A New Method for Solving Three Moment Equation in Well Trajectory Control
Considering the assembly as a multi-span, continuous beam-column, a system of “three moment equations” can be derived to compute side force components as well as all reactive forces, deflection, bending moment, and slope. Solving high-order nonlinear equations involves programming and debugging, whi...
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| Vydané v: | Chemistry and technology of fuels and oils Ročník 60; číslo 4; s. 1011 - 1020 |
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01.09.2024
Springer Springer Nature B.V |
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| Abstract | Considering the assembly as a multi-span, continuous beam-column, a system of “three moment equations” can be derived to compute side force components as well as all reactive forces, deflection, bending moment, and slope. Solving high-order nonlinear equations involves programming and debugging, which can be time-consuming. Moreover, many methods for solving such equations may not necessarily yield correct results. However, the Python open-source library “sympy” simplifies this process by eliminating the need for complex programming and debugging. It only requires the necessary equation information to quickly solve the high-order nonlinear equations. Additionally, C# provides the capability to rapidly create graphical user interfaces, enhancing the solution’s usability. By utilizing Python.NET to call Python code, it reduces the programming workload and effectively addresses the problem of solving a system of three moment equations. |
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| AbstractList | Considering the assembly as a multi-span, continuous beam-column, a system of “three moment equations” can be derived to compute side force components as well as all reactive forces, deflection, bending moment, and slope. Solving high-order nonlinear equations involves programming and debugging, which can be time-consuming. Moreover, many methods for solving such equations may not necessarily yield correct results. However, the Python open-source library “sympy” simplifies this process by eliminating the need for complex programming and debugging. It only requires the necessary equation information to quickly solve the high-order nonlinear equations. Additionally, C# provides the capability to rapidly create graphical user interfaces, enhancing the solution’s usability. By utilizing Python.NET to call Python code, it reduces the programming workload and effectively addresses the problem of solving a system of three moment equations. |
| Audience | Academic |
| Author | Xi, Jiangjun Li, ZhuangWei Wang, Yufeng Li, Wenlong Jin, Nan Tao, Lin |
| Author_xml | – sequence: 1 givenname: Jiangjun surname: Xi fullname: Xi, Jiangjun organization: CNOOC China Limited – sequence: 2 givenname: ZhuangWei surname: Li fullname: Li, ZhuangWei organization: CNOOC China Limited – sequence: 3 givenname: Lin surname: Tao fullname: Tao, Lin organization: CNOOC China Limited – sequence: 4 givenname: Wenlong surname: Li fullname: Li, Wenlong organization: CNOOC China Limited – sequence: 5 givenname: Nan surname: Jin fullname: Jin, Nan organization: CNOOC China Limited – sequence: 6 givenname: Yufeng surname: Wang fullname: Wang, Yufeng email: beijingwyf@126.com organization: China University of Petroleum |
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| References_xml | – reference: Kakuaki. Introduction to Python Scientific Computing. China water & power press, BeiJing, 2021, 87-114. – reference: DeLiGA mechanical model for prediction and control of the wellbore trajectoryActa Petrolei Sinica1996171115121 – reference: Ho, H.-S. General Formulation of Drillstring Under Large Deformation and Its Use in BHA Analysis. SPE Annual Technical Conference and Exhibition, 1986. – reference: WilliamsonJSLubinskiAPredicting Bottomhole Assembly PerformanceSPE Drilling Engineering1987201374610.2118/14764-PA – reference: QingYang L., NengChao W., DaYi Y. Numerical Analysis (4th Edition). tsinghua university press, BeiJing, 2001, 265-272. – reference: PangDLiuQMengQSolving method for nonlinear contact problem of drill strings in 3D curved boreholeActa Petrolei Sinica2009301121124 – reference: Jiazhi B. Bottom Hole Assembly Problems Solved by Beam-Column Theory, International Petroleum Exhibition and Technical Symposium, 1982. – reference: MillheimKJordanSRitterCJBottom-Hole Assembly Analysis Using the Finite-Element MethodJournal of Petroleum Technology1978300226527410.2118/6057-PA – reference: YiNaoSJiaZhiBThree- dimensional analysis of down hole motor with bent sub using beam-column theoryEditorial office of Acta Petrolei Sinica1991123110120 – reference: DeLiGWell path control1994DongYingPetroleum University Press86101 – reference: Rafie S., Ho H.-S., Chandra U. Application of a BHA Analysis Program in Directional Drilling. IADC/SPE Drilling Conference, 1986. – reference: YingMinLQiangKangCApplication of finite element method in drill string mechanicsJournal of petroleum university: natural science edition199317A008 – reference: Amara M.H. Use of Drillstring Models and Data Bases for the Scientific Control of Vertical and Directional Hole Paths. SPE/IADC Drilling Conference, 1985. – reference: XunYaoYOptimum Design Of A Packed Bottom Hole AssemblyEditorial office of Acta Petrolei Sinica19823S17380 – reference: Xisheng L., Deli G., Xiaobing C. Weighted Residuals Method For Three-Dimension Static Analysis Of Bottom Hole Assembly. Journal of China University of Petroleum, 1988. – reference: JiaZhiBYiNaoSDeviation control in directional drilling1990BeiJingPetroleum industry press8694 – volume: 12 start-page: 110 issue: 3 year: 1991 ident: 1763_CR16 publication-title: Editorial office of Acta Petrolei Sinica – ident: 1763_CR11 doi: 10.2118/13495-MS – volume: 3 start-page: 73 issue: S1 year: 1982 ident: 1763_CR4 publication-title: Editorial office of Acta Petrolei Sinica – start-page: 86 volume-title: Well path control year: 1994 ident: 1763_CR3 – volume: 17 start-page: 8 issue: A00 year: 1993 ident: 1763_CR9 publication-title: Journal of petroleum university: natural science edition – ident: 1763_CR10 doi: 10.2118/14765-MS – ident: 1763_CR1 doi: 10.2118/15562-MS – volume: 17 start-page: 115 issue: 1 year: 1996 ident: 1763_CR2 publication-title: Acta Petrolei Sinica – start-page: 86 volume-title: Deviation control in directional drilling year: 1990 ident: 1763_CR15 – volume: 2 start-page: 37 issue: 01 year: 1987 ident: 1763_CR6 publication-title: SPE Drilling Engineering doi: 10.2118/14764-PA – volume: 30 start-page: 265 issue: 02 year: 1978 ident: 1763_CR7 publication-title: Journal of Petroleum Technology doi: 10.2118/6057-PA – ident: 1763_CR5 doi: 10.2118/10561-MS – ident: 1763_CR14 – ident: 1763_CR13 – ident: 1763_CR12 – volume: 30 start-page: 121 issue: 1 year: 2009 ident: 1763_CR8 publication-title: Acta Petrolei Sinica |
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| Snippet | Considering the assembly as a multi-span, continuous beam-column, a system of “three moment equations” can be derived to compute side force components as well... Considering the assembly as a multi-span, continuous beam-column, a system of "three moment equations" can be derived to compute side force components as well... |
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| SubjectTerms | Beam-columns Bending moments Chemistry Chemistry and Materials Science computer software Continuous beams Debugging equations forces fuel oils Geotechnical Engineering & Applied Earth Sciences Graphical user interface Industrial Chemistry/Chemical Engineering Innovative Technologies of Oil and Gas Interfaces Libraries Mineral Resources Nonlinear equations problem solving Programming Python solutions Trajectory control user interface Variables |
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