人工形成的植物物质结构连续体中细胞流体流体动力学流动的评价

M. Sosnin, I. A. Shorstky
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引用次数: 0

摘要

的目标。该研究的目的是评估暴露于大气火花放电的结果,在植物材料结构中人工形成的通道中细胞流体的流体动力学流动。本文介绍了植物材料经大气火花放电后,细胞液在人工形成的通道中流动的一些特征。用理想物理模型的流体力学表达式来描述它们。作为对接收数据的确认,设置了实验部分。的方法。作者考虑了初始植物材料用火花放电预处理的情况;它的影响在材料的结构中以通诱导通道的形式产生一个新的连续体。基于泊泽维尔定律给出了电诱导通道胞内液流出时间和压力功率的表达式。实验部分的工作包括火花放电处理植物材料-胡萝卜切成直径为24毫米,厚度为3和9毫米的圆盘,以确定释放的细胞液量对实验持续时间和放电电流模式的依赖关系。结果。大气火花放电处理有助于植物材料结构中新连续体的形成。随着处理强度的增加,胡萝卜盘的水分痕迹面积增加,结果是细胞内液体的释放量增加。为使实验清晰,给出了处理强度随出液量的关系曲线图,并给出了相应的表达式。所获得的实验数据和依赖关系将是有用的,当考虑更复杂的传质过程在毛细管多孔体使用初步电物理处理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of hydrodynamic flows of cellular fluid in artificially formed continuums of plant material structure
Aim. The aim of the research is to evaluate hydrodynamic flows of cellular fluid in artificially formed channels of the structure of plant materials as a result of exposure to atmospheric spark discharge. The article presents some features of the flow of cellular fluid in artificially formed channels of plant materials after passing an atmospheric spark discharge. Expressions of hydrodynamics of idealized physical models are used to describe them. As a confirmation of the received data, the experimental part has been set.The Methods. The authors consider the case when the initial plant material is pre-treated with a spark discharge; its influence arises a new continuum in the structure of the material in the form of a throughinduced channel. Expressions of intracellular fluid outflow time and pressure power based on Poiseuille's law are given for electrically induced channels. The experimental part of the work includes spark discharge treatment of plant material – carrots cut into discs with a diameter of 24 mm and a thickness of 3 and 9 mm to determine the dependence of the amount of released cellular fluid on the duration of the experiment and the discharge current mode.The Results. It has been established that atmospheric spark discharge treatment contributes to the formation of new continuums in the structure of plant materials. With an increase in the intensity of treatment, the area of the moisture trace from the carrot disk increases and, as a result, the amount of released intracellular fluid. For the sake of clarity of the experiments, graphs of the dependence of the processing intensity on the amount of liquid released have been presented, corresponding expressions given.Conclusion. The obtained experimental data and dependencies will be useful when considering more complex mass transfer processes in capillary-porous bodies using preliminary electrophysical processing.
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