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An Upwind Nodal Integral Method for Incompressible Fluid Flow
Nuclear Science and Engineering, 1993An upwind nodal solution method is developed for the steady, two-dimensional flow of an incompressible fluid. The formulation is based on the nodal integral method, which uses transverse integrations, analytical solutions of the one-dimensional averaged equations, and node-averaged uniqueness constraints to derive the discretized nodal equations.
Peter D. Esser, Robert J. Witt
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Studies on Nodal Integral Methods for the Convection-Diffusion Equation
Nuclear Science and Engineering, 2001The computational efficiencies of two nodal integral methods for the numerical solution of linear convection-diffusion equations are studied. Although the first, which leads to a second-order spatial truncation error, has been reported earlier, it is reviewed in order to lead logically to the development here of the second, which has a third-order ...
E. P. E. Michael +2 more
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Grid-driven tool for renewables integration based on nodal capacity allocation
2017 International Conference on Engineering, Technology and Innovation (ICE/ITMC), 2017Over the last years, most countries in the world are facing a growing integration of renewable energy sources in their power networks due to the continuous effort on decreasing their carbon footprint. This increasing penetration of renewable energy sources led to the emergence and consequent grow of distributed generation units. From a network planning
Nuno Amaro, F. S. Reis
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Integrating the Management of Nodal Metastasis Into the Treatment of Nonmelanoma Skin Cancer
Seminars in Radiation Oncology, 2019The two types of nonmelanoma skin cancer most apt to metastasize to lymph nodes are cutaneous squamous cell carcinoma and Merkel cell carcinoma. The clinical impact of nodal metastases of these cancers is substantial, resulting in intensification of treatment and morbidity and worsened cancer outcomes.
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A Modified Preconditioning Approach for Nodal Integral Method
World Congress on Mechanical, Chemical, and Material Engineering, 2022Nadeem Ahmed +3 more
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2017
For a truly meshfree technique, Galerkin meshfree methods rely chiefly on nodal integration of the weak form. In the case of Strong Form Collocation meshfree methods, direct collocation at the nodes can be employed. In this paper, performance of these node-based Galerkin and collocation meshfree methods is compared in terms of accuracy, efficiency, and
M. Hillman, J. S. Chen
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For a truly meshfree technique, Galerkin meshfree methods rely chiefly on nodal integration of the weak form. In the case of Strong Form Collocation meshfree methods, direct collocation at the nodes can be employed. In this paper, performance of these node-based Galerkin and collocation meshfree methods is compared in terms of accuracy, efficiency, and
M. Hillman, J. S. Chen
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A Nodal Integral Scheme for Acoustic Wavefield Simulation
Pure and Applied Geophysics, 2022Niteen Kumar +2 more
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Nodal Expansions. III. Exact Integral Equations for Particle Correlation Functions
Journal of Mathematical Physics, 1960The density expansions of the pair distribution function and potential of average force are analyzed topologically in terms of cutting points and bifocal points. The analysis leads to conversion of the expansions into series with cluster integrals involving products of the total correlation functions, h(r) = g(r) − 1, at finite density, rather than the
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An implicit nodal integration based PFEM for soil flow problems
Computers and Geotechnics, 2022Xue Zhang +2 more
exaly
CINNAMON: Coupled Integration and Nodal Analysis of MOS Networks
23rd ACM/IEEE Design Automation Conference, 1986Luís M. Vidigal +2 more
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