Optimasi Kinerja Wellstream Cooler Sebagai Sistem Pendinginan Gas Alam dari Sumuran terhadap Pengaruh Laju Alir dan Perbedaan Suhu Lingkungan di Platform PHE NSO Offshore

IF 0.6 Q3 ENGINEERING, MULTIDISCIPLINARY Jurnal Teknologi-Sciences & Engineering Pub Date : 2023-04-20 DOI:10.30811/teknologi.v23i1.3602
Teuku Tarich Akbar, Reza Fauzan, A. Putra
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Abstract

This gas source that comes from the bowels of the earth contains many impurities and heavy hydrocarbons, both of which must be separated or even eliminated. To purify the treated gas to prevent damage to process equipment or pipe clogging. The removal process includes H 2 S removal, CO 2 removal, oily water removal, mercury removal, and water content removal in natural gas. This study aims to determine the effect of flow rate and ambient temperature differences on the performance of the wellstream cooler and the level of efficiency of the heat transfer process in the wellstream cooler. Observations will be focused on the offshore platform wellstream cooler cooling system at PT. PHE NSO. Based on observational data, the results obtained using the Hysys method by entering the required data completely, Hysys will automatically perform calculations according to what is required and the calculation results will be plotted in graphical form. Heat transfer efficiency based on Hysys application calculations all show results of 99%. Thus it can be seen the effect of changes in flow rate and ambient temperature on the heat transfer process. The greater the flow rate, the greater the heat transfer that occurs and the higher the ambient temperature, the smaller the heat transfer occurs, so that the lower the ambient temperature, the more effective the heat transfer occurs.
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PHE NSO海洋平台上针对流体进料器和环境温差优化井流冷却器作为天然气源冷却系统
这种来自地球内部的气源含有许多杂质和重碳氢化合物,这两者都必须分离甚至消除。净化处理过的气体,防止损坏工艺设备或管道堵塞。除气过程包括h2s的去除、CO 2的去除、含油水的去除、汞的去除和天然气中水分的去除。本研究旨在确定流量和环境温差对井流冷却器性能的影响以及井流冷却器传热过程的效率水平。观测将集中在PT. PHE NSO的海上平台井流冷却器冷却系统上。在观测数据的基础上,使用Hysys方法得到的结果,输入所需的数据完整,Hysys将自动根据需要进行计算,并将计算结果绘制成图形。基于Hysys应用计算的传热效率均达到99%。由此可以看出流量和环境温度的变化对传热过程的影响。流量越大,发生的换热就越大,环境温度越高,发生的换热就越小,所以环境温度越低,发生的换热就越有效。
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来源期刊
Jurnal Teknologi-Sciences & Engineering
Jurnal Teknologi-Sciences & Engineering ENGINEERING, MULTIDISCIPLINARY-
CiteScore
1.30
自引率
0.00%
发文量
96
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