Expert-Based-Computer Aided Design and Component Selection for Dust Collection Systems

Ibrahim Medany, M. Shazly, Mahmoud G. El-Sherbiny
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Abstract

Environmental regulations regarding industrial pollution are getting tougher to keep high air quality. The design of proper system to meet specific requirements relays on selection of different filtration components. Components are available in a wide range of designs to meet various requirements of air filtration level, quantity, and characteristics of the contaminants to be removed. An expert system package for the selection of dust collectors' components is developed. The developed package utilizes database as well as knowledge base to aid the selection process based on practice and past experience. Industrial case studies are demonstrated to test the developed package and compare its results against the current systems design. The developed package in one case study estimated a minimum air flow rate of 60000 m 3 /hr, which is 30% higher than the existing value and a static pressure drop due to ducts of about 1900 Pa which is 30 % lower than the current value leading to improved air quality. In another case study the package results indicated the need to minimize the value of air flow to be 2300 m 3 /hr, which is 50% lower than the current value and increase the external static pressure to 1700 Pa which is 70% higher than the existing design value leading to better filtration efficiency.
基于专家的集尘系统计算机辅助设计与部件选择
有关工业污染的环境法规越来越严格,以保持高空气质量。设计合适的系统以满足特定的要求取决于选择不同的过滤元件。组件有多种设计可供选择,以满足空气过滤水平,数量和要去除的污染物特性的各种要求。开发了集尘器部件选型专家系统包。开发的软件包利用数据库和知识库来帮助基于实践和过去经验的选择过程。工业案例研究演示,以测试开发的软件包,并将其结果与当前的系统设计进行比较。在一个案例研究中,开发的套件估计最小空气流量为60000立方米/小时,比现有值高30%,并且由于管道的静态压降约为1900帕,比当前值低30%,从而改善了空气质量。在另一个案例研究中,封装结果表明,需要将空气流量最小化到2300立方米/小时,这比当前值低50%,并将外部静压增加到1700帕,比现有设计值高70%,从而提高过滤效率。
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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