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Updated: May 12, 2026

Studying Cavitation Enhanced Therapy
Published on: April 9, 2021
Investigation of design parameters in ultrasound reactors with confined channels
Jeroen Jordens1, Aurélie Honings, Jan Degrève
1Department of Chemical Engineering, KU Leuven, De Croylaan 46, B-3001 Leuven, Belgium. jeroen.jordens@cit.kuleuven.be
Abstract:
This paper presents a three-dimensional numercial simulation of sonochemical degradation upon cavitational activity. The model relates the simulation of the acoustic pressure distribution to the sonochemical reaction rate. As a case study, the thermal degradation of carbon tetrachloride during sonication is studied in a tubular milliscale reactor. The model is used to optimize the reactor diameter, ultrasound frequency and power dissipated to the ultrasound transducers. The results indicate that multiple transducers at a moderate power level are more efficient than one transducer with high power level. Furthermore, the average cavity volume fraction is proposed as a reaction independent parameter to estimate the optimal reactor design. Within the results obtained in this paper, it appears possible to optimise reactor design based on this parameter.

