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Sea Water Salinity Detection Using Circular Fringes Formation Based on Diffraction of Laser Light

机译:基于激光衍射的圆形条纹形成海水盐度检测

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摘要

Salinity describes the amount of salt dissolved in water and brininess of water makes it unsuitable for drinking, industrial and agriculture use. The sea water salinity is most often detected by total dissolved salt method in laboratory. This process is both time consuming and requires laboratory facilities. Various sensors are developed for automated measurements of salinity using light in order to establish a relationship between sodium chloride concentrations and output voltage. The main disadvantage of these voltage based sensors is that output voltage depends on temperature, ambient light and water clarity. In this paper a simple system for salinity detection in sea water is proposed and demonstrated using laser light and ultrasound. The working mechanism of the proposed system is based on the outer most circular fringe radius variations, which consequently alters refractive index. Passing laser light (650 nm) and ultrasound (9 MHz) simultaneously through sodium chloride (NaCl) solutions produce circular fringes at the output. Radii of the circular fringes decrease with increase in the concentration of NaCl dissolved in water and consequently increase the refractive index. The effectiveness of the system is tested on various sodium chloride concentrations. As the NaCl solution concentration increases from 0% to 9% (0 g/l - 90 g/I), the radius of the outer most circular fringe decreases from 16.95 mm to 16.45 mm and the refractive index increases from 1.333 to 1.373. The proposed system has more than 98% accuracy and 99% linearity.
机译:盐度描述了溶解在水中的盐量,水的盐度使其不适合饮用,工业和农业使用。海水盐度最常在实验室通过总溶解盐法检测。该过程既费时又需要实验室设施。为了建立氯化钠浓度和输出电压之间的关系,开发了各种传感器以使用光自动测量盐度。这些基于电压的传感器的主要缺点是输出电压取决于温度,环境光和水的透明度。在本文中,提出了一种简单的海水盐度检测系统,并使用激光和超声波进行了演示。所提出系统的工作机制是基于最外面的圆形条纹半径变化,因此会改变折射率。同时使激光(650 nm)和超声波(9 MHz)穿过氯化钠(NaCl)溶液会在输出端产生圆形条纹。圆形条纹的半径随着溶解在水中的NaCl浓度的增加而减小,并因此增加折射率。该系统的有效性在各种氯化钠浓度下进行了测试。当NaCl溶液浓度从0%增加到9%(0 g / l-90 g / l)时,最外面的圆形条纹的半径从16.95 mm减小到16.45 mm,折射率从1.333增大到1.373。拟议的系统具有超过98%的精度和99%的线性度。

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