Sistem Monitoring dan Kontrol Katup Pendingin terhadap Temperatur Air Outfall PLTU

Marina Artiyasa, Anang Suryana, Muhammad Shobirin, Anggy Pradiftha Junfithrana, Aryo De Wibowo Muhamad Sidik, Mochtar Ali Setyo Yudono, Edwinanto Edwinanto
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Abstract

The Pelabuhan Ratu Steam Power Plant (PLTU) is a large-scale power plant that generates a lot of heat energy. Sea water is one of the cooling systems or cooling systems that can be used, but the continuous use of sea water as a cooling system media at the power plant has a negative impact because if the cooling system output water has a hot temperature that exceeds the provisions, it will disrupt marine life near the water disposal area. A cooling system, also known as an outfall or downstream channel. In order to address these issues, a study titled the monitoring and control system of the cooling valve on the outfall water temperature of the Pelabuhan Ratu PLTU with Fuzzy Tsukamoto was conducted. The goal of this study is to create a prototype of an Internet of Things (IoT)-based cooling valve system. The main device connected to the internet is the Nodemcu ESP8266 microcontroller, and two DS18B20 temperature sensors are used to measure the water temperature, as well as the Tsukamoto Fuzzy method to control the water-cooling servo valve downstream of the channel. The research results from the prototype design of the cooling valve system were successful, and the system is able to control the server motor that is connected to the outfall water temperature cooling valve using the input value from the DS18B20 temperature sensor, with a 90% success rate. The output of this system can be monitored and controlled using the Tsukamoto Fuzzy method. With the implementation of this system, it is possible to keep the outfall water temperature below the maximum threshold set by the Ministry of Environment and Forestry.
空调系统监测和控制冷却阀,以防止水温下降pitu
Pelabuhan Ratu蒸汽发电厂(PLTU)是一个产生大量热能的大型发电厂。海水是可以使用的冷却系统或冷却系统之一,但在电厂连续使用海水作为冷却系统介质会产生负面影响,因为如果冷却系统输出的水具有超过规定的热温度,则会破坏水处理区域附近的海洋生物。一种冷却系统,也称为排水口或下游通道。为了解决这些问题,本文采用模糊Tsukamoto方法对水电厂出水温度的冷却阀监测与控制系统进行了研究。这项研究的目标是创建一个基于物联网(IoT)的冷却阀系统的原型。连接互联网的主要设备是Nodemcu ESP8266单片机,使用两个DS18B20温度传感器测量水温,并使用Tsukamoto模糊方法控制通道下游的水冷伺服阀。冷却阀系统原型设计的研究结果是成功的,该系统能够利用DS18B20温度传感器的输入值控制连接到出水温度冷却阀的服务器电机,成功率为90%。该系统的输出可采用冢本模糊方法进行监测和控制。通过该系统的实施,可以将出水温度保持在环境和林业部设定的最高阈值以下。
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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