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This paper presents various aspects of modeling, simulation, design, and optimization of membrane-based gas separation systems.
A general methodology is presented for the modeling, simulation, design, evaluation, and statistical analysis of 13C-labeling experiments for metabolic flux analysis.
The proposed methods used in the modeling, simulation, design, and testing of the hot bar blade can also be applied to other similar processes.
Liquid-liquid phase equilibrium (LLE) for the system of biodiesel, glycerol, methanol or ethanol is fundamental for modeling, simulation, design and economic evaluation of biodiesel production.
In this paper modeling, simulation, design and experimentation with a three-wheeled mobile robot, with torus-shaped wheels and a novel two DOF suspension allowing independent lateral tilt and vertical motion, is presented.
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This paper describes the modeling, simulation and design of a Curie thermomagnetic motor.
A steer-by-wire vehicle performing a dynamic weave test is used to obtain experimental performance measures for this designed feel and a comparison is made with the simulated performance measures to verify the validity of the simple model simulation design technique proposed.
Existing SMB models in literature, which utilize a linear isotherm for the glucose fructose separation [D.C.S. Azevedo, A.E. Rodrigues, Fructose glucose separation in a SMB pilot unit: modelling, simulation, design and operation, AIChE J. 47 (2001) 2042 2051] and a nonlinear isotherm for the separation of xylene isomers [M.
This paper describes recent results from model simulations designed to test the Multi-Isotope Process (MIP) monitor, a novel addition to a safeguards system for reprocessing facilities.
By using the INFIL 3.0.1 model, a spatially distributed model of net infiltration, the volume and spatial distribution of net infiltration was examined for two basins, Wild Horse/Michigan Flats and Lobo/Ryan Flats, with model simulations designed to examine the effects of irrigated agriculture and human impacts on vegetation.
However, computational intensity and numerical issues restrict such applications in process modeling, simulation and design.
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