首页> 外文期刊>Microgravity science and technology >Modes of Thermogravitational Convection and Thermoelectrokinetic Instability Under Joule Heating in Electrolyte Between Electric Membranes
【24h】

Modes of Thermogravitational Convection and Thermoelectrokinetic Instability Under Joule Heating in Electrolyte Between Electric Membranes

机译:电解质在电解质中焦耳加热下的热再生对流与热电不稳定的模式

获取原文
获取原文并翻译 | 示例
           

摘要

Joule heating near ion-selective cation-exchange membranes in an external electric field can cause two modes of instability, namely, the thermogravitational convection, which reminds a well-known Rayleigh-Benard convection, and a novel type of instability, the thermoelectrokinetic instability. Stability of a quiescent one-dimensional steady-state solution to infinite small sinusoidal perturbations has been investigated in a wide range of the Rayleigh numbers. It has been found that, for the both modes, instability occurs for the limiting as well as for the underlimiting currents. Hence, a transition to the overlimiting regimes can happen bypassing the limiting regime, from some point of the underlimiting regime. Note that the Rubinstein -Zaltzman instability takes place only for the limiting currents. The Rayleigh numbers, recalculated to the classical ones, vary in a range from 500 to 1300, which is consistent with the classical thermogravitational convection results. It has been also shown, that the critical Rayleigh numbers are too large and, hence, critical distances between the membranes are too small to make the thermogravitational convection possible to manifest in the microchannels. This refutes the opinion that the thermogravitational instability produces one of the key mechanisms of transition to overlimiting currents in the problems of microfluidics.
机译:在外部电场中的离子选择性阳离子交换膜附近的焦耳加热会导致两种不稳定模式,即热度提升对流,这提醒着众所周知的Rayleigh-Benard对流,以及一种新颖的不稳定性,热电不稳定。在广泛的瑞利数中已经研究了静态一维稳态溶液对无限小正弦扰动的稳定性。已经发现,对于这两种模式,限制以及欠平电流发生不稳定性。因此,从非界限制度的某个点绕过覆盖制度的过渡可以绕过限制性制度。请注意,Rubinstein -Zaltzman不稳定性仅用于限制电流。重新计算到经典的Rayleigh号码,在500到1300的范围内变化,这与经典的热再生对流结果一致。已经示出了,临界瑞利数太大,因此,膜之间的临界距离太小,不能使热再生对流在微通道中显现。这阐述了热度推测不稳定性产生了在微流体问题中过渡到覆盖电流的关键机制之一。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号