DocumentCode
624151
Title
An effective CUDA based simulation for lightning strike protection on nanocomposite materials
Author
Asaduzzaman, Abu ; Yip, Chok M. ; Kumar, Sachin S. A. ; Asmatulu, Ramazan
Author_Institution
Electr. Eng. & Comput. Sci. Dept., Wichita State Univ., Wichita, KS, USA
fYear
2013
fDate
4-7 April 2013
Firstpage
1
Lastpage
5
Abstract
The lack of lightning strike protection (LSP) for the nanocomposite materials limits their use in many applications including aircrafts. As a result, there is a continuous interest in understanding the heterogeneous thermoelectric behavior of mixtures with carbon fibers/nanotubes of these materials. Currently available methodologies, including computer simulation of finite different method (FDM) with periodic boundary conditions, to assess the thermoelectric behavior of composite materials are extremely time consuming, expensive, and ineffectual. In this work, we propose a fast and effective simulation model using NVIDIA general purpose graphics processing unit (GPGPU) and compute unified device architecture (CUDA) technology which is targeted to LSP analysis on nanocomposite aircrafts. Preliminary results using FDM based steady state heat equation and Laplace´s equation demonstrate that the optimized shared memory CUDA/GPGPU implementation has potential to significantly reduce the simulation execution time.
Keywords
Laplace equations; aerospace computing; aerospace engineering; aerospace materials; aircraft; finite difference methods; graphics processing units; lightning protection; nanocomposites; parallel architectures; shared memory systems; thermoelectricity; CUDA based simulation; FDM based steady state heat equation; LSP analysis; Laplace equation; NVIDIA general purpose graphics processing unit; compute unified device architecture; finite different method; heterogeneous thermoelectric behavior; lightning strike protection; nanocomposite aircrafts; nanocomposite materials; optimized shared memory CUDA/GPGPU implementation; simulation execution time reduction; Computational modeling; Equations; Graphics processing units; Heating; Lightning; Mathematical model; Steady-state; CUDA/GPGPU; composite materials; computer based modeling and simulation; lightning strike protection; speedup;
fLanguage
English
Publisher
ieee
Conference_Titel
Southeastcon, 2013 Proceedings of IEEE
Conference_Location
Jacksonville, FL
ISSN
1091-0050
Print_ISBN
978-1-4799-0052-7
Type
conf
DOI
10.1109/SECON.2013.6567368
Filename
6567368
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