首页> 外文OA文献 >Measurements of Drag Coefficients and Rotation Rates of Free-Falling Helixes
【2h】

Measurements of Drag Coefficients and Rotation Rates of Free-Falling Helixes

机译:自由下落螺旋的阻力系数和旋转速率的测量

摘要

The motion of bacteria in the environment is relevant to several fields. At very small scales and with simple helical shapes, we are able to describe experimentally and mathematically the motion of solid spirals falling freely within a liquid pool. Using these shapes we intend to mimic the motion of bacteria called Spirochetes. We seek to experimentally investigate the linear and the rotational motion of such shapes. A better understanding of the dynamics of this process will be practical not only on engineering and physics, but the bioscience and environmental as well. In the following pages, we explore the role of the shape on the motion of passive solid helixes in different liquids. We fabricate three solid helical shapes and drop them under gravity in water, glycerol and a mixture of 30% glycerol in water. That generated rotation due to helical angle in water. However, we observe the rotation disappear in glycerol. The movement of the solid helical shapes is imaged using a high-speed video camera. Then, the images are analyzed using the supplied software and a computer. Using these simultaneous measurements, we examine the terminal velocity of solid helical shapes. Using this information we computed the drag coefficient and the drag force. We obtain the helical angular velocity and the torque applied to the solid. The results of this study will allow us to more accurately predict the motion of solid helical shape. This analysis will also shed light onto biological questions of bacteria movement.
机译:细菌在环境中的运动与几个领域有关。在非常小的比例和简单的螺旋形状下,我们能够以实验和数学方式描述固体螺旋在液体池中自由下落的运动。使用这些形状,我们打算模仿称为螺旋体的细菌的运动。我们试图通过实验研究这种形状的线性和旋转运动。更好地了解这一过程的动力学,不仅在工程和物理上,而且在生物科学和环境上都是可行的。在接下来的几页中,我们将探讨形状在不同液体中被动固态螺旋运动中的作用。我们制作了三个固体螺旋形状,并将它们在重力,水和甘油以及30%的甘油在水中的混合物中滴下。由于水中的螺旋角而产生旋转。但是,我们观察到甘油的旋转消失了。使用高速摄像机对实心螺旋形的运动进行成像。然后,使用附带的软件和计算机对图像进行分析。使用这些同时进行的测量,我们检查了实心螺旋形状的最终速度。使用此信息,我们计算了阻力系数和阻力。我们获得了螺旋角速度和施加到固体上的扭矩。这项研究的结果将使我们能够更准确地预测实体螺旋形状的运动。这种分析还将阐明细菌运动的生物学问题。

著录项

  • 作者

    Al-Omari Abdulrhaman A.;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号