Process tomography - the state of the art

Author:

Beck M.S.1,Dyakowski T.2,Williams R.A.3

Affiliation:

1. Department of Electrical Engineering and Electronics, UMIST

2. Department of Chemical Engineering, UMIST, PO Box 88, Manchester M60 1QD

3. Camborne School of Mines, University of Exeter, Pool, Redruth, Cornwall TR15 3SE, UK

Abstract

This review provides an overview of the tomographic sensing methods that can be utilised to study process behaviour and their particular attributes (speed, sensi tivity, robustness, etc.). It provides literature citations and sources of information which potential users may consult. Particular emphasis is placed upon electrical methods, due to their inherent suitability for widespread on-line use. Future possible measurement capabilities of the family of electrical methods are discussed.

Publisher

SAGE Publications

Subject

Instrumentation

Reference58 articles.

1. Barlow, R.K., Williams, R.A., Bond, J., Oliver, K., and Hunt, D.P. 1997. 'Composition analysis of mixed mineral suspensions using impedance spectroscopy'. In: Frontiers in Industrial Process Tomography II. Delft (Engineering Foundation New York), pp. 131-136.

2. Bernard, J.R., Desbat, L., and Turlier, P. 1995. 'Gamma ray imaging of industrial beds'. In: D. M. Scott and R. A. Williams , (Eds), Frontiers in Industrial Process Tomography. Engineering Foundation, pp.197-206.

3. Bidin, A.R., Green, R.G., Shackleton, M.E., Stott, A.L., and Taylor, R.W. 1995. 'Electrodynamic sensors for process tomography' . In: R.A.Williams and M.S.Beck (Eds), Process Tomography - principles, techniques and applications. Butterworth-Heinemann, Oxford, pp. 101-118.

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