{"title":"应对几个领域的水转向的方法","authors":"M. Mahlil Nasution","doi":"10.31599/bpe.v1i3.1740","DOIUrl":null,"url":null,"abstract":"The problem of vertical movement of water infiltrates the productive layer. This is often referred to as Water Coning. This water coning problem can occur because the actual production rate exceeds the critical production rate (the production rate that is allowed by a well to be produced free of coning), so that excessive suction results in a flow pressure gradient exceeding the gravitational force resulting in a breakthrough of the productive layer by water. Symptoms of water coning can be seen from surface symptoms, namely a significant increase in water content. The study wells are suspected of having water coning, this can be seen from the graph of the increase in water content and time, so these wells are analyzed further. As a further stage of this research by analyzing how much coning has been formed and also analyzing the development of the coning. Then determine the handling system for the coning problem. The purpose of this study is to evaluate wells that are suspected of having water coning using research methods that have been reviewed in their critical rate analysis, to analyze the evaluation of wells experiencing water coning in order to determine the factors causing it and determine a system to overcome the water problem of the coning.\nReference:\nInikori, O, S,. (2002).Numerical Study Of Water Coning Control With DWS Well Completion In\nVertical And Horizontal Well\nPermadi, P.(1996) Fast Horizontal-Well Coning Evaluation Method. SPE 37032, P 613-622.\nPermadi, P. & Jayadi, T., (2010). An Improve Water Coning Calculation for Horizontal Wells. SPE 133162, P 1-12.\nRukmana, D., Kristanto, D., & Aji, V. D. C. (2011). Teknik Reservoir Teori dan Aplikasi.Yogyakarta: Pohon Cahaya.","PeriodicalId":192894,"journal":{"name":"JURNAL BHARA PETRO ENERGI","volume":"36 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2022-12-19","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Metode Penanggulangan Water Coning Dari Beberapa Lapangan\",\"authors\":\"M. Mahlil Nasution\",\"doi\":\"10.31599/bpe.v1i3.1740\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"The problem of vertical movement of water infiltrates the productive layer. This is often referred to as Water Coning. This water coning problem can occur because the actual production rate exceeds the critical production rate (the production rate that is allowed by a well to be produced free of coning), so that excessive suction results in a flow pressure gradient exceeding the gravitational force resulting in a breakthrough of the productive layer by water. Symptoms of water coning can be seen from surface symptoms, namely a significant increase in water content. The study wells are suspected of having water coning, this can be seen from the graph of the increase in water content and time, so these wells are analyzed further. As a further stage of this research by analyzing how much coning has been formed and also analyzing the development of the coning. Then determine the handling system for the coning problem. The purpose of this study is to evaluate wells that are suspected of having water coning using research methods that have been reviewed in their critical rate analysis, to analyze the evaluation of wells experiencing water coning in order to determine the factors causing it and determine a system to overcome the water problem of the coning.\\nReference:\\nInikori, O, S,. (2002).Numerical Study Of Water Coning Control With DWS Well Completion In\\nVertical And Horizontal Well\\nPermadi, P.(1996) Fast Horizontal-Well Coning Evaluation Method. SPE 37032, P 613-622.\\nPermadi, P. & Jayadi, T., (2010). An Improve Water Coning Calculation for Horizontal Wells. SPE 133162, P 1-12.\\nRukmana, D., Kristanto, D., & Aji, V. D. C. (2011). 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引用次数: 0
摘要
水的垂直运动问题渗透到生产层。这通常被称为水锥。由于实际生产速度超过了临界生产速度(井允许的无锥度生产速度),因此过度的吸力会导致流动压力梯度超过重力,从而导致水突破生产层,因此会出现水锥入问题。水锥的症状可以从表面症状看出,即含水量显著增加。研究井怀疑存在水锥现象,从含水率随时间的变化曲线可以看出,因此对这些井进行进一步分析。作为本研究的进一步阶段,分析了已经形成了多少锥度,并分析了锥度的发展。然后确定锥度问题的处理系统。本研究的目的是利用临界速率分析中回顾的研究方法,对怀疑有水锥入的井进行评价,分析发生水锥入的井的评价,以确定造成水锥入的因素,并确定克服水锥入问题的系统。参考文献:Inikori, O, S,。(2002)。permadi, P.(1996)水平井和直井DWS完井水锥控制数值研究。Spe 37032, p 613-622。Permadi, P. & Jayadi, T.,(2010)。一种改进的水平井水锥入计算方法。科学通报(英文版),第1-12页。Rukmana, D., Kristanto, D.和Aji, V. D.(2011)。Teknik Reservoir Teori dan applikasi。日惹:Pohon Cahaya。
Metode Penanggulangan Water Coning Dari Beberapa Lapangan
The problem of vertical movement of water infiltrates the productive layer. This is often referred to as Water Coning. This water coning problem can occur because the actual production rate exceeds the critical production rate (the production rate that is allowed by a well to be produced free of coning), so that excessive suction results in a flow pressure gradient exceeding the gravitational force resulting in a breakthrough of the productive layer by water. Symptoms of water coning can be seen from surface symptoms, namely a significant increase in water content. The study wells are suspected of having water coning, this can be seen from the graph of the increase in water content and time, so these wells are analyzed further. As a further stage of this research by analyzing how much coning has been formed and also analyzing the development of the coning. Then determine the handling system for the coning problem. The purpose of this study is to evaluate wells that are suspected of having water coning using research methods that have been reviewed in their critical rate analysis, to analyze the evaluation of wells experiencing water coning in order to determine the factors causing it and determine a system to overcome the water problem of the coning.
Reference:
Inikori, O, S,. (2002).Numerical Study Of Water Coning Control With DWS Well Completion In
Vertical And Horizontal Well
Permadi, P.(1996) Fast Horizontal-Well Coning Evaluation Method. SPE 37032, P 613-622.
Permadi, P. & Jayadi, T., (2010). An Improve Water Coning Calculation for Horizontal Wells. SPE 133162, P 1-12.
Rukmana, D., Kristanto, D., & Aji, V. D. C. (2011). Teknik Reservoir Teori dan Aplikasi.Yogyakarta: Pohon Cahaya.