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A novel finite strain poro-viscoplastic phenomenological model for cold compacted materials is proposed.
The simulation results show the reliability and validity of the developed model for cold start-up operation.
A transient multiphase model for cold start process is developed considering micro-porous layer (MPL), super-cooled water freezing mechanism and ice formation in cathode channel.
Finally, a finite element model for cold recycled mix was established with the aim to theoretically evaluate the effect of the aged asphalt in the RAP.
Advancements for future computational methods are derived from this study, in order to build a comprehensive and coherent numerical model for cold spray applications.
This paper presents the design and description of a single chambered experimental model for cold generation based on pressure swing adsorption mechanism with an objective to propose a feasible refrigeration system to replace halogenated refrigerants.
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Figure 4 Model for cold-coated NAA samples and comparison of the measured and the best least-squares fitting simulated reflectance spectra.
In this paper, a PEM fuel cell model for cold-start simulations has been employed for numerical investigations of the cell startup characteristics from subfreezing temperatures.
Prabha et al. (2010] have proposed two analytical models; the polynomial model based on Frye John and Morris (1975) procedure and the power model for cold-formed boltless semi-rigid pallet rack connections by conducting 18 experiments.
The aim of this paper is to develop a robust numerical model for cold-formed steel square and rectangular structural hollow sections for use as axial loaded members in earthquake engineering applications.
Adverse effects were observed in single-day and multiday lag effects models for cold temperature, while neither single-day nor multiday lag effects were found from hot temperature.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com