Azizah Bella Azizah Bella, Devina Rayzy Perwitasari Sutaji Putri, Idris Mandang
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摘要

了解水域状况对水生生态系统的可持续性非常重要。通过温度和盐度参数可以了解水域的状况,以免对水生生态系统产生不良影响。海水温度是由海水运动等因素引起的海洋热量分布。海水的盐度是指海水的含盐量或溶解在海水中的盐的含量。温度可以用温度计测量,盐度可以用折光计测量。然而,使用这些工具需要时间、精力、成本和手动数据检索过程。因此,本研究旨在制作一种温度和盐度测量仪器,确定海水中电压与盐度的关系。本研究使用测量电导率(DHL)的方法来确定幅度的变化。温度和盐度设计由Arduino Uno, YL-38模块,铜作为电极和DS18B20温度传感器组成。研究结果表明,盐度和温度的平均误差分别为0.00732%和0.044%。通过本研究,盐度和温度仪器采用铜和DS18B20电极制成,工作电压为4.8伏。得到了应力与盐度的线性关系图。电压与盐度成正比关系,海水盐度越高,输出电压越大。
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Rancang Bangun Sistem Monitoring Suhu dan Salinias pada Air Laut
Knowing the condition of the waters is very important for the sustainability of aquatic ecosystems. The condition of the waters so as not to have a bad impact on aquatic ecosystems can be known through temperature and salinity parameters. Seawater temperature is the distribution of heat in the ocean caused by the movement of water and other factors. The salinity of seawater is the level of saltiness or the level of salt dissolved in seawater. Temperature can be measured using a thermometer and salinity is measured using a refractometer. However, using these tools requires time, effort, cost, and manual data retrieval processes. Therefore, this research aims to make a temperature and salinity measuring instrument and determine the relationship between Voltage and salinity in the seawater. This research used the method of measuring electrical conductivity (DHL) to determine a change in magnitude. The temperature and salinity design consisted of an Arduino Uno, a YL-38 Module, and copper as an electrode, and a DS18B20 Temperature Sensor. the result of this research shows that has been done, the average error presentation of salinity is 0.00732% and temperature is 0.044 %. Through this research, salinity and the temperature instrument produced using electrodes made of copper and DS18B20 which operate at a Voltage of 4,8 Volts. The obtained a linear graph between stress and salinity. The relationship between voltage and salinity is directly proportional, the higher the salinity of seawater, the greater the output voltage.
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