Computational Fluid Dynamic Analysis in Spray Dryer Design By Distillation System Of Sea Water To Salt

None Ibnu Irawan, None Rifky Yusron
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Abstract

Spray Dryer is the most widely used industrial process for drying. Continuous production can be carried out in powder or powder form from liquid raw materials. The feed to some desiccant may be a liquid in which the solid will float as light particles, or it may be in the form of a solution. Some drying products are resistant to rough handling and very hot environments, but some require careful handling at low or moderate temperatures. Computational Fluid Dynamics (CFD) in a spray dryer system design uses an atomization system to convert seawater into salt. The process of analyzing several needs, regarding the function of time from worker efficiency and the results of processing seawater into salt is the focus of researchers. The results of this research process are CFD analysis on spray dryer system design, analysis of mass flow rate and heat of drying air. The results from the analysis using CFD can be concluded, namely the spray dryer design specifications are __ = 1500 mm __ = 200 mm, diameter = 1100 mm. While the temperature of the hot air entering is 130oC and the pressure to the nozzle is 12.849 psi. The Spray Dryer as a result of the design planning is capable of producing 0.36 kg salt/hour with a seawater requirement of 10.25 kg. The results of the simulation of the inflow of hot air fluid and seawater spray on the nozzle, show the level of homogeneity of the mixture, this can cause seawater particles to separate, one of which is NaCl or salt. System efficiency is at 80% based on the mass of seawater processed to become salt.
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海水蒸馏制盐喷雾干燥机设计中的计算流体动力学分析
喷雾干燥机是应用最广泛的工业干燥工艺。可由液体原料以粉状或粉状形式进行连续生产。某些干燥剂的进料可能是液体,其中固体将以轻颗粒的形式漂浮,或者可能以溶液的形式存在。一些干燥产品可以抵抗粗糙的处理和非常热的环境,但有些需要在低温或中等温度下小心处理。计算流体力学(CFD)在喷雾干燥系统设计中使用了一个雾化系统将海水转化为盐。从工人的工作效率和将海水加工成盐的结果分析时间的作用的几个需求的过程是研究人员关注的焦点。研究过程的结果是喷雾干燥机系统设计的CFD分析,干燥空气的质量流量和热量分析。利用CFD分析得出结论,即喷雾干燥机的设计规格为__ = 1500mm __ = 200mm,直径= 1100mm。而进入的热空气温度为130℃,喷嘴的压力为12.849 psi。根据设计规划,喷雾干燥机能够生产0.36千克盐/小时,海水需求量为10.25千克。模拟了热空气流体流入和海水在喷嘴上喷射的结果,显示了混合物的均匀性,这可以导致海水颗粒分离,其中一种是NaCl或盐。根据处理成盐的海水质量,系统效率为80%。
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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