Dry Lab – Laboratorium Virtual Untuk Anlisa Rekayasa Lumpur Pemboran

M. Mahlil Nasution, Edy Soesanto
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Abstract

Abstract Dry Lab is a virtual laboratory design. We called also as a laboratory of the future. Dry Lab was designed because of the increasingly advanced computerized especially Artificial Intelligence for making a simulator that can function to simulate a tool wich is can similiar with the real condition so that it gets the same results as when run in a conventional laboratory. With the existence of this Simulator technology, then I try to make a virtual simulator for drilling mud analysis which is very much needed in the world of oil engineering education especially and also needed in the world of oil and gas industry, especially when conducting drilling activities. Keywords: Dry Lab, Artificial Intelligence, virtual simulator, drilling mud. Abstrak Dry Lab adalah suatu rancangan virtual laboratorium. Dapat juga dikatakan sebagai Laboratorium masa depan. Dry Lab dirancang karena semakin majunya ilmu komputerisasi Artificial intelligence dalam membuat suatu simulator yang dapat berfungsi mensimulasikan suatu alat sesuai dengan cara kerja aslinya sehingga mendapatkan hasil yang sama seperti saat dijalankan di Laboratorium konvensional.Dengan adanya teknologi Simulator ini, maka saya mencoba membuat suatu simulator virtual untuk analisa lumpur pemboran yang sangat dibutuhkan dalam dunia pendidikan Teknik perminyakan khususnya dan juga dibutuhkan di dalam dunia industri Migas terutama saat melakukan kegiatan pemboran. Kata kunci: Dry Lab, Artificial intelligence, simulator virtual, lumpur pemboran. Reference: Agusman, A. R., Rasyid, A., & Lesmana, D. L. (2022). Evaluasi Water Shut Off Dan Membuka Lapisan Baru Sumur Bagong Di Lapangan Lesma. JURNAL BHARA PETRO ENERGI, 38-43. Aly Rasyid, A. R. (2021). Seleksi Material Untuk Casing Sumur Migas & Geothermal–Buku Referensi. Composition and Properties of Drilling and Completion Fluids: Seventh Edition, Caenn, RyenDarley, H. C.H. and Gray, George R. (2016) Composion And Properties Of Drilling And Complition Fluids,  H.C.H Darley and George R. Gray J.T. Patton (New Mexico State U.) P.F. Phelan (Los Alamos Natl Laboratory), Well Damage Hazards Associated With Conventional Completion Fluids Khodja, M., Khodja-Saber, M., Canselier, J. P., Cohaut, N. and Bergaya, F. (2010) ‘Drilling fluid technology: performances and environmental considerations’, Product and Services, From R&D to final solutions, pp. 227-232. Available at: http://cdn.intechopen.com/pdfs-wm/12330.pdf Nasution, M. M., Rasyid, A., & Pahrudin, G. (2022). Desain Formulasi Lumpur Untuk Pemboran Panas Bumi Di Sumur GG-01. JURNAL BHARA PETRO ENERGI, 11-18. Rasyid, A., Mardiana, R. Y., Budiono, K., & Noviasta, B. (2021, December). Drilling optimization in geothermal exploration wells using enhanced design of conical diamond element bit. In Asia Pacific Unconventional Resources Technology Conference, Virtual, 16–18 November 2021 (pp. 1795-1808). Unconventional Resources Technology Conference (URTeC). Rasyid, A., Soesanto, E., & Nababan, E. N. (2022). Evaluasi dan Optimasi Desain Casing Sumur Pemboran dengan Metode Maximum Load di Sumur ENN-1 di Lapangan Batuwangi. JURNAL BHARA PETRO ENERGI, 1-10. Rasyid, A. (2019). Pemanfaatan Wellbore Strengthening Agent Selama Pengeboran di Onshore Sumatera Bagian Utara Indonesia. Jurnal Jaring SainTek, 1(2). Rudi Rubiandini R.S, Buku Teknik Pemboran Volume 1, Bandung, 2015 Virtual and Physical Experimentation in Inquiry-Based Science Labs: Attitudes, Performance  and Access.Journal of Science Education and TechnologyPyatt, Kevin.,Sims, Rod, 2012 Virtual laboratories in engineering education: the simulation lab and remote labComputer Applications in Engineering Education.Balamuralithara, B. Woods, P. C. 2009 Agusman, A. R., Rasyid, A., & Lesmana, D. L. (2022). Evaluasi Water Shut Off Dan Membuka Lapisan Baru Sumur Bagong Di Lapangan Lesma. JURNAL BHARA PETRO ENERGI, 38-43.    
干实验室——Anlisa工程泥浆钻井的虚拟实验室
摘要干燥实验室是一种虚拟实验室设计。我们也称之为未来的实验室。干燥实验室是在计算机化特别是人工智能日益发达的背景下设计的,目的是制造一种能够模拟工具的模拟器,使其能够与实际情况相似,从而获得与传统实验室运行时相同的结果。利用这种模拟器技术的存在,我尝试制作一个用于钻井泥浆分析的虚拟模拟器,这在石油工程教育领域是非常需要的,在石油和天然气工业领域也是非常需要的,特别是在进行钻井活动时。关键词:干燥实验室,人工智能,虚拟模拟器,钻井泥浆【摘要】虚拟实验室:adalah suatu ranancan。Dapat juga dikatakan sebagai Laboratorium masa depan。干实验室dirancang karena semakin majunya ilmu komputerisi人工智能dalam成员,suatu模拟器,yang dapat berfunsi, mensimulasikan suatu alat sesuan, cara kerja, aslinya seingga, mendapatkan hasil, sama seperti saat dijalankan实验室。Dengan adanya技术模拟器ini, maka saya mencoba成员suatu模拟器虚拟untuk分析吉隆坡pemboran yang sangat dibutuhkan dalam dunidididikan Teknik perminyakan khususnya dan juga dibutuhkan di dalam duniindustri Migas terutama saat melakukan kegiatan pemboran。Kata kunci:干燥实验室,人工智能,模拟器虚拟,吉隆坡pemboran。参考文献:Agusman, A. R, Rasyid, A., & Lesmana, D. L.(2022)。评估供水关闭Dan Membuka Lapisan Baru Sumur Bagong Di Lapangan Lesma。石油能源学报,38-43。Aly Rasyid, A. R.(2021)。Seleksi材料Untuk套管Sumur Migas &地热- buku参考资料。钻进和完井液的组成和性质:第七版,Caenn, RyenDarley, h.c.h.和Gray, George R.(2016)钻进和完井液的组成和性质,h.c.h. Darley和George R. GrayJ.T。巴顿(新墨西哥州立大学)P.F. Phelan (Los Alamos国家实验室),与常规完井液相关的井损危害skhodja, M., Khodja-Saber, M., Canselier, J. P., Cohaut, N.和Bergaya, F.(2010),“钻井液技术:性能和环境考虑”,产品与服务,从研发到最终解决方案,第227-232页。可在:http://cdn.intechopen.com/pdfs-wm/12330.pdfNasution, m.m., Rasyid, A, & Pahrudin, G.(2022)。Desain Formulasi Lumpur Untuk Pemboran Panas Bumi Di Sumur GG-01石油能源学报,11-18。Rasyid, A., Mardiana, R. Y., Budiono, K., & Noviasta, B.(2021, 12月)。锥形金刚石钻头改进设计在地热探井钻井中的应用。亚太非常规资源技术会议,虚拟,2021年11月16-18日(pp. 1795-1808)。非常规资源技术会议(URTeC)Rasyid, A., Soesanto, E., & Nababan, E. N.(2022)。评估和优化设计套管Sumur Pemboran dengan方法Sumur ENN-1最大载荷di Lapangan Batuwangi。石油能源学报,1-10。拉席德,A.(2019)。Pemanfaatan井筒强化剂Selama Pengeboran di陆上苏门答腊巴吉安Utara。学报,1(2)。Rudi Rubiandini R.S, Buku Teknik Pemboran卷1,万隆,2015 .基于探究的科学实验室的虚拟和物理实验:态度,性能和访问。《科学教育与技术杂志》,凯文。李志强,刘志强,2012 .虚拟实验室在工程教育中的应用:模拟实验室和远程实验室。Balamuralithara, B. Woods, P. C. 2009Agusman, A. R., Rasyid, A., and Lesmana, D. L.(2022)。评估供水关闭Dan Membuka Lapisan Baru Sumur Bagong Di Lapangan Lesma。石油能源学报,38-43。
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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