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Dissipation in ferrofluids: Mesoscopic versus hydrodynamic theory

机译:铁磁流体的耗散:介观与流体力学理论

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Part of the field dependent dissipation in ferrofluids occurs due to the rotational motion of the ferromagnetic grains relative to the viscous flow of the carrier fluid. The classical theoretical description due to Shliomis (Zh. Eksp. Teor. Fit. 61, 2411 (1971) [Sov. Phy JETP 34, 1291 (1972)]) uses a mesoscopic treatment of the particle motion to derive a relaxation equation for the nonequilibrium part of the magnetization. Complementary, the hydrodynamic approach of Liu [Phys. Rev. Lett. 70, 3580 (1993)] involves only macroscopic quantities and results in dissipative Maxwell equations for the magnetic fields in the ferrofluid, Different stress tensors and constitutive equations lead to deviating theoretical predictions in those situations, where the magnetic relaxation processes cannot be considered instantaneous on the hydrodynamic time scale. We quantify these differences for two situations of experimental relevance, namely, a resting fluid in an oscillating oblique field and the damping of parametrically excited surface waves. The possibilities of an experimental differentiation between the two theoretical approaches is discussed. [S1063-651X(94)15011-6]. [References: 22]
机译:由于铁磁性晶粒相对于载流流体的粘性流的旋转运动,导致铁磁流体中与磁场有关的部分耗散发生。 Shliomis提出的经典理论描述(Zh。Eksp。Teor。Fit。61,2411(1971)[Sov。Phy JETP 34,1291(1972)])使用质点运动的介观方法导出了弛豫方程。非平衡部分的磁化强度。补充,刘的水动力方法[Phys。牧师70,3580(1993)]仅涉及宏观量,并产生了铁磁流体中磁场的耗散麦克斯韦方程,在这些情况下,不能将磁弛豫过程视为瞬时的这种情况下,不同的应力张量和本构方程会导致理论预测偏离。水动力时间尺度。我们在实验相关的两种情况下对这些差异进行量化,即在倾斜斜场中的静水和对参数激发的表面波的阻尼。讨论了两种理论方法之间进行实验区分的可能性。 [S1063-651X(94)15011-6]。 [参考:22]

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