Modeling minimum transport boundary for fluidized dense-phase pneumatic conveying systems
Gautam Setia(Thapar Institute of Engineering & Technology), Peter W Wypych(University of Wollongong), R Pan(Longyan University), S.S. Mallick(Thapar Institute of Engineering & Technology)
Cited by 25
Related Papers
Mechanical dry particle coating on cohesive pharmaceutical powders for improving flowability - A review
|Powder Technology|2019|77
Erosive wear behaviour of HVOF-sprayed Ni-20Cr2O3 coating on pipeline materials
|International Journal of Refractory Metals and Hard Materials|2020|61
Modeling solids friction factor for fluidized dense-phase pneumatic transport of powders using two layer flow theory
|Powder Technology|2016|34
Modelling fluidized dense-phase pneumatic conveying of fly ash
|Powder Technology|2014|25
An experimental investigation on the effect of particle size into the flowability of fly ash
|Powder Technology|2018|25