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During the last fifteen years, several TO methods have been developed for optimizing thermal systems based on conductive, convective and conjugate heat transfer.
In this study, a design method based on a simulation technique has been developed for optimizing two pass RO desalination systems.
Solution approaches to the deterministic network interdiction problem have previously been developed for optimizing a single figure-of-merit of the network configuration (i.e. flow that can be transmitted between a source node and a sink node for a fixed network design) under constraints related to limited amount of resources available to interdict network links.
Mathematical models and computation techniques have been developed for optimizing and simulating the operation of transport fleets in order to serve the customers demand with the objective of cost efficiency.
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Semi-automated methods were developed for optimizing the passive material properties while simultaneously computing the unloaded reference geometry of the ventricles for stress analysis.
A theoretical model representing the PS LED as a distributed network of elementary diodes and resistors is developed for optimizing the design of the top grid pattern.
It is shown how, by using such an expansion, a method can be developed for optimizing the transducer locations for the case of free field radiation of a period general primary source.
In this paper, a limiting equilibrium based methodology, incorporating the method of slices and arching effects of the drilled shafts, is developed for optimizing the use of multiple rows of drilled shafts.
An algorithm is developed for optimizing laminated plate stacking sequences and determining thicknesses, which incorporates discrete ply angles and considers the uncertainties of material properties in a two-step optimization process.
Alternate land use plans were developed for optimizing four objective functions – maximizing farm income, employment and nutritional security, and minimizing soil loss individually and simultaneously at the watershed level.
The beam conditions of the injector were carefully optimized to satisfy the requirements of the CRS linac, the corresponding control system and a two-dimension scanner code CRSv1.0 were developed for optimizing the beam transmission from LEBT section to the entrance of the CRS cavity.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com