Computer-based eulerian property description of a gaseous incompressible flow
- Τίτλος
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Computer-based eulerian property description of a gaseous incompressible flow
- Θέμα
- Nanostructured materials
- Gas flow
- Eulerian graph theory
- Δημιουργός
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Karaiskos, Michalis
- Πηγή
- Higher Technical Institute
- Το πλήρες κείμενο είναι διαθέσιμο από το Υπουργείο Ενέργειας, Εμπορίου Βιομηχανίας και Τουρισμού.
- Εκδότης
- Library of Cyprus University of Technology
- Ημερομηνία
- 2000
- Δικαιώματα
- Απαγορεύεται η δημοσίευση ή αναπαραγωγή, ηλεκτρονική ή άλλη χωρίς τη γραπτή συγκατάθεση του δημιουργού και κάτοχου των πνευματικών δικαιωμάτων.
- Μορφή
- Γλώσσα
- en
- Τύπος
- text
- Αναγνωριστικό
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MED0502
- Σύνοψη
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Nanostructured materials are a new class of synthetic materials with ultrafine microstructures, somewhat arbitrarily defined as structures smaller than 100 nanometres. These materials may be composed of metals, ceramics, polymers, and their composites. The materials can be in the form of powders, thin films, porous media, or dense structures.
The objective is to establish at H.T.I a Nanomaterials Research Center (NRC) with the target of being a leader in the rapidly emerging field of nanostructured materials and to achieve rapid growth and attractive industrial feedback from its proprietary position. The mission statement of the NRC is provided in the Appendices.
The breadth of the Center's technology places it in a position to achieve a strong proprietary position in both the manufacture and application of nanostructured powders. The Center's potential opportunity areas include the Spray Conversion Process for making nanostructured powders, the powder products of that process, processes for creating net-shaped parts from nanostructured powders, such as PIM, and nanostructured net-shape parts. NRC is focused on maximizing the commercial potential of its technology.
This project carries the title: "Computer-base Eulerian Property Description of a gaseous Incompressible Flow" and its major objective was to establish the Eulerian description of the reactor's flow.
- Πολυμέσα
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MED0502.pdf
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