Brotchie Adam, Grieser Franz, Ashokkumar Muthupandian
Particulate Fluids Processing Centre, School of Chemistry, University of Melbourne, Melbourne, VIC 3010, Australia.
Phys Rev Lett. 2009 Feb 27;102(8):084302. doi: 10.1103/PhysRevLett.102.084302.
Acoustic bubble-size distributions have been determined using a pulsed ultrasound method at different ultrasound powers and frequencies. It was observed that the mean bubble size increased with increasing acoustic power and decreased with increasing ultrasound frequency. It was also recognized that the mean size of bubbles emitting sonoluminescence was greater than those producing sonochemiluminescence indicating that the two processes take place in different populations of cavitation bubbles in the system.
已使用脉冲超声方法在不同超声功率和频率下测定了声学气泡尺寸分布。观察到平均气泡尺寸随声功率增加而增大,随超声频率增加而减小。还认识到,发出声致发光的气泡的平均尺寸大于产生声化学发光的气泡的平均尺寸,这表明这两个过程发生在系统中不同的空化气泡群体中。