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Ahmad Moshaii

Publications and source records attributed to Ahmad Moshaii.

3 recordsLinked to original sources

A New Damping Mechanism in Non-linear Bubble Dynamics

Non-linear equations of radial motion of a gas bubble in a compressible viscous liquid have been modified considering effects of viscosity and compressibility more complete than all previous works. A new set of equations has been derived including new terms resulted from consideration of the viscosity and compressibility not only at the bubble interface, but also in the bulk of liquid. The new equations are two non-linear coupled equations, which can not be merged into one equation unlike all previously derived equations. Numerical calculations have been performed considering effects of heat and mass transfer at the bubble interface. The results indicate that the new terms exhibit an important damping role at the collapse, so that their consideration dramatically weakens the bubble rebounds after the collapse. Dependence of this new damping mechanism to amplitude and frequency of the deriving pressure has been investigated.

physics.flu-dyn

Effects of Bulk Viscosity in Non-linear Bubble Dynamics

The non-linear bubble dynamics equations in a compressible liquid have been modified considering the effects of compressibility of both the liquid and the gas at the bubble interface. A new bubble boundary equation has been derived, which includes a new term resulted from the liquid bulk viscosity effects. The influence of this term has been numerically investigated considering the effects of water vapor and chemical reactions on the bubble evolution. The results clearly indicate that the new term has an important damping role at the collapse, so that its consideration decreases the amplitude of the bubble rebounds after the collapse. This damping feature is more remarkable for higher deriving pressures.

physics.flu-dyn

Compressibility Consideration in the Boundary of a Strongly Collapsing Bubble

Equations of radial motion of a gas bubble in a compressible viscous liquid have been modified to account for compressibility at the bubble boundary. A new bubble boundary equation has been derived, including a new term resulted from liquid compressibility. The influence of this term has been numerically investigated using isothermal-adiabatic model for the gas inside the bubble. The results clearly indicate that, at the end of the collapse, the new term has a very significant role and its consideration dramatically changes the bubble characteristics. Moreover, the more intense the collapse is, the more significant the effect of the new term is. Also, it has been reasoned out that, the influence of the new term will be established even when the effects of mass (water vapor) exchange, chemical reactions, and gas dynamics inside the bubble are taken into account.

physics.flu-dyn