[deepconv] [プログラムのテスト計算 (deepconv/arare5)]

サーマルの上昇 : コンパイラ別比較計算

概要

ソースコードに含まれるサンプル NAMELIST ファイルを用いて, y 方向一様な場合のサーマルの上昇を計算する.

ここではモデルのチェックのため 4 つのコンパイラによる計算結果を比較する.

ソースコード

計算設定

計算結果

圧力関数
t = 600 sec
t = 1200 sec
t = 1800 sec
t = 2400 sec
t = 3000 sec
Fujitsu FFC
(ver.5)
ExnerFFC_011.png


ExnerFFC_021.png


ExnerFFC_031.png


ExnerFFC_041.png


ExnerFFC_051.png


G95
(ver. 4.0.3)
ExnerG95_011.png


ExnerG95_021.png


ExnerG95_031.png


ExnerG95_041.png


ExnerG95_051.png


Gfortran
(ver. 4.4.5)
ExnerGFT_011.png


ExnerGFT_021.png


ExnerGFT_031.png


ExnerGFT_041.png


ExnerGFT_051.png


Intel fortran
(ver. 12.0.4)
ExnerIFC_011.png


ExnerIFC_021.png


ExnerIFC_031.png


ExnerIFC_041.png


ExnerIFC_051.png


温位偏差
t = 600 sec
t = 1200 sec
t = 1800 sec
t = 2400 sec
t = 3000 sec
Fujitsu FFC
(ver.5)
PtempFFC_011.png


PtempFFC_021.png


PtempFFC_031.png


PtempFFC_041.png


PtempFFC_051.png


G95
(ver. 4.0.3)
PtempG95_011.png


PtempG95_021.png


PtempG95_031.png


PtempG95_041.png


PtempG95_051.png


Gfortran
(ver. 4.4.5)
PtempGFT_011.png


PtempGFT_021.png


PtempGFT_031.png


PtempGFT_041.png


PtempGFT_051.png


Intel fortran
(ver. 12.0.4)
PtempIFC_011.png


PtempIFC_021.png


PtempIFC_031.png


PtempIFC_041.png


PtempIFC_051.png


水平流
t = 600 sec
t = 1200 sec
t = 1800 sec
t = 2400 sec
t = 3000 sec
Fujitsu FFC
(ver.5)
VelxFFC_011.png


VelxFFC_021.png


VelxFFC_031.png


VelxFFC_041.png


VelxFFC_051.png


G95
(ver. 4.0.3)
VelxG95_011.png


VelxG95_021.png


VelxG95_031.png


VelxG95_041.png


VelxG95_051.png


Gfortran
(ver. 4.4.5)
VelxGFT_011.png


VelxGFT_021.png


VelxGFT_031.png


VelxGFT_041.png


VelxGFT_051.png


Intel fortran
(ver. 12.0.4)
VelxIFC_011.png


VelxIFC_021.png


VelxIFC_031.png


VelxIFC_041.png


VelxIFC_051.png


鉛直流
t = 600 sec
t = 1200 sec
t = 1800 sec
t = 2400 sec
t = 3000 sec
Fujitsu FFC
(ver.5)
VelzFFC_011.png


VelzFFC_021.png


VelzFFC_031.png


VelzFFC_041.png


VelzFFC_051.png


G95
(ver. 4.0.3)
VelzG95_011.png


VelzG95_021.png


VelzG95_031.png


VelzG95_041.png


VelzG95_051.png


Gfortran
(ver. 4.4.5)
VelzGFT_011.png


VelzGFT_021.png


VelzGFT_031.png


VelzGFT_041.png


VelzGFT_051.png


Intel fortran
(ver. 12.0.4)
VelzIFC_011.png


VelzIFC_021.png


VelzIFC_031.png


VelzIFC_041.png


VelzIFC_051.png


乱流拡散計算
t = 600 sec
t = 1200 sec
t = 1800 sec
t = 2400 sec
t = 3000 sec
Fujitsu FFC
(ver.5)
KmFFC_011.png


KmFFC_021.png


KmFFC_031.png


KmFFC_041.png


KmFFC_051.png


G95
(ver. 4.0.3)
KmG95_011.png


KmG95_021.png


KmG95_031.png


KmG95_041.png


KmG95_051.png


Gfortran
(ver. 4.4.5)
KmGFT_011.png


KmGFT_021.png


KmGFT_031.png


KmGFT_041.png


KmGFT_051.png


Intel fortran
(ver. 12.0.4)
KmIFC_011.png


KmIFC_021.png


KmIFC_031.png


KmIFC_041.png


KmIFC_051.png


dW/dt (x=5,000)
t = 600 sec
t = 1200 sec
t = 1800 sec
t = 2400 sec
t = 3000 sec
Fujitsu FFC
(ver.5)
Tend_VelZFFC_011.png


Tend_VelZFFC_021.png


Tend_VelZFFC_031.png


Tend_VelZFFC_041.png


Tend_VelZFFC_051.png


dθ/dt (x=5,000)
t = 600 sec
t = 1200 sec
t = 1800 sec
t = 2400 sec
t = 3000 sec
Fujitsu FFC
(ver.5)
Tend_PtempFFC_011.png


Tend_PtempFFC_021.png


Tend_PtempFFC_031.png


Tend_PtempFFC_041.png


Tend_PtempFFC_051.png


           

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