Publication | Open Access
Dissipative particle dynamics with energy conservation
202
Citations
11
References
1997
Year
Total EnergyEngineeringHeat FlowParticle MethodPassive Energy DissipationConservation LawStochastic ProcessesTransport PhenomenaThermodynamicsPhysicsStochastic Dynamical SystemBrownian MotionStochastic Differential EquationStochastic ModelingNatural SciencesStochastic CalculusInteracting Particle SystemTotal Momentum ConservationDissipative Particle Dynamics
The stochastic differential equations for a model of dissipative particle dynamics with both total energy and total momentum conservation in the particle-particle interactions are presented. The corresponding Fokker-Planck equation for the evolution of the probability distribution for the system is deduced together with the corresponding fluctuation-dissipation theorems ensuring that the ab initio chosen equilibrium probability distribution for the relevant variables is a stationary solution. When energy conservation is included, the system can sustain temperature gradients and heat flow can be modeled.
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