Modeling and simulation of the vertical take off and energy consumption of a vibrating wing nano air vehicle

Author(s):  
Le Anh Doan ◽  
Damien Faux ◽  
Samuel Dupont ◽  
Eric Cattan ◽  
Sebastien Grondel
2010 ◽  
Vol 5 (4) ◽  
pp. 045009 ◽  
Author(s):  
Evan R Ulrich ◽  
Darryll J Pines ◽  
J Sean Humbert
Keyword(s):  

DYNA ◽  
2019 ◽  
Vol 86 (208) ◽  
pp. 243-250
Author(s):  
Carlos Cohen Manrique ◽  
Jhonatan Rodriguez ◽  
Rafael Ruiz Escorcia ◽  
Mario Perez Perez

In the present study, the relationships between the application of a diffuse tool applied to irrigation systems in watermelon crops are explored, as well as modeling and simulation as a tool applied to the same crop. Both tools were worked through Matlab® software, control cards with sensors and meteorological stations, where the data related to the climatic conditions of the Study Region were taken and measured. It is concluded that the simulated and applied system is economically viable as an alternative for the increase of production in small, medium and large farmers of Watermelon, in the Sabanas Region of the Department of Sucre. In addition, the system is technically stable from the point of view of Control Theory with an error ratio of less than 1.5%, demonstrating good levels of liquid optimization and energy consumption.


Author(s):  
Juan Manuel Belman ◽  
Armando Gallegos

This chapter concisely discusses two case studies experiences on domestic refrigeration. One of the cases involves the theoretical and experimental analysis of the thermal profile in the compartments of a refrigerator, all this under the modeling and simulation through CFD, thus obtaining interesting results in terms of energy consumption. The second case is focus on the thermal and energy evaluation of new material proposed as thermal insulator, which was developed in a conventional way in the laboratory and presents convenient thermal features. Therefore, the guidelines for this chapter are aimed at finding mechanism that streamline the domestic refrigeration systems, without modifying its cooling performance.


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