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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >POTENTIAL ROLE PLAYED BY VISCOUS HEATING IN THERMAL-CHEMICAL CONVECTION IN THE OUTER CORE
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POTENTIAL ROLE PLAYED BY VISCOUS HEATING IN THERMAL-CHEMICAL CONVECTION IN THE OUTER CORE

机译:粘性加热在外层热化学对流中发挥的潜在作用

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There are increasing evidences to suggest that the composition of the outer-core is heterogeneous and consists of iron and other lighter elements. There is also some support of the likelihood for light elements to come out of the inner core. Such a release of potential energy can be converted into mechanical heat dissipated via the kinetic energy of the fluid motions in thermal-chemical convection. We have studied the possibilities of significant viscous heating from thermal-chemical convection in the outer core with a simple model. The results show that very high interior temperature can be produced by the efficient conversion of chemical potential energy to heat dissipated. The maximum temperature attained can exceed the temperature of the inner-outer core boundary for a chemical buoyancy ratio exceeding 5. This maximum temperature increases with the buoyancy ratio, which measures the relative strengths between chemical and thermal convective strengths. The amount of dissipative heat liberated from thermal-chemical convection may place constraints on the amount of heat produced by ohmic dissipation due to dynamo action in the outer core. [References: 50]
机译:越来越多的证据表明外核的组成是异质的,并且由铁和其他轻元素组成。对于轻元素从内核中脱出的可能性也有一些支持。势能的这种释放可以通过热化学对流中的流体运动的动能转化为机械热耗散。我们用一个简单的模型研究了外芯中热化学对流引起的大量粘性加热的可能性。结果表明,通过将化学势能有效转化为热能可以产生很高的内部温度。当化学浮力比超过5时,达到的最高温度可能会超过内外边界温度。该最高温度随浮力比而增加,从而测量化学对流强度与热对流强度之间的相对强度。热化学对流释放的散热量可能会限制由于外芯中的发电机作用而导致的欧姆耗散所产生的热量。 [参考:50]

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