Development of a Particulate Solids Thermal Mass Flowmeter

Author:

Kato Mary1,Pugh John1,McGlinchey Don1

Affiliation:

1. Glasgow Caledonian University

Publisher

Hosokawa Powder Technology Foundation

Subject

General Engineering,General Materials Science,General Chemical Engineering,General Chemistry

Reference25 articles.

1. Aihara T., Yamamoto K., Narusawa K., Haraguchi T., Ukaku M., Lasek A., Feuillenois F., Experimental study on heat transfer of thermally developing and developed, turbulent, horizontal pipe flow of dilute air-solids suspensions, Heat and Mass Transfer, 33 (1997) 109–120.

2. Arakaki C., Ghaderi A., Datta B.K., Lie B., Non-intrusive mass flow measurements in pneumatic transport, CHoPS-05, Proceedings, 5th International Conference for Conveying and Handling of Particulate Solids, Sorrento, Italy, 2006.

3. Arko A., Waterfall R.C., Beck M.S., Dyakowski T., Sutcliffe P., Byars M., Development of Electrical Capacitance Tomography for solids mass flow measurement and control of pneumatic conveying systems, Proceedings, 1st World Congress on Industrial Process Tomography, Buxton, Greater Manchester, 1999.

4. Beck M.S., Green R.G., Thorn R., Non-intrusive measurement of solids mass flow in Pneumatic Conveying, Journal of Physics E: Scientific Instruments, 20 (1987) 835–840.

5. Carter R.M., Yan Y., Cameron S.D., On-line measurement of particle size distribution and mass flow rate of particles in a pneumatic suspension using combined imaging and electrostatic sensors, Journal of Flow, Measurement & Instrumentation, 16 (2005) 309–314.

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1. A review of solid particles mass flow rate measuring methods: screening analytic hierarchy process for methods prioritization;Journal of the Brazilian Society of Mechanical Sciences and Engineering;2022-07-21

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