用2-丁醇热流体和冷流体蒸汽对MEK生产的壳管式换热器进行数学设计

Vizny Grace Irene Damanik, A. Nandiyanto, Teguh Kurniawan
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摘要

摘要:目的:本研究旨在分析和开发设计一种用于生产甲乙酮(MEK)的换热器(HE),并将其编制为壳管式换热器设计的计算程序。方法:这个HE的问题是2-丁醇的温度是30?C从储罐中取出。而HE反应堆要求的温度为99.6?C, HE在将温度从30?摄氏度到99.6摄氏度。为了提高能源效率,研究人员使用了产品的热量,MEK。也就是生成物和反应物交换热量的地方。以2-丁醇为热流体,以水为冷流体的壳管式两道换热器的设计。压降外壳尺寸HE规格为4.9959E-06 psia,压降管尺寸HE规格为2.65500 e -04 psia。有效值为14%。结果:壳管HE不符合TEMA的要求和标准。虽然壳管式HE不符合工业应用中规定的标准和标准,但该分析可作为HE设计过程、heme性能分析和运行机制的学习工具。局限性:本研究的重点是开发用于生产MEK的HE设计。贡献:本研究可为工业发展中的高等教育设计提供参考。关键词:1。甲基乙基酮热交换器壳管教育5。有效性
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Design Heat Exchanger Type Shell-Tube Mathematically With 2-Butanol Hot Fluid and Cold Fluid Steam for the Production of MEK
Abstract: Purpose: This study aims to analyse and develop design a heat exchanger (HE) for the production of Methyl Ethyl Ketone (MEK) which will be compiled into a computational program for the design of shell-tube type HE. Methodology: The problem with this HE is that the temperature of 2-butanol is 30?C from the storage tank. While the HE reactor requires a temperature of 99.6?C, HE plays a role in increasing the temperature from 30?C to 99.6?C. To be more energy efficient, researchers used heat of the product, MEK. Which is where to exchange heat from the product to the reactants. The design of a shell-tube two-pass exchanger with a working fluid in the form of 2-butanol as a hot fluid with water as a cold fluid. The HE specification on the shell size for the pressure drop is 4.9959E-06 psia, while the tube size for the pressure drop is 2.6550E-04 psia. The effective value of 14%. Results: Thus, HE with shell and tube doesn’t meet the requirements and standards of TEMA. Although the shell and tube type of HE doesn’t conform to the criteria and standards specified in industrial applications, the analysis can be used as a learning tool for the design process, heme performance analysis, and operating mechanism of the HE. Limitations: This research is focused on developing HE designs for the production of MEK. Contribution: This research can provide a reference for designing HE in industrial development. Keywords: 1. Methyl Ethyl Ketone 2. Heat Exchanger 3. Shell and Tube 4. Education 5. Effectiveness
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