$BBh(B 1 $BF|(B | |||||
---|---|---|---|---|---|
$B9V1i(B $B;~9o(B | $B9V1i(B $BHV9f(B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $BJ,N`(B | $BHV9f(B $B | |
$B;YIt!&K\It6&:E4k2h(B BP-1. <$B%*!<%W%s%=!<%9$K$h$k(BCFD$B$HN.BN2r@O$N:GA0@~(B> | |||||
(13:00$B!A(B14:20) ($B:BD9(B $B2,Ln(B $BBYB'(B) | |||||
R113 | [$B>7BT9V1i(B] OpenFOAM: $B8=>u$HE8K>(B | OpenFOAM Open CAE | BP-1 | 1027 | |
R115 | [$B>7BT9V1i(B] $B2=3X(B/$B:`NA6H3&$K$*$1$k(BOpenFOAM$B$N3$30;v>p(B | OpenFOAM CAE Europa | BP-1 | 1028 | |
$B%U%i%C%7%eH/I=(B | |||||
R1P01 | OpenFOAM(R)$B$r | OpenFOAM Helyx GUI | BP-1 | 1029 | |
R1P02 | CFD$B%(%s%8%K%"$N$?$a$N;:3XO"7H$K$h$k(BCAE$B%f%K%P!<%7%F%#5;=Q650i(B | Engineer education university-industry CFDengineer | BP-1 | 1030 | |
R1P03 | OpenFOAM$B%U%!%s%G%#%s%0%W%m%8%'%/%H$H@_7W%W%m%;%9$X$NE83+(B | OpenFOAM CAE design process | BP-1 | 1031 | |
R1P04 | ennovaCFD | BP-1 | 1032 | ||
R1P05 | $BEE2r2C9)$N%^%k%A%U%#%8%C%/%92r@O$K$D$$$F(B | COMSOL | BP-1 | 1033 | |
R1P06 | $BHFMQ(BCFD$B%=%k%P$N$?$a$N9b@:EY$J%a%C%7%e@8@.%D!<%k(BPointwise$B$HJBNs=hM}$G?t2/%a%C%7%e$N7W;;7k2L$r7Z2w$K2D;k2=$G$-$k(BFieldView$B$N$4>R2p(B | Pointwise FieldView | BP-1 | 1034 | |
R1P07 | Cantera $B$H(B CRUNCH CFD$B$rMQ$$$?G3>F2r@O;vNc(B | cantera CRUNCH CFD | BP-1 | 1035 | |
R1P08 | $BJ?@.(B28$BG/EY!V5~!W$r4^$`(BHPCI$B%7%9%F%`MxMQ8&5f2]Bj$NJg=80FFb$HBh(B3$B2s(BOpenFOAM$B%o!<%/%7%g%C%W$N$4>R2p(B | BP-1 | 1036 | ||
R1P09 | $B$b$N$E$/$j$N9bEY2=$r;Y1g$9$k%*!<%W%s(BCAE$B%7%9%F%`(B(DEXCS)$B$N>R2p(B | CAE DEXCS | BP-1 | 1037 | |
R1P10 | $B%*!<%W%s(BCAE$B$,C[$/%3%_%e%K%F%#(B | OpenCAE | BP-1 | 1038 | |
R1P11 | $BN3;RK!(BCFD$B$*$h$S3J;RK!(BCFD$B$NHf3S(B | CFD Particle method (MPS) Grid method | BP-1 | 1039 | |
$B%]%9%?! | |||||
R1P01 | OpenFOAM(R)$B$r | OpenFOAM Helyx GUI | BP-1 | 1029 | |
R1P02 | CFD$B%(%s%8%K%"$N$?$a$N;:3XO"7H$K$h$k(BCAE$B%f%K%P!<%7%F%#5;=Q650i(B | Engineer education university-industry CFDengineer | BP-1 | 1030 | |
R1P03 | OpenFOAM$B%U%!%s%G%#%s%0%W%m%8%'%/%H$H@_7W%W%m%;%9$X$NE83+(B | OpenFOAM CAE design process | BP-1 | 1031 | |
R1P04 | ennovaCFD | BP-1 | 1032 | ||
R1P05 | $BEE2r2C9)$N%^%k%A%U%#%8%C%/%92r@O$K$D$$$F(B | COMSOL | BP-1 | 1033 | |
R1P06 | $BHFMQ(BCFD$B%=%k%P$N$?$a$N9b@:EY$J%a%C%7%e@8@.%D!<%k(BPointwise$B$HJBNs=hM}$G?t2/%a%C%7%e$N7W;;7k2L$r7Z2w$K2D;k2=$G$-$k(BFieldView$B$N$4>R2p(B | Pointwise FieldView | BP-1 | 1034 | |
R1P07 | Cantera $B$H(B CRUNCH CFD$B$rMQ$$$?G3>F2r@O;vNc(B | cantera CRUNCH CFD | BP-1 | 1035 | |
R1P08 | $BJ?@.(B28$BG/EY!V5~!W$r4^$`(BHPCI$B%7%9%F%`MxMQ8&5f2]Bj$NJg=80FFb$HBh(B3$B2s(BOpenFOAM$B%o!<%/%7%g%C%W$N$4>R2p(B | BP-1 | 1036 | ||
R1P09 | $B$b$N$E$/$j$N9bEY2=$r;Y1g$9$k%*!<%W%s(BCAE$B%7%9%F%`(B(DEXCS)$B$N>R2p(B | CAE DEXCS | BP-1 | 1037 | |
R1P10 | $B%*!<%W%s(BCAE$B$,C[$/%3%_%e%K%F%#(B | OpenCAE | BP-1 | 1038 | |
R1P11 | $BN3;RK!(BCFD$B$*$h$S3J;RK!(BCFD$B$NHf3S(B | CFD Particle method (MPS) Grid method | BP-1 | 1039 | |
$BBh(B 2 $BF|(B | |||||
$B9V1i(B $B;~9o(B | $B9V1i(B $BHV9f(B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $BJ,N`(B | $BHV9f(B $B | |
$BIt2q%7%s%]%8%&%`(B SY-3. <$B8=>]2r@O$+$i%W%m%;%96/2=5;=Q$X$NE83+(B> | |||||
(9:00$B!A(B9:40) ($B;J2q(B $B>>K\(B $B=(9T(B) | |||||
R201 | [$B>7BT9V1i(B] $BN.BNJ,Ln$K$*$1$k(BComputer-Aided Process Engineering$B$N | Computational fluid dynamics Visualization Validation and verification | SY-3 | 213 | |
(9:40$B!A(B10:40) ($B:BD9(B $B2O9g(B $B=( | |||||
R203 | $B29EY<~4|H?1~A`:n$NA`:n>r7o$N8!F$(B | dynamic operation temperature cycling micro reactor | SY-3 | 509 | |
R204 | $B%9%i%0%U%m!<$rMQ$$$?5$1U8GH?1~%W%m%;%9$N6/2=(B | slug flow catalyst mass transfer | SY-3 | 703 | |
R205 | $B%X%j%+%k%P%C%U%kIU$-Cf6u;eKl%b%8%e!<%k$N@-G=$HN.F0>uBV$N4X78(B | CFD Membrane Filtration Process Intensification | SY-3 | 318 | |
(10:40$B!A(B11:40) ($B:BD9(B $B;3LZ(B $BM:Bg(B) | |||||
R206 | $B | Partial Heating Human Thermoregulation Model | SY-3 | 42 | |
R207 | Taylor$B12%P%$%*%j%"%/%?!<$K$*$1$k8w9g@.Hy@8J*$NA}?#$HAtBNGK2u(B | Taylor vortex flow photosynthetic microorganism Spirulina platensis | SY-3 | 329 | |
R208 | $BDc%"%9%Z%/%HHf(BTaylor-Couette$B12N.$l$K$*$1$k?tCM%7%_%e%l!<%7%g%s(B | Taylor-Couette flow low aspect ratio numerical simulation | SY-3 | 811 | |
(13:00$B!A(B13:40) ($B;J2q(B $BKY9>(B $B9';K(B) | |||||
R213 | [$B>7BT9V1i(B] $BH?1~9)3X$K4p$E$/?(G^@_7W(B -$B%<%*%i%$%H7k>=%5%$%:$N1F6A(B- | Catalyst Zeolite Thiele modulus | SY-3 | 959 | |
(13:40$B!A(B15:00) ($B:BD9(B $B:y0f(B $B@?(B) | |||||
R215 | $BD62;GH>H | ultrasonic irradiation lignin kinetic analysis | SY-3 | 663 | |
R216 | $BFsCJ3,F}2=K!$rMQ$$$?%(%^%k%7%g%sD4@=$H%9%A%l%s=E9g$X$NE,MQ(B | Ultrasound Two-step emulsification method Polystyrene | SY-3 | 552 | |
R217 | $BD62;GH>H | Degradation Methylene blue Ultrasound | SY-3 | 916 | |
R218 | $BL5EE6K>.7?8w8;$rMQ$$$?= | photocatalytic reactor electrodeless lamp | SY-3 | 867 | |
(15:00$B!A(B15:40) ($B;J2q(B $B>>ED(B $B7=8g(B) | |||||
R219 | [$B>7BT9V1i(B] $BB?9&@-J,N%Kl$N3+H/$H%W%m%;%96/2=$X$N1~MQ(B | membrane separation process intensification | SY-3 | 135 | |
(15:40$B!A(B17:00) ($B:BD9(B $B>.NS(B $BBgM4(B) | |||||
R221 | $B= | Packed distillation column ideal plate model mass transfer model | SY-3 | 14 | |
R222 | IPA$BC&?e%W%m%;%9$KBP$9$k5[Ce!<%P%C%A>xN1%O%$%V%j%C%I%7%9%F%`$N>J%(%M%k%.!<@-(B | Hybrid system Energy efficiency Dehydration process | SY-3 | 784 | |
R223 | AKD$B$rMQ$$$?B?9&2$B$N9g@.$H$=$N%U%i%/%?%k@-$K4X$9$k8!F$(B | porous material fractal structure adsorption performance | SY-3 | 628 | |
R224 | $BG@9)2#CGE*2r@O$K$h$k%5%H%&%-%SMx3hMQ%W%m%;%9%7%9%F%`$N6/2=(B | Biomass Modeling Agriculture | SY-3 | 763 |