doi:10.1088/1367-2630/10/7/075016 Abstract. The effect of air turbulence on the geometric collision kernel of cloud droplets can be predicted if the effects of air turbulence on two kinematic pair statistics can be modeled. The first is the average radial relative velocity and the second is the radial distribution function (RDF). A survey of the literature shows that no theory is available for predicting the radial relative velocity of finite-inertia sedimenting droplets in a turbulent flow. In this paper, a theory for the radial relative velocity is developed, using a statistical approach assuming that gravitational sedimentation dominates the relative motion of droplets before collision. In the weak-inertia limit, the theory reveals a new...
We study the dynamic and kinematic collision statistics of cloud droplets for a range of flow Taylor...
We study the dynamic and kinematic collision statistics of cloud droplets for a range of flow Taylor...
This paper studies the gravity influence on collisions of monodispersed droplets in homogeneous isot...
doi:10.1088/1367-2630/10/7/075015 Abstract. There have been relatively few studies of turbulent coll...
Prediction of the effect of air turbulence on statistics relevant to a collision–coalescence process...
The collision probability of cloud droplets in a turbulent flow has been investigated using direct n...
The collision probability of cloud droplets in a turbulent flow has been investigated using direct n...
The collision probability of cloud droplets in a turbulent flow has been investigated using direct n...
The collision probability of cloud droplets in a turbulent flow has been investigated using direct n...
The collision probability of cloud droplets in a turbulent flow has been investigated using direct n...
The collision probability of cloud droplets in a turbulent flow has been investigated using direct n...
The collision probability of cloud droplets in a turbulent flow has been investigated using direct n...
An equation is deduced which gives the relative velocity between drops falling in three-dimensional ...
Wang, Lian-PingCollisions of sedimenting droplets in a turbulent flow is of great importance in clou...
We study the dynamic and kinematic collision statistics of cloud droplets for a range of flow Taylor...
We study the dynamic and kinematic collision statistics of cloud droplets for a range of flow Taylor...
We study the dynamic and kinematic collision statistics of cloud droplets for a range of flow Taylor...
This paper studies the gravity influence on collisions of monodispersed droplets in homogeneous isot...
doi:10.1088/1367-2630/10/7/075015 Abstract. There have been relatively few studies of turbulent coll...
Prediction of the effect of air turbulence on statistics relevant to a collision–coalescence process...
The collision probability of cloud droplets in a turbulent flow has been investigated using direct n...
The collision probability of cloud droplets in a turbulent flow has been investigated using direct n...
The collision probability of cloud droplets in a turbulent flow has been investigated using direct n...
The collision probability of cloud droplets in a turbulent flow has been investigated using direct n...
The collision probability of cloud droplets in a turbulent flow has been investigated using direct n...
The collision probability of cloud droplets in a turbulent flow has been investigated using direct n...
The collision probability of cloud droplets in a turbulent flow has been investigated using direct n...
An equation is deduced which gives the relative velocity between drops falling in three-dimensional ...
Wang, Lian-PingCollisions of sedimenting droplets in a turbulent flow is of great importance in clou...
We study the dynamic and kinematic collision statistics of cloud droplets for a range of flow Taylor...
We study the dynamic and kinematic collision statistics of cloud droplets for a range of flow Taylor...
We study the dynamic and kinematic collision statistics of cloud droplets for a range of flow Taylor...
This paper studies the gravity influence on collisions of monodispersed droplets in homogeneous isot...