Improved Design and Research of a New Type of Bubble Separation Device

Kaitian Zhang, Jing Liang, Hui Xue, Kang Liu, Mengnan Yao, Qiyue Guo
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Abstract

With the improvement of living standards, the development of human industry has brought a lot of problems to the environment, especially soil and water pollution. Therefore, rapid detection of harmful substances is of great significance. At present, flow injection method is commonly used in the world, which can be used for rapid and accurate detection of water quality. One of the more important links is the separation of gas and liquid. Based on the existing gas-liquid separation devices on the market, this paper optimizes the design of a high-efficiency gas-liquid separation device for flow injection, which can quickly peel the gas from the liquid in the detection process. Through the analysis of the gas-liquid flow path, the separation mode and mechanism are studied, and the simulation of the gas-liquid separator and the real experiment test have achieved the ideal effect, thus verifying the feasibility of its optimal design. This paper describes the gas-liquid separation device including mechanical design, flow path analysis, simulation and experimental verification.
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新型气泡分离装置的改进设计与研究
随着生活水平的提高,人类工业的发展给环境带来了很多问题,尤其是土壤和水污染。因此,快速检测有害物质具有重要意义。目前国际上常用的是流动注射法,可用于快速、准确的水质检测。其中一个比较重要的环节是气液分离。本文在市场上现有气液分离装置的基础上,优化设计了一种高效的流动注射气液分离装置,可以在检测过程中快速将气体从液体中剥离出来。通过对气液流路的分析,对其分离方式和机理进行了研究,并对气液分离器进行了仿真和实际实验测试,取得了理想的效果,从而验证了其优化设计的可行性。本文介绍了气液分离装置的机械设计、流路分析、仿真和实验验证。
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