Romdhane M, Gadri A, Contamine F, Gourdon C, Casamatta G
Ecole Nationale d'Ingénieurs de Gabès, Tunisia.
Ultrason Sonochem. 1997 Jul;4(3):235-43. doi: 10.1016/s1350-4177(97)00002-3.
Ultrasound is used in different domains, and in sonochemistry particularly, for different purposes and in various flow configurations: monophasic, two-phase and polyphasic reactors. In order to optimize and to design sonochemical reactors, it is important to describe the ultrasonic intensity space and time distribution. In addition, it is important to study the different parameters influencing the intensity profiles of the ultrasonic wave. In this work, a thermoelectric probe has been used to measure the ultrasonic intensity. This procedure has shown that the ultrasound propagation is influenced by the presence of cavitation bubbles, the flow regime and the presence of solid particles.
超声在不同领域有应用,尤其在声化学中,用于不同目的并存在于各种流动配置中:单相、两相和多相反应器。为了优化和声化学反应器的设计,描述超声强度的空间和时间分布很重要。此外,研究影响超声波强度分布的不同参数也很重要。在这项工作中,使用了一个热电探头来测量超声强度。该过程表明,超声传播受空化气泡的存在、流动状态和固体颗粒的存在影响。