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Development and application of paraffin type …

Development and application of paraffin type thermal storage material ECOJOULE . JX . JX Nippon Oil & Energy Corporation, Chemical Division of thermal storage Business Group . Hideo Matsuoka ( thermal storage ) (Latent Heat) (Phase Change Materials). ( paraffin ) (Comfortable Living Space) (Saving Energy) . (Solar Energy).. ( ) .. CO2 2009 9 . 2020 1990 .. 2020 2000 CO2 2008. 2010 1 CO2 . CO2 .. CO2 . CO2 .. CO2 (2006-2008 ) .. 2006 2007 2008 .. 1,059 1,186 1,219 1,138. < > . + + + .. 482 460 468 420. < > .. 217 253 246 236. < > . + + + .. 164 230 242 232. < > . + + + .. 127 166 180 172. < > . + + + .. < > . + + + .. Predicted Mean Vote SET Standard New Effective Temperature) . RH RH . %RH .. 1 .. COP= (1 .. CO2 .. W). 200. 175 kW.. 150.. 8800 W. ( ). 100. 87 kW.. 1 2 50 . kW 50 . 0. 0 4 8 12 16 20 24.

パラフィン系潜熱蓄熱材「エコジュール」の開発と応用 Development and application of paraffin type thermal storage material “ECOJOULE”

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Transcription of Development and application of paraffin type …

1 Development and application of paraffin type thermal storage material ECOJOULE . JX . JX Nippon Oil & Energy Corporation, Chemical Division of thermal storage Business Group . Hideo Matsuoka ( thermal storage ) (Latent Heat) (Phase Change Materials). ( paraffin ) (Comfortable Living Space) (Saving Energy) . (Solar Energy).. ( ) .. CO2 2009 9 . 2020 1990 .. 2020 2000 CO2 2008. 2010 1 CO2 . CO2 .. CO2 . CO2 .. CO2 (2006-2008 ) .. 2006 2007 2008 .. 1,059 1,186 1,219 1,138. < > . + + + .. 482 460 468 420. < > .. 217 253 246 236. < > . + + + .. 164 230 242 232. < > . + + + .. 127 166 180 172. < > . + + + .. < > . + + + .. Predicted Mean Vote SET Standard New Effective Temperature) . RH RH . %RH .. 1 .. COP= (1 .. CO2 .. W). 200. 175 kW.. 150.. 8800 W. ( ). 100. 87 kW.. 1 2 50 . kW 50 . 0. 0 4 8 12 16 20 24.

2 (2006 )( ). 2 . 5 10 . PCM: Phase Change Materials .. ( ) . ( ).. ( 3 30 ) .. (3 30 ) .. KJ/kg) (Kcal/kg).. 6 160 180 38 43. ( ) . 10 110 130 26 31.. 18 160 180 38 43.. 22 110 130 26 31. ( ) 28 170 190 40 45.. DSC min 2 4 230kJ/kg . 16 . 0. 240. -20. 220. -40. 200. -60. 180. -80. 160. -100. J/ g J/ g 140. -120. 120. -140. 100. -160. 80 -180. 60 -200. 40 -220. 20 -240. 0 -260. -5 0 5 10 15 20 25 30 35.. ( ) . ( ) ( ) .. 4 2,000 .. 3,000kg .. (3000kg) .. , .. 2000.. 1500.. 1000. Mcal/h .. 500.. 0. -500. -1000 0:00 1:00 2:00 3:00 4:00 5:00 6:00 7:00 8:00 9:00 10:00 11:00 12:00 13:00 14:00 15:00 16:00 17:00 18:00 19:00 20:00 21:00 22:00 23:00. 0 0 0 0 0 0 0 0 0 0 332 201 230 209 451 411 401 344 208 174 119 65 0 0. R-14 0 -500 -500 -500 -500 -500 -500 -145 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0. R-14 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0.

3 R-13 729 700 551 210 1 0 0 0 242 926 1005 1005 1005 1005 1005 1005 1005 1005 1005 1005 1005 1005 807 728.. 8 17 .. 8 17 . 14.. 12. 10 . 8 . 6 . 4 .. ( ). 2. 0. 22:00. 00:00. 02:00. 04:00. 06:00. 08:00. 10:00. 12:00. 14:00. 16:00. 18:00. 20:00.. M/C .. 2010 8 . - . 8 .. 30 .. CO2 .. ( ) 2007 . ( ) 2007 . ( ) . ( ) . ( ) ,47 ,8 ,630,p8-11(2009). (Coefficient Of Performance) . 1kW.


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