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The model is based on fundamental equations of steady state suspension crystallization.
The model is based on fundamental equations of mass, energy and momentum which are solved simultaneously through an iterative process.
The model follows a component approach for each part of the chiller based on fundamental equations for heat and mass transfer.
The method is based on fundamental equations of hydraulic flow resistance in rivers, including the Manning equation and the Prandtl-von Karman universal velocity distribution equation.
In this work, we have developed a simplified model, however based on fundamental equations, which includes structural and fluid dynamic parameters for the target (the industrial equipment) and for the impacting pressure wave (shock waves) or object (fragment, debris) produced by different type of chemical explosions.
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An axially spatially-distributed, quasi two-dimensional model is developed based on fundamental conservation equations, semi-empirical oxygen transport equations obtained from the literature, and simplified fuel oxidation kinetic mechanisms.
These phenomena can be well described through a macroscale modeling approach based on fundamental conservation equations.
The homogeneous model is based on fundamental conservation equations of mass, momentum and energy.
Based on fundamental flow equations describing mass balance, energy conservation and momentum, a consistent solution is derived for natural ventilation by thermal buoyancy in a room with two openings and with uniform temperature.
This article contains a Reduced Primary Model (RPM) for estimating the primary dynamical responses, based on fundamental governing equations, clad temperature rising estimation after occurring the LOCA for a modern PWR are carried out.
This paper presents a model of both of these effects based on fundamental engineering mechanics, and prescriptive equations are derived based on the principle of virtual work.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com