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Study of single bubble Sonoluminescence in phosphoric acid

机译:磷酸中单泡声致发光的研究

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Sonoluminescence (SL) radiation from different solutions of phosphoric acid has been studied in the framework of a hydro-chemical simulation. By calculating the phase diagrams of an SL bubble in different concentrations of phosphoric acid, the optimum solution for acquiring maximum SL emission has been specified as the solution of around 30 wt.% acid. It is shown that the SL temperature and the number of particles inside the bubble at the time of SL emission are two important factors determining the optimum solution. Numerical calculation of the SL intensity shows that the optimum solution has an intensity of about 20 times greater than that of water. Also, contributions of different energy sources in creation of thermal energy of the bubble have been calculated. The result indicates that the work of external driving pressure is the most important factor to determine the ultimate thermal energy of the bubble at the time of SL emission. Based on this result, we have reasoned out that in the determination of the optimum solution, the role of viscosity of the acid solutions is more important than the vapor pressure.
机译:在水化学模拟的框架内,已经研究了来自不同磷酸溶液的声致发光(SL)辐射。通过计算在不同浓度的磷酸中的SL气泡的相图,已经确定了获得最大SL排放量的最佳溶液是大约30 wt。%的酸溶液。结果表明,SL温度和SL发射时气泡内部气泡的数量是确定最佳解决方案的两个重要因素。 SL强度的数值计算表明,最佳解决方案的强度约为水的强度的20倍。而且,已经计算出了在气泡的热能产生中不同能源的贡献。结果表明,外部驱动压力的作用是确定SL排放时气泡最终热能的最重要因素。基于此结果,我们推断出在确定最佳溶液时,酸性溶液的粘度比蒸汽压更重要。

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