首页> 外文会议>American Society of Mechanical Engineers(ASME) Summer Heat Transfer Conference(HT2005) vol.2; 20050717-22; San Francisco,CA(UA) >STABILITY OF SOLUTAL CONVECTION IN A GRAVITY MODULATED MUSHY LAYER DURING THE SOLIDIFICATION OF BINARY ALLOYS
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STABILITY OF SOLUTAL CONVECTION IN A GRAVITY MODULATED MUSHY LAYER DURING THE SOLIDIFICATION OF BINARY ALLOYS

机译:二元合金凝固过程中重力调制的粘性层中土壤对流的稳定性

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摘要

The linear stability theory is used to investigate the effects of gravity modulation on solutal convection in mushy layers found in solidifying binary alloys. The gravitational field is modeled to consist of constant part and a sinusoidally varying part. The linear stability results are presented for both the synchronous and subharmonic solutions, and it is demonstrated that up to the transition point between the synchronous and subharmonic regions, increasing the frequency of vibration rapidly stabilizes the solutal convection. However, beyond the transition point, further increases in the frequency tends to destabilize convection. It is also demonstrated that the effect of increasing the ratio of the Stefan number and the solid composition (η_o ) is to destabilize the solutal convection.
机译:线性稳定性理论用于研究重力调制对凝固二元合金中糊状层中溶质对流的影响。引力场建模为包括恒定部分和正弦变化部分。给出了同步和次谐波解的线性稳定性结果,结果表明,直到同步和次谐波区域之间的过渡点,增加振动频率可以快速稳定溶液对流。但是,在过渡点之外,频率的进一步增加往往会使对流不稳定。还证明了增加斯蒂芬数与固体成分之比(η_o)的作用是使溶液对流不稳定。

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