Suchergebnisse - Runge-Kutta numerical integration algorithm
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Explicit pseudo two-step exponential Runge–Kutta methods for the numerical integration of first-order differential equations
ISSN: 1017-1398, 1572-9265Veröffentlicht: New York Springer US 01.03.2021Veröffentlicht in Numerical algorithms (01.03.2021)“… This paper is devoted to the explicit pseudo two-step exponential Runge–Kutta (EPTSERK) methods for the numerical integration of first-order ordinary differential equations …”
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Parameter estimation and modeling of nonlinear dynamical systems based on Runge–Kutta physics-informed neural network
ISSN: 0924-090X, 1573-269XVeröffentlicht: Dordrecht Springer Netherlands 01.11.2023Veröffentlicht in Nonlinear dynamics (01.11.2023)“… estimation and modeling based on the combination of the physics-informed neural network (PINN) and Runge–Kutta algorithm. Drawing inspiration from classical numerical …”
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The generalization of diagonally implicit Runge–Kutta–Nyström method with controllable numerical dissipation for structural dynamics
ISSN: 0924-090X, 1573-269XVeröffentlicht: Dordrecht Springer Netherlands 01.01.2024Veröffentlicht in Nonlinear dynamics (01.01.2024)“… The significant advances and contributions are summarized as follows: (1) the identity between the composite time-integration algorithms and the diagonally implicit Runge …”
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Validated computation of the local truncation error of Runge-Kutta methods with automatic differentiation
ISSN: 1055-6788, 1029-4937Veröffentlicht: Abingdon Taylor & Francis 02.11.2018Veröffentlicht in Optimization methods & software (02.11.2018)“… In particular, this specialized algorithm is combined with set-membership framework to define validated numerical integration methods based on Runge-Kutta methods …”
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Derivation of three-derivative Runge-Kutta methods
ISSN: 1017-1398, 1572-9265Veröffentlicht: New York Springer US 01.01.2017Veröffentlicht in Numerical algorithms (01.01.2017)“… We introduce an algorithm for a numerical integration of ordinary differential equations in the form of y ′ = f ( y …”
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Nonlinear forced vibrations of supported pipe conveying fluid subjected to an axial base excitation
ISSN: 0022-460X, 1095-8568Veröffentlicht: Amsterdam Elsevier Ltd 14.04.2020Veröffentlicht in Journal of sound and vibration (14.04.2020)“… The resulting equations are then solved by a fourth-order Runge-Kutta integration algorithm. Numerical results indicate that the excitation amplitude and internal flow velocity have a combined effect on the dynamic responses of the pipe …”
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Numerically efficient modified Runge–Kutta solver for fatigue crack growth analysis
ISSN: 0013-7944, 1873-7315Veröffentlicht: Elsevier Ltd 01.08.2016Veröffentlicht in Engineering fracture mechanics (01.08.2016)“… We present a modified Runge–Kutta algorithm which yields a conservative estimate of the crack size for fatigue crack growth even for large integration step sizes …”
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Runge–Kutta–Nyström methods adapted to the numerical integration of perturbed oscillators
ISSN: 0010-4655, 1879-2944Veröffentlicht: Amsterdam Elsevier B.V 01.09.2002Veröffentlicht in Computer physics communications (01.09.2002)“… New Runge–Kutta–Nyström methods specially adapted to the numerical integration of perturbed oscillators are obtained …”
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Vibration and stability of an axially moving Rayleigh beam
ISSN: 0307-904XVeröffentlicht: Kidlington Elsevier Inc 01.06.2010Veröffentlicht in Applied mathematical modelling (01.06.2010)“… The vibration and stability of beams with these motions are investigated. For vibration analysis, direct time numerical integration, based on a Runge …”
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Maximum bound principle preserving integrating factor Runge–Kutta methods for semilinear parabolic equations
ISSN: 0021-9991, 1090-2716Veröffentlicht: Cambridge Elsevier Inc 15.08.2021Veröffentlicht in Journal of computational physics (15.08.2021)“… Investigation on numerical algorithms with preservation of the MBP has attracted increasingly attentions in recent years, especially for the temporal discretizations, since the violation of MBP …”
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Application of the Bezier integration technique with enhanced stability in forward dynamics of constrained multibody systems with Baumgarte stabilization method
ISSN: 0177-0667, 1435-5663Veröffentlicht: London Springer London 01.06.2024Veröffentlicht in Engineering with computers (01.06.2024)“… It is well known that constraints violation and instability are amongst the main computational difficulties of various numerical integration algorithms to provide accurate solutions for DAEs …”
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Gyrotactic microbes' movement in a magneto-nano-polymer induced by a stretchable cylindrical surface set in a DF porous medium subject to non-linear radiation and Arrhenius kinetics
ISSN: 0228-6203, 1925-7082Veröffentlicht: Calgary Taylor & Francis 04.03.2025Veröffentlicht in International journal of modelling & simulation (04.03.2025)“… Because of its numerous uses in biotechnology, bioengineering, biosensors, and bioinformatics, bioconvection involving microbes and nanoparticles has attracted …”
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Application of Runge–Kutta–Merson algorithm for creep damage analysis
ISSN: 0308-0161, 1879-3541Veröffentlicht: Oxford Elsevier Ltd 2000Veröffentlicht in The International journal of pressure vessels and piping (2000)“… A Runge–Kutta–Merson (RKM) numerical integration algorithm for creep damage analysis is presented in this paper …”
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Relaxation Runge–Kutta Methods for Hamiltonian Problems
ISSN: 0885-7474, 1573-7691Veröffentlicht: New York Springer US 01.07.2020Veröffentlicht in Journal of scientific computing (01.07.2020)“… The recently-introduced relaxation approach for Runge–Kutta methods can be used to enforce conservation of energy in the integration of Hamiltonian systems …”
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Dynamic modeling and analysis for transmission system of high-power wind turbine gearbox
ISSN: 1738-494X, 1976-3824Veröffentlicht: Seoul Korean Society of Mechanical Engineers 01.10.2015Veröffentlicht in Journal of mechanical science and technology (01.10.2015)“… Numerical integration applying the explicit 4/5th order Runge-Kutta algorithm was used to solve the proposed model and the dynamic responses of transmission system were investigated …”
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In situ hydrolysis of epoxidized oleic acid by catalytic epoxidation-peracids mechanism
ISSN: 1022-9760, 1572-8935Veröffentlicht: Dordrecht Springer Netherlands 01.03.2022Veröffentlicht in Journal of polymer research (01.03.2022)“… is simpler and high relative conversion to oxirane (85.7%). Then, a mathematical model was developed by using the numerical integration Runge Kutta 4 th Order method …”
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Relativistic resistive magneto-hydrodynamics code for high-energy heavy-ion collisions
ISSN: 1434-6052, 1434-6044, 1434-6052Veröffentlicht: Berlin/Heidelberg Springer Berlin Heidelberg 01.03.2023Veröffentlicht in The European physical journal. C, Particles and fields (01.03.2023)“… For the non-stiff part, we evaluate the numerical flux using HLL approximated Riemann solver and execute the time integration by the second-order of Runge–Kutta algorithm …”
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Novel Consistent Tangent Operator for Runge–Kutta‐Based Explicit Stress Integration for Elasto‐Plastic Models: Application to the Modified Cam Clay Model
ISSN: 0363-9061, 1096-9853Veröffentlicht: Bognor Regis Wiley Subscription Services, Inc 01.10.2025Veröffentlicht in International journal for numerical and analytical methods in geomechanics (01.10.2025)“… –Raphson algorithm used in solving the global problem. Therefore, when employing explicit stress integration, the typical convergence rate of the global problem is linear …”
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Dynamic analysis of a flexible rotor supported by ball bearings with damping rings based on FEM and lumped mass theory
ISSN: 2095-2899, 2227-5223Veröffentlicht: Changsha Central South University 01.12.2020Veröffentlicht in Journal of Central South University (01.12.2020)“… The governing equations were solved by precise integration and the Runge-Kutta hybrid numerical algorithm …”
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Numerical implementation of complex orthogonalization, parallel transport on Stiefel bundles, and analyticity
ISSN: 0167-2789, 1872-8022Veröffentlicht: Amsterdam Elsevier B.V 15.06.2010Veröffentlicht in Physica. D (15.06.2010)“… For the numerical integration, Gauss–Legendre Runge–Kutta algorithms are the principal choice for preserving orthogonality, and performance results are shown for a range of GLRK methods. The theory and methods are tested by application to example boundary value problems including the Orr–Sommerfeld equation in hydrodynamic stability …”
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