Controlling and Monitoring of Boiler Parametrs Using Scada

P. Vidhyalakshmi, K.V. Dhanishka, P. Gokulapriya, S. Vasant
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Abstract

The control and monitoring of heater operation are covered in this paper. A boiler is a large component in an enterprise that heats water and produces steam. Steam can be utilised to run turbines or engines. In this project, the boiler's functioning is controlled by a PIC microcontroller, which regulates the boiler's temperature and pressure. This is due to the fact that PICs are highly adaptable, low-cost, space-efficient, and reduce complexity. The data from the microcontroller is received by SCADA and shown on the screen. The suggested boiler automation ensures that the boiler system, and thus the power production plant, runs safely, reliably, and continuously. Boilers are used in many industrial and commercial buildings to create hot water or steam for space or process heating. Boiler setup is made using LPG cylinder and heater is placed in the cylinder so that it acts as boiler. Pressure and temperature sensor is used to measure the both pressure and temperature in the boiler. To control temperature, pump is placed and when the temperature goes beyond the certain level pump automatically turns ON and the feedwater is supplied. When the pressure goes beyond the limit solenoid valve turns ON and steam released through the solenoid valve. LCD is placed to monitor the values from outside. This page discusses the many type of boilers are used to heat buildings, as well as fundamental boiler controls and factors that influence energy efficiency.
基于Scada的锅炉参数控制与监测
本文讨论了加热器运行的控制和监测。锅炉是企业中加热水并产生蒸汽的一个重要组成部分。蒸汽可以用来驱动涡轮机或发动机。在本设计中,锅炉的功能由PIC单片机控制,通过单片机调节锅炉的温度和压力。这是由于pic具有高适应性、低成本、空间效率和降低复杂性。来自单片机的数据被SCADA接收并显示在屏幕上。建议的锅炉自动化确保锅炉系统,从而确保电厂安全、可靠和连续运行。锅炉在许多工业和商业建筑中使用,为空间或过程加热产生热水或蒸汽。锅炉装置是用液化石油气钢瓶制造的,加热器放在钢瓶中,使其充当锅炉。压力温度传感器用于测量锅炉内的压力和温度。为了控制温度,放置泵,当温度超过一定水平时,泵自动打开并供应给水。当压力超过限位时,电磁阀开启,蒸汽通过电磁阀释放。LCD被放置以从外部监控数值。本页讨论了许多类型的锅炉用于加热建筑物,以及基本的锅炉控制和影响能源效率的因素。
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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