基于物联网的生物质温湿度实时监测

Aryanto, Melvi, A. Ulvan
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引用次数: 0

摘要

生物质转化为能源被称为生物质再生。这种能量被用来发电和供热。燃烧系统和分类系统是用于发电和供热的生物质转化技术的主要类别。生物质气化炉的温度对产生高热值气体起着重要的作用。温度可以准确无误地测量,然后可以通过物联网进行监测和控制。在这项工作中,对温度随气流速率变化的变化进行了各种实验研究。采用选定的数据采集设备,测量气化炉内部的温度分布,DHT22和NTC(负温度系数)热电偶。根据物联网数据采集结果,使用Wemos D1装置获得生物质气化的精确数据和实时温度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Real-time Monitoring of Biomass Temperature and Humidity Based on the Internet of Things
The conversion of biomass to energy is known as biomass regeneration. This energy is used to generate electricity and heat. Combustion systems and classification systems are a major category of biomass conversion technology for power and heat production. The temperature in the biomass gasifier plays an important role in producing gas with high calorific value. Temperature can be measured correctly without error and can then be monitored and controlled by the Internet of Things. In this work, various experimental studies were carried out on variations in temperature with changes in the airflow rate. To measure the temperature profile inside the gasifier, DHT22 and NTC (Negative Temperature Coefficient) thermocouple with the selected data acquisition device. From the results of data acquisition using IoT, precision data, and real-time temperature of biomass gasification were obtained using the Wemos D1 device.
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