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Nodally integrated thermomechanical RKPM: Part I—Thermoelasticity
Michael Hillman
, Kuan Chung Lin
Civil and Environmental Engineering
Research output
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Contribution to journal
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Article
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peer-review
9
Scopus citations
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Dive into the research topics of 'Nodally integrated thermomechanical RKPM: Part I—Thermoelasticity'. Together they form a unique fingerprint.
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Keyphrases
Thermomechanical
100%
Reproducing Kernel Particle Method
100%
Order of Magnitude
50%
Function Approximation
50%
Benchmark Problems
50%
Consistency Condition
50%
Governing Equation
50%
Quadrature
50%
Two-field
50%
Nth Order
50%
Test Functions
50%
Finite Strain
50%
Thermoplasticity
50%
Variational Consistency
50%
Weak Form
50%
Hyperbolic Type
50%
Coupled Equations
50%
Stabilized Conforming Nodal Integration
50%
Nodal Integration
50%
Field Problem
50%
Explicit Time Integration
50%
Generalized Thermoelasticity
50%
Classical Thermoelasticity
50%
Engineering
Reproducing Kernel
100%
Benchmark Problem
50%
Consistency Condition
50%
Model Problem
50%
Finite Strain
50%
Coupled Equation
50%
Field Problem
50%