Department of Physics, Ryerson University, Toronto, Canada; Institute for Biomedical Engineering, Science and Technology (IBEST) a partnership between Ryerson University and St. Michael's Hospital, Toronto, Ontario, Canada.
Department of Physics, Ryerson University, Toronto, Canada; Institute for Biomedical Engineering, Science and Technology (IBEST) a partnership between Ryerson University and St. Michael's Hospital, Toronto, Ontario, Canada.
Ultrasonics. 2021 Apr;112:106363. doi: 10.1016/j.ultras.2021.106363. Epub 2021 Jan 20.
The pressure threshold for 1/2 order subharmonic (SH) emissions and period doubling during the oscillations of ultrasonically excited bubbles is thought to be minimum when the bubble is sonicated with twice its resonance frequency (f). This estimate is based on studies that simplified or neglected the effects of thermal damping. In this work, the nonlinear dynamics of ultrasonically excited bubbles is investigated accounting for the thermal dissipation. Results are visualized using bifurcation diagrams as a function of pressure. Here we show that, and depending on the gas, the pressure threshold for 1/2 order SHs can be minimum at a frequency between 0.5f≤f≤0.6f. In this frequency range, the generation of 1/2 order SHs are due to the occurrence of 5/2 order ultra-harmonic resonance. The stability of such oscillations is size dependent. For an air bubble immersed in water, only bubbles bigger than 1 μm in diameter are able to emit non-destructive SHs in these frequency ranges.
当超声激发的气泡以其共振频率的两倍(f)进行激发时,人们认为 1/2 阶次亚谐波(SH)发射和倍周期分岔的压力阈值最低。这种估计是基于简化或忽略热耗散影响的研究。在这项工作中,我们研究了考虑热耗散的超声激发气泡的非线性动力学。结果以压力为函数的分岔图可视化。在这里,我们表明,取决于气体,1/2 阶次 SH 的压力阈值可以在 0.5f≤f≤0.6f 的频率处最低。在这个频率范围内,1/2 阶次 SH 的产生是由于 5/2 阶超谐波共振的发生。这种振荡的稳定性与尺寸有关。对于浸没在水中的空气泡,只有直径大于 1 μm 的气泡才能在这些频率范围内发射非破坏性的 SH。