Estimates for the sedimentation rate of realistic ice crystals at sizes smaller than 100 µm are presented. These calculations, which exploit new results for the capacitance of ice crystals, are compared with laboratory studies and found to be in good agreement. The results highlight a weakness in contemporary ice particle fall speed parametrizations for very small crystals, which can lead to sedimentation rates being overestimated by a factor of two. The theoretical approach applied here may also be useful for calculating the sedimentation rate and mobility of non-spherical aerosol particles
An ice cloud chamber was developed at the Johannes Gutenberg University of Mainz for generating seve...
This two-part study attempts to find appropriate mass dimension and terminal velocity relationships ...
Meteorological forecast and climate models require good knowledge of the microphysical properties of...
Accurate estimates for the fall speed of natural hydrometeors are vital if their evolution in clouds...
Accurate estimates for the fall speed of natural hydrometeors are vital if their evolution in clouds...
New experimental measurements of the falling velocity, size and orientation of individual hexagonal ...
This two-part study addresses the development of reliable estimates of the mass and fall speed of si...
A new method of accurately calculating the capacitance of realistic ice particles is described: such...
Analysis of the vertical velocity of ice crystals observed with a 1.5micron Doppler lidar from a co...
CER70-71SRB-LOG45.December 1970.Includes bibliographical references.Prepared with support from the N...
The physical and empirical relationships used by microphysics schemes to control the rate at which v...
Experimental formulae of fall velocity of rimed dendritic snow crystals were quantitatively derived ...
An ice cloud chamber was developed at the Johannes Gutenberg University of Mainz for generating seve...
This paper describes ongoing research intended to simulate ice accretion in an inter-compressor duct...
This paper describes ongoing research intended to simulate ice accretion in an inter-compressor duct...
An ice cloud chamber was developed at the Johannes Gutenberg University of Mainz for generating seve...
This two-part study attempts to find appropriate mass dimension and terminal velocity relationships ...
Meteorological forecast and climate models require good knowledge of the microphysical properties of...
Accurate estimates for the fall speed of natural hydrometeors are vital if their evolution in clouds...
Accurate estimates for the fall speed of natural hydrometeors are vital if their evolution in clouds...
New experimental measurements of the falling velocity, size and orientation of individual hexagonal ...
This two-part study addresses the development of reliable estimates of the mass and fall speed of si...
A new method of accurately calculating the capacitance of realistic ice particles is described: such...
Analysis of the vertical velocity of ice crystals observed with a 1.5micron Doppler lidar from a co...
CER70-71SRB-LOG45.December 1970.Includes bibliographical references.Prepared with support from the N...
The physical and empirical relationships used by microphysics schemes to control the rate at which v...
Experimental formulae of fall velocity of rimed dendritic snow crystals were quantitatively derived ...
An ice cloud chamber was developed at the Johannes Gutenberg University of Mainz for generating seve...
This paper describes ongoing research intended to simulate ice accretion in an inter-compressor duct...
This paper describes ongoing research intended to simulate ice accretion in an inter-compressor duct...
An ice cloud chamber was developed at the Johannes Gutenberg University of Mainz for generating seve...
This two-part study attempts to find appropriate mass dimension and terminal velocity relationships ...
Meteorological forecast and climate models require good knowledge of the microphysical properties of...