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Details of Grant 

EPSRC Reference: GR/M92621/01
Title: POWMOD: TOWARDS A MESOSCALE SIMULATION MODEL FOR THE PROCESSING OF REAL POWDERS
Principal Investigator: Kendall, Professor K
Other Investigators:
Woodcock, Professor L Smith, Professor W
Researcher Co-Investigators:
Project Partners:
BNFL
Department: School of Chemistry
Organisation: University of Birmingham
Scheme: Standard Research (Pre-FEC)
Starts: 25 September 2000 Ends: 24 August 2003 Value (£): 121,951
EPSRC Research Topic Classifications:
Complex fluids & soft solids Materials Processing
Particle Technology
EPSRC Industrial Sector Classifications:
Chemicals Pharmaceuticals and Biotechnology
Energy
Related Grants:
Panel History:  
Summary on Grant Application Form
POWMOD will begin by adapting a high performance molecular dynamics program (DL_POLY), developed at the Daresbury Laboratory for the atomistic simulations of macromolecules, for powder particles and their surfaces. Computational statistical mechanics will then be extended to a new dimension in powder technology by developing an integrated modelling environment which will enable simulations at the level of bulk powder processes of interest to industries. A programme of MD simulations, initially for specific ionic powders, will be designed around a series of continual refinements towards the development of an effective particle-particle pair potential. The model will incorporate the effects of shape and size, polydispersities, surface roughness, deformability and solvation. It is proposed to develop the POWMOD software in order to establish the links between fundamental powder physical properties (as measured in simple laboratory tests, size surface area, morphology etc) and flow processes. The ultimate goal of powder simulations is to reduce, or perhaps eliminate, the requirements of tedious, costly, and (in the case of radioactive powders) hazardous, trials to predict how powders will behave in real processes. POWMOD will be tested against laboratory tests on industrial powders in collaboration with BNFL.
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Further Information:  
Organisation Website: http://www.bham.ac.uk