使用 LabVIEW 软件和 Arduino 硬件评估可可干燥机原型

A. Rincón-Quintero, L. D. del Portillo-Valdés, C. Sandoval-Rodríguez
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摘要

在哥伦比亚这样的国家,食品干燥在技术推广方面发挥着重要作用,从而使农民提高了生产质量。这项工作的目的是开发一个获取热力学变量的系统,利用 Arduino 硬件和 LabView 软件确定产品烘干炉的能效,特别是可可豆的能效。这项研究首先要确定 DHT11 传感器要测量和记录的变量,如温度和湿度。这些传感器与 Arduino Uno 电路板相连,该电路板上有一个 Atmel 微控制器,可捕捉每个传感器的信息。此外,还开发了一种算法,用于捕捉温度和湿度数据,并通过串行端口将其发送到 LabView 软件中。在实验测试中,取了 3 309 克发酵可可豆,经过 36 小时的干燥,共去除 1 650 克水。结果显示,能源效率为 10.62%,由此得出结论,利用 18000 BTU 冷凝器的余热与拟议的可变系统集成的烘干炉适用于烘干可可豆。尽管能效较低,但它达到了去除可可豆中水分的目的。
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Evaluation of a cocoa dryer prototype using LabVIEW software and Arduino hardware
In a country like Colombia, food drying plays an important role in the extension of technology so that farmers improve the quality of their productivity. The objective of this work is to develop a system for acquiring thermodynamic variables, to establish the energy efficiency of a product drying oven, specifically for cocoa beans using Arduino hardware and LabView software. This research begins by establishing the variables to be measured and recorded by the DHT11 sensors, such as temperature and humidity. These sensors are connected to an Arduino Uno board that has an Atmel microcontroller, which captures the information from each of these. An algorithm was also developed that captures the temperature and humidity data and sends it through the serial port to the LabView software, in which the visualization on the front panel and programming in the block diagram have been developed, being viewed from the HMI (Human Machine Interface). For the experimental tests, 3,309 grams of fermented cocoa beans were taken, and dried for 36 hours, removing a total mass of water of 1,650 grams. The results show an energy efficiency of 10.62%, concluding that the drying oven that takes advantage of the residual heat of an 18000 BTU condenser integrated with the proposed variable system is suitable for drying cocoa beans. Despite this efficiency being low, it meets the objective of removing moisture from them.
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