弹粘塑性液体的流变性能

IF 0.3 Q4 ENGINEERING, PETROLEUM
Nafta-Gaz Pub Date : 2022-11-01 DOI:10.18668/ng.2022.11.03
M. Dadash-zade, Inglab N. Aliyev
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引用次数: 0

摘要

提出了一种可压缩弹粘塑性流体在圆管内的运动模型。得到了流量、体积流量和速度的主要指标。许多流体动力学过程都与液体的性质有关。众所周知,液体的机械和物理性质可以用各种模型来描述。人们提出了各种模型来部分地描述流体力学的过程。所提出的模型使定性地描述发生在各种系统中的变形过程成为可能。为了描述连续介质的封闭运动理论,特别是应力和应变之间的运动理论,必须有一个力学模型。从文献分析可知,有简单的模型,包括弹性、粘性和塑性。同时,需要注意的是,力学模型以胡克定律的形式部分地显示了弹性体的力学状态。实践表明,还有更复杂的液体不遵守这一规律。其中一种流体是弹粘塑性流体。在这项工作中,提出了一个描述液体弹-粘-塑性特性的模型,该模型将弹性和粘-塑性单元依次连接起来。对于这种介质,总阻力为弹性变形所对应的应力和粘塑性阻力所引起的应力之和。在此模型的基础上,得到了考虑体积弹性膨胀系数的方程,以及确定给定液体在管道截面上的速度分布和体积流量的方程。计算表明,随着可压缩性的增加,液体的流量会部分增加,这在一些实际情况下会产生积极的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rheological properties of elastic-visco-plastic liquid
A model for the motion of a compressible elastic-viscous-plastic fluid in a round pipe is proposed. The main indicators of the flow, volume flow and speed are obtained. Numerous hydrodynamic processes are associated with the properties of liquids. It is known that the mechanical and physical properties of liquids can be described by various models. Various models have been proposed that partially describe the processes of hydromechanics. The proposed model makes it possible to qualitatively describe the deformation processes that occur in various systems. To describe a closed theory of motion of a continuous medium and, in particular, between stress and strain, it is necessary to have a mechanical model. From the literature analysis it is known that there are simple models, which include elastic, viscous and plastic. At the same time, it should be noted that the mechanical model partially shows the mechanical state of the elastic body in the form of Hooke's law. Practice shows that there are more complex liquids that do not obey this law. One of these fluids is an elastic-viscous-plastic fluid. In this work, a model is proposed that describes the elastic-viscous-plastic properties of liquids, which sequentially connects the elastic and viscous-plastic elements. For such a medium, the total resistance will be the sum of the stress corresponding to the elastic deformation and the stress caused by the viscous-plastic resistance. Based on the proposed model, an equation is obtained taking into account the coefficient of volumetric elastic expansion, and an equation is obtained for determining the velocity distribution over the pipe section and volume flow for a given liquid. Calculations have shown that with an increase in compressibility, the flow rate of the liquid partially increases, which in some practical cases produces a positive effect.
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来源期刊
Nafta-Gaz
Nafta-Gaz ENGINEERING, PETROLEUM-
CiteScore
0.80
自引率
60.00%
发文量
81
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