DESIGN AND CONSTRUCTION OF 625KVAR POWER FACTOR CORRECTING PANEL

Micheal Olusolade, F. Bello, Tope Akinbobola Akinseye, John Alesanmi Faweya
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Abstract

In industry, most of the loads are inductive in nature which results in lagging power factor. This is the same for some commercial centers and homes with modern appliances, thus resulting in loss and wastage of energy leading to high power bills and heavy penalties from electricity boards in some developed countries. This electrical feature when low below certain values, below unity brings about low voltages, large copper loss, poor efficiency and hotness of the conductor used in the circuit. Power factor is the ratio of real or active power to apparent power. It is unit less. At unit (1) power factor, active and apparent power are equal. At this level, the reactive power is equal to zero and current is at minimum value. This 625kVar power factor correcting panel operates both manually and automatically for active load of 500kW at 0.8 power factors to bring it to 0.99 power factors. There are many ways to achieve this, but this project is employing only the use of capacitors and six capacitors were used. Conclusively, this design was successfully executed, and it is an indication that capacitors can be used to meet different initial and corrected power factor angle as losses were minimized hence reducing heat in the transformer, cables, and switch gear of the power system.
625kvar功率因数校正板的设计与制作
在工业中,大多数负载本质上是感性的,这导致了滞后的功率因数。一些商业中心和拥有现代电器的家庭也是如此,从而导致能源的损失和浪费,导致一些发达国家的高额电费和电力局的重罚。该电气特性在低于一定值时,低于单位会导致电路中所用导体的电压低、铜损耗大、效率差和热性差。功率因数是实际或有功功率与视在功率的比值。它是单位小的。在单位(1)功率因数时,有功功率和视在功率相等。在这个水平,无功功率等于零,电流处于最小值。这款625kVar功率因数校正面板可以手动和自动操作,在0.8功率因数的500kW有功负载下,使其达到0.99功率因数。实现这一目标的方法有很多,但本项目仅采用电容器,并使用了6个电容器。最后,该设计成功地执行了,这表明电容器可以用于满足不同的初始和校正功率因数角,因为损耗最小,从而减少了电力系统中变压器,电缆和开关设备的热量。
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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