Determination of Phase-Eigenvalues by Rational Factorization and Enhanced Simulation of Two-Phase Mass Flow

Puskar R. Pokhrel, B. M. Tuladhar
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引用次数: 1

Abstract

In this paper, we present simple and exact eigenvalues for both the solid- and fluid-phases of the real two-phase general model developed by Pudasaini (2012); we call these phase-eigenvalues, the solid- phase-eigenvalues and the fluid-phase-eigenvalues. Results are compared by applying the derived phase- eigenvalues that incorporate the phase-interactions in the two-phase debris movements against the simple and classical solid and fluid eigenvalues without any phase interaction. We have constructed several different set of eigenvalues including the coupled phase eigenvalues by using rational factorization method. At first, we consider for general debris height; factorizing the solid and fluid lateral pressure contributions by considering the negligible pressure gradient; negligible solid lateral pressure; negligible fluid lateral pressure; negligible solid and fluid lateral pressure. Secondly, for a thin debris ow height, we also construct the fourth set of eigenvalues in three different cases. These phase-eigenvalues incorporate strong interaction between the solid and fluid dynamics. The simulation results are produced by taking all these different sets of coupled phase-eigenvalues and are compared with the classical uncoupled set of solid and fluid eigenvalues. The results indicate the importance of phase-eigenvalues and supports for a complete description of the phase- eigenvalues for the enhanced description of real two-phase debris flows and landslide motions.
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合理因子分解法确定两相质量流相特征值及改进模拟
在本文中,我们给出了由Pudasaini(2012)开发的实际两相一般模型的固相和流相的简单而精确的特征值;我们称之为相特征值,固相特征值和流体相特征值。将包含两相碎屑运动中相相互作用的相特征值与没有任何相相互作用的简单和经典的固体和流体特征值进行了比较。利用有理分解方法构造了几种不同的特征值集,其中包括耦合相位特征值。首先考虑一般碎片高度;通过考虑可忽略的压力梯度来分解固体和流体侧压力的贡献;固体侧压力可忽略;流体侧压力可忽略;可以忽略固体和流体侧压。其次,对于薄碎片低高度,我们也构造了三种不同情况下的第四组特征值。这些相特征值包含固体和流体力学之间的强相互作用。采用这些不同的耦合相特征值集得到了仿真结果,并与经典的不耦合固流特征值集进行了比较。结果表明了相特征值的重要性,并支持了相特征值的完整描述,以增强对实际两相泥石流和滑坡运动的描述。
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