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In this paper, a numerical model incorporating time-varying mass will be presented to explain the dynamics of Iron Ore TLO Bin.
A numerical model incorporating aqueous phase transport in a variable-aperture fracture and its surrounding matrix is developed and coupled with an existing two-phase flow model.
In this work the transport, mixing and turbulence characteristics of intermittent discharge of buoyant fluid in ambient flow are simulated by a 3D numerical model incorporating a buoyancy extended k ε model for turbulence.
The first issue is investigated by carrying out a sensitivity analysis for lateral flow in the numerical model, incorporating a realistic representation of the distribution of sand and shale strata in the study area.
The complex cracking phenomenon of the resulting RC-UHPFRC composite system is carried out by a numerical model incorporating the real nonlinear materials laws, in order to predict accurately the mechanical behaviour.
A numerical model, incorporating the population balance equation and the method of moments has been developed to describe the seeding process for a typical cooling crystallisation process, accounting for the primary and secondary nucleation and subsequent crystal growth.
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The numerical model incorporates new material constitutive relationships of sandwiched concrete in circular DCFST columns.
The numerical model incorporates simulation of rotor motion, iron magnetic nonlinearity and eddy currents in the solid rotors of turbine generators.
In addition, numerical models incorporating a Q3/Q3s prototype child crash test dummies were developed.
They include investigations of fault rocks in accretionary prisms, laboratory experiments using subduction zone materials, numerical modeling incorporating the results of fault rock studies and laboratory measurements, geophysical surveys in subduction zones, and sampling and monitoring of active fault zones by deep-ocean drilling.
The numerical models incorporated the non-linear stress-strain behaviour of CFS material and enhanced properties of cold-worked corner regions obtained from coupon tests.
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