圆锥泡声致发光气泡动力学过程的理论分析
何寿杰[1] 哈静[2] 李雪辰[1] 李庆[1] 王龙[3]
[1]河北大学物理科学与技术学院,保定071002 [2]河北农业大学理学院,保定071001 [3]中国科学院物理研究所,北京100080
摘 要:
在绝热压缩模型的基础上,详细讨论了圆锥泡声致发光中气泡运动的动力学过程,得到了气泡塌陷速度方程、气泡内压强方程以及温度方程.结果显示在气泡进入圆锥腔的初始阶段,气泡的塌陷速度随着压缩半径的不断减小近似线性地增加;然后随着压缩半径的进一步减小,气泡塌陷的加速度逐渐减小;当气泡塌陷速度达到最大值后,随着气泡压缩半径的进一步减小,塌陷速度迅速下降至零.在假设初始气压为1000Pa的基础上,理论分析得到气泡的最高塌陷速度可以达到5.8m/s;气泡的最小压缩半径可以达到1.37cm,相应的气泡内极限压强超过4.5×10^5Pa,极限温度超过3150K,而液流能够提供给气泡的能量达到0.02J.理论推导得到的结果可以比较好地用来解释实验中的现象.最后分析得到气泡内的初始气压对气泡所能达到的极端条件有着重要的影响.[著者文摘]

文章出处:
《力学学报》-2007年39卷6期 -727-731页
分 类 号:
文献标识码:
A
文章编号:
0459-1879(2007)06-0727-05
THEORETICAL STUDY ON DYNAMIC PROCESS OF CONICAL BUBBLE SONOLUMINESCENCE
He Shoujie, Ha Jing,Li Xuechen, Li Qing, Wang Long( 1.College of Physical Science and Technology, Hebei University, Baoding 071002, China;2.Institute of Science, Hebei Agriculture University, Baoding 071001, China;3. Institute of Physics, Chinese Academy of Science, Beijing 100080, China)
Abstract:
The dynamic process of conical bubble sonoluminescence is discussed based on the adiabatic process. The equations for the velocity of bubble collapse, the pressure and temperature within the bubble are derived. Results show that the velocity of collapsing bubble increases with the decrease of the radius of collapsing bubble first in an approximately linear manner, then the maximal velocity of collapsing bubble is reached, subsequently, the velocity of collapsing bubble quickly decreases. Assuming that the initial pressure is equal to 1000 Pa, the maximal value of the velocity of bubble collapse is 5.8m/s, the minimum radius of the bubble is 1.37cm, then the huge pressure of 4.5 ×10^5 Pa, the collapsing temperature of above 37000K, and the maximal energy of about 0.02 J can be achieved. The equations obtained in this paper could explain the phenomena of experiment. Finally, results show that the initial pressure within the bubble has important effects on the final extreme conditions.[著者文摘]
Key words:
conical bubble sonoluminescence, velocity collapsing bubble, pressure of collapsing bubble, adiabatic collapse, radius of
基金资助:
国家自然科学基金(20273077)和河北大学校内青年基金(2005Q06)资助项目.

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