Performance of Staggered Grid Implementation of 2D Shallow Water Equations using CUDA Architecture

ADRIAN ARNOLDY

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75 kali
19.04.3434
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Karya Ilmiah - Skripsi (S1) - Reference

Abstract—In nature, there are many examples of shallow water flows, such as flooding in coastal cities, river flow, or tsunami propagation and runup. The favorite model that is chosen for simulating such phenomena is the Shallow Water Equations (SWE) or also called the Saint-Venant equation. To simulate various nonlinear phenomena such as wave breaking and wave runup, the model should be implemented numerically by using a numerical scheme that is robust, accurate, and yet efficient in computation. In this paper, we implemented the model by using Finite Volume method in a staggered grid scheme. To broaden the applicability of the model for simulating large domain of computation, the model is implemented in CUDA architecture in Graphical Processing Unit (GPU). The performance of the parallel architecture is tested by comparing the computation time between the CUDA implementation with the traditional CPU implementation. The comparison shows significant speed up in the CUDA implementation. Index Terms—Shallow Water Equations, Staggered grid, par- allel, CUDA

Subjek

COMPUTER SCIENCE
 

Katalog

Performance of Staggered Grid Implementation of 2D Shallow Water Equations using CUDA Architecture
 
 
Indonesia

Sirkulasi

Rp. 0
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Tidak

Pengarang

ADRIAN ARNOLDY
Perorangan
Didit Adytia
 

Penerbit

Universitas Telkom, S1 Informatika
Bandung
2019

Koleksi

Kompetensi

  • CSH3H2 - DASAR PEMODELAN DAN SIMULASI
  • CSH4U3 - KOMPUTASI KINERJA TINGGI
  • CNG4F3 - KOMPUTASI PERFORMANSI TINGGI
  • IFG444 - TUGAS AKHIR II

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