Design and Implementation of Van de Graaff Generator

Aditya Jaitu, Amish lohar, Sumit Patil, V. Mokal, Prof. Nikhil Kasar
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Abstract

The paper proposes a design and implementation of Van de Graaff generator whose output voltage is 80.28 KV. To calculate the generated output voltage we have use the sphere gap method. A Van de Graaff generator is an electrostatic generator as it works on a principle of electrostatics. A Van de Graaff generator is used to generate a high DC voltage. It was first developed by Robert Jemison Van de Graaff in 1929, in USA and carries his name along 1931. This generator uses a moving belt to build up very high voltages on a hollow metal globe which is located on top of the generator. The potential difference that is developed in modern Van de Graaff generator reach about 5 megavolts. A Van de Graaff generator that we design and built that is intended to be used in schools and colleges for teaching the basics principles of Electrostatics and Electromagnetics as well as many other applications. Nowadays many schools and colleges laboratories and many museums use this type of generators for electrostatics demonstrations.
Van de Graaff发生器的设计与实现
本文提出了一种输出电压为80.28 KV的范德格拉夫发电机的设计与实现。为了计算产生的输出电压,我们采用了球隙法。范德格拉夫发电机是一种静电发电机,因为它是根据静电原理工作的。范德格拉夫发电机是用来产生高直流电压的。1929年,罗伯特·杰米森·范德·格拉夫在美国首次发明了它,并在1931年以他的名字命名。这种发电机使用一条移动带在位于发电机顶部的空心金属球上建立非常高的电压。现代范德格拉夫发电机的电位差可达5兆伏特左右。我们设计和制造的范德格拉夫发生器,打算在学校和大学中用于教授静电学和电磁学的基本原理以及许多其他应用。现在许多学校和大学的实验室和许多博物馆使用这种类型的发电机进行静电演示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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