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Numerical Modeling of Ultrasonic Flowmeters: A Coupled Finite-Element, Boundary-Integral Method, by Michal Bezdek
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Today's most popular technology of ultrasonic flow measurement is based on the transit time principle. In this work, a numerical simulation technique applicable to the analysis and optimization of transit time flowmeters is presented. - - A flowmeter represents a large simulation problem which also requires computation of acoustic fields in moving media. For this purpose, a novel boundary integral method, the Helmholtz integral-ray tracing method (HIRM), is derived and validated. For simulation of practical acoustic devices, a hybrid simulation scheme consisting of the finite element method (FEM) and HIRM is proposed. It is demonstrated that the FEM-HIRM scheme enables an accurate and efficient simulation of a complete transit time flowmeter. - - In an industrial environment, the new simulation technique can be applied to accelerate the traditional experimental-based design of ultrasonic flowmeters.
- Sales Rank: #5574780 in Books
- Published on: 2010-12-04
- Released on: 2010-12-04
- Original language: English
- Number of items: 1
- Dimensions: 8.67" h x .32" w x 5.90" l, .46 pounds
- Binding: Paperback
- 140 pages
About the Author
Michal Bezdek (*1978): M.Sc. in el. engineering, Brno University of Technology, CZ (2001); Ph.D. in el. engineering, Friedrich-Alexander-University, Erlangen, DE (2006); Postdoctoral Researcher in Ultrasonic NDE, Pennsylvania State University, PA, USA (2006); Project Leader in Ultrasound R&D, Endress+Hauser Flowtec AG, Reinach, CH (since 2007).
Most helpful customer reviews
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Review on Modeling
By B. R. Tittmann
This is apparently the first thorough modeling treatment of Ultrasonic Flowmeters. It uses a sophisticated coupled finite element boundary integral method. The book is clearly written is in good format and has much illustrative detail. The book also has over a 100 references which makes it valuable to get good access to previous work. The book should be handy for the latest designs of flowmeters with the use of ultrasound.
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