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Determining the Coefficient of Discharge for a Draining Container

机译:确定排水容器的排放系数

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摘要

The flow of fluids through open containers is a topic studied frequently in introductory physics classes. A fluid mechanics class delves deeper into the topic of fluid flow through open containers with holes or barriers. The flow of a fluid jet out of a sharp-edged orifice rarely has the same area as the orifice due to a fluid flow phenomenon known as the vena contracta. The area of a fluid jet out of an orifice is related to the actual area of the orifice by a value known as the coefficient of discharge, Cd. The purpose of this paper is to develop a mathematical model for a draining open container and an experimental method that will efficiently determine the coefficient of discharge for such a system. Prior work in physics education literature has developed a method for measuring the flow of a fluid out of an orifice using ultrasonic motion detectors. In this paper we present data that show our method can be used to find the coefficient of discharge within the expected literature values for sharp-edged and rounded orifices.
机译:通过开放式容器的流体流动是物理入门课程中经常研究的主题。流体力学课程更深入地研究通过带有孔或障碍的开放式容器中的流体流动的话题。由于称为腔静脉收缩的流体流动现象,从锋利的孔口流出的流体射流很少具有与孔口相同的面积。从孔口喷出的流体的面积与孔口的实际面积有关,该值与称为排放系数Cd的值有关。本文的目的是为排水的敞开式容器建立数学模型和一种实验方法,以有效地确定此类系统的排放系数。物理教育文献中的先前工作已经开发出一种使用超声波运动检测器测量流出孔口的流体流量的方法。在本文中,我们提供的数据表明,我们的方法可用于在尖锐和圆形孔口的预期文献值范围内找到排放系数。

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