...
首页> 外文期刊>Water Practice and Technology >Influence of wall atomizer to condensation rate in flashing purification
【24h】

Influence of wall atomizer to condensation rate in flashing purification

机译:壁式雾化器对闪蒸精制中冷凝速率的影响

获取原文
获取原文并翻译 | 示例
           

摘要

This paper presents an experimental study of wall atomizer usage in flashing purification. The water jet bursts out of the nozzle and hit the wall atomizer, splits into particles and evaporates until it finally condenses. The effectiveness of water particle evaporation influences the condensate volume. In this paper, improvements were more focused on how to generate water particles by applying a wall atomizer in a flashing chamber. The more water particles were created, the better the evaporation and condensation rate. Flashing purification experiments were conducted by following the factorial design method. From the first experiment design, an optimum condensate volume was obtained at a specified folding width of wall atomizer and feedwater pressure; meanwhile, vacuum pressure and feedwater temperature were kept constant. Three different folding widths of 5 mm, 8 mm and 12 mm were tested in this experiment. The second experiments were continued by varying feedwater temperature at an optimum atomizer folding width to obtain more condensate volume. Wall atomizer usage in flashing purification has been proved to increase condensation rate or condensate volume. The highest condensate volume of 150.2 ml was obtained from 8 mm atomizer folding width with a variable combination of 2.0 bar-g feedwater pressure, a vacuum pressure of -53 cmHg and feedwater temperature of 70 degrees C. This result was in line with the theory that states that the presence of a wall atomizer increases water particles. There was even an atomizer folding width that provided an optimum condensate volume. The use of an atomizer folding width of less and more than 8 mm produced lower condensate volume. At 5 mm atomizer folding width, condensate volumes were 24.6 ml and 22.0 ml, whereas 12 mm atomizer folding width produced 48.9 ml and 50.3 ml.
机译:本文提出了在闪蒸纯化中使用壁式雾化器的实验研究。水射流从喷嘴喷出并撞击壁式雾化器,分裂成颗粒并蒸发,直到最终凝结。水颗粒蒸发的效率会影响冷凝水量。在本文中,改进更多地集中在如何通过在闪蒸室中应用壁式雾化器来生成水颗粒。产生的水颗粒越多,蒸发和冷凝速度越好。按照析因设计方法进行闪蒸纯化实验。从第一个实验设计中,在壁式雾化器的指定折叠宽度和给水压力下可获得最佳冷凝液体积;同时,真空压力和给水温度保持恒定。在该实验中测试了5mm,8mm和12mm的三种不同的折叠宽度。通过以最佳雾化器折叠宽度改变给水温度,以获取更多的冷凝液体积,继续进行第二个实验。已证明在闪蒸纯化中使用壁式雾化器可提高冷凝速率或冷凝液体积。从8毫米雾化器折叠宽度获得可变的2.0 bar-g给水压力,-53 cmHg真空压力和70摄氏度给水温度的最高冷凝液体积为150.2 ml。该结果与理论相符指出壁式雾化器的存在会增加水颗粒。甚至还有雾化器的折叠宽度,可提供最佳的冷凝液体积。雾化器折叠宽度小于或大于8 mm的使用可产生较低的冷凝液体积。在5毫米雾化器折叠宽度下,冷凝液体积分别为24.6 ml和22.0 ml,而12毫米雾化器折叠宽度产生48.9 ml和50.3 ml。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号