling in turbulence are very important for ...
Collisions of small and heavy non-spherical particles settling in turbulence are very important for ...
Collisions of small and heavy non-spherical particles settling in a turbulent environment are very i...
Collisions of small and heavy non-spherical particles settling in a turbulent environment are very i...
Motivated by applications in technology as well as in other disciplines where the motion of particle...
Collisions of small and heavy non-spherical particles settling in a turbulent environment are very i...
none3siWe use laboratory measurements to study how suspended ellipsoidal particles affect the veloci...
We use laboratory measurements to study how suspended ellipsoidal particles affect the velocity stat...
We use laboratory measurements to study how suspended ellipsoidal particles affect the velocity stat...
Motivated by applications in engineering as well as in other disciplines where the motion of particl...
Motivated by applications in engineering as well as in other disciplines where the motion of particl...
Motivated by applications in engineering as well as in other disciplines where the motion of particl...
We propose that the collision rates of non-spherical particles settling in a turbulent environment a...
We propose that the collision rates of non-spherical particles settling in a turbulent environment a...
Collisions of small and heavy non-spherical particles settling in turbulence are very important for ...
Collisions of small and heavy non-spherical particles settling in turbulence are very important for ...
Collisions of small and heavy non-spherical particles settling in turbulence are very important for ...
Collisions of small and heavy non-spherical particles settling in a turbulent environment are very i...
Collisions of small and heavy non-spherical particles settling in a turbulent environment are very i...
Motivated by applications in technology as well as in other disciplines where the motion of particle...
Collisions of small and heavy non-spherical particles settling in a turbulent environment are very i...
none3siWe use laboratory measurements to study how suspended ellipsoidal particles affect the veloci...
We use laboratory measurements to study how suspended ellipsoidal particles affect the velocity stat...
We use laboratory measurements to study how suspended ellipsoidal particles affect the velocity stat...
Motivated by applications in engineering as well as in other disciplines where the motion of particl...
Motivated by applications in engineering as well as in other disciplines where the motion of particl...
Motivated by applications in engineering as well as in other disciplines where the motion of particl...