순환식 병류형 곡물건조기 개발(3) -12톤 용량 건조기 성능평가
This study was conducted to evaluate the performance of a 12 tons capacity circulating concurrent flow rice dryer. An actual scale dryer with the capacity of 12 tons was developed to obtain a faster drying rate of 0.8~1.2%(w.b.)/h, while maintaining a lower drying energy consumption of 5,000 kJ/kg-w...
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Veröffentlicht in: | Journal of Biosystems Engineering, 34(5) 2009, 34(5), 136, pp.358-362 |
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description | This study was conducted to evaluate the performance of a 12 tons capacity circulating concurrent flow rice dryer. An actual scale dryer with the capacity of 12 tons was developed to obtain a faster drying rate of 0.8~1.2%(w.b.)/h, while maintaining a lower drying energy consumption of 5,000 kJ/kg-water and achieving a drying quality that was comparable to a conventional cross-flow rice dryer. The Test-1 was conducted at $110^{\circ}C\;-\;20\;cmm/m^2$ and the Test-2 was conducted at $120-110-100-90^{\circ}C\;-\;20\;cmm/m^2$ under the same conditions as Test-1. In Test-1, the drying rate, drying energy consumption and crack ratio were 0.98 %(w.b.)/h, 4,573 kJ/kg-water and 3.2%, respectively. In Test-2, the drying rate, drying energy consumption and crack ratio were 0.74 %(w.b.)/h, 4,790 kJ/kg-water and 4.0%, respectively. The results of these tests demonstrated that this concurrent-flow dryer reached the desired drying rate, drying energy consumption and crack ratio. |
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W. Han</creator><creatorcontrib>한재웅 ; J. W. Han</creatorcontrib><description>This study was conducted to evaluate the performance of a 12 tons capacity circulating concurrent flow rice dryer. An actual scale dryer with the capacity of 12 tons was developed to obtain a faster drying rate of 0.8~1.2%(w.b.)/h, while maintaining a lower drying energy consumption of 5,000 kJ/kg-water and achieving a drying quality that was comparable to a conventional cross-flow rice dryer. The Test-1 was conducted at $110^{\circ}C\;-\;20\;cmm/m^2$ and the Test-2 was conducted at $120-110-100-90^{\circ}C\;-\;20\;cmm/m^2$ under the same conditions as Test-1. In Test-1, the drying rate, drying energy consumption and crack ratio were 0.98 %(w.b.)/h, 4,573 kJ/kg-water and 3.2%, respectively. In Test-2, the drying rate, drying energy consumption and crack ratio were 0.74 %(w.b.)/h, 4,790 kJ/kg-water and 4.0%, respectively. 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W. Han</creatorcontrib><title>순환식 병류형 곡물건조기 개발(3) -12톤 용량 건조기 성능평가</title><title>Journal of Biosystems Engineering, 34(5)</title><addtitle>Journal of biocystems Engineering</addtitle><description>This study was conducted to evaluate the performance of a 12 tons capacity circulating concurrent flow rice dryer. An actual scale dryer with the capacity of 12 tons was developed to obtain a faster drying rate of 0.8~1.2%(w.b.)/h, while maintaining a lower drying energy consumption of 5,000 kJ/kg-water and achieving a drying quality that was comparable to a conventional cross-flow rice dryer. The Test-1 was conducted at $110^{\circ}C\;-\;20\;cmm/m^2$ and the Test-2 was conducted at $120-110-100-90^{\circ}C\;-\;20\;cmm/m^2$ under the same conditions as Test-1. In Test-1, the drying rate, drying energy consumption and crack ratio were 0.98 %(w.b.)/h, 4,573 kJ/kg-water and 3.2%, respectively. In Test-2, the drying rate, drying energy consumption and crack ratio were 0.74 %(w.b.)/h, 4,790 kJ/kg-water and 4.0%, respectively. The results of these tests demonstrated that this concurrent-flow dryer reached the desired drying rate, drying energy consumption and crack ratio.</description><subject>Concurrent-flow dryer</subject><subject>Rice Circulating type</subject><subject>Rough rice Drying</subject><subject>농학</subject><issn>1738-1266</issn><issn>2234-1862</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2009</creationdate><recordtype>article</recordtype><sourceid>JDI</sourceid><recordid>eNpFzLtKw1AAgOGDKFhqn8Ali1CHwLlfxlK8VAuF0v1wkiYSUltJXNwcRKwO4iBUqUjBDoJDSh0cfKJc3sFqRad_-fhXQAljQm0kOV4FJSSItBHmfB1U4jhwICNEcCFpCbTzq3HxMMpvnqxsfpdNR8Xo3krnk-ztM52955Mk_UisNBlnybhKtq3Fpbh8sfLH1-x5aP2L_GKWXU-L22GanG-ANd_0Yq_y2zLo7O506vt2s7XXqNeadigJsonjUodzQqGhxsVSUeNAQh2XSeNJJR2fe77LoOIeEwKyLoM-c4hvhKcMdV1SBtXlth_5OnQDPTDBT48GOox0rd1paM64omhBt5Y0DOLTQPe7cU8f1A5bGEKFkOBUKszJt9v8c7E-iYJjE51pLBHHipMvWtJ42A</recordid><startdate>20091025</startdate><enddate>20091025</enddate><creator>한재웅</creator><creator>J. 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Han</creatorcontrib><collection>Korean Studies Information Service System (KISS)</collection><collection>Korean Studies Information Service System (KISS) B-Type</collection><collection>KoreaScience</collection><collection>Korean Citation Index</collection><jtitle>Journal of Biosystems Engineering, 34(5)</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>한재웅</au><au>J. W. Han</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>순환식 병류형 곡물건조기 개발(3) -12톤 용량 건조기 성능평가</atitle><jtitle>Journal of Biosystems Engineering, 34(5)</jtitle><addtitle>Journal of biocystems Engineering</addtitle><date>2009-10-25</date><risdate>2009</risdate><volume>34</volume><issue>5</issue><spage>358</spage><epage>362</epage><pages>358-362</pages><issn>1738-1266</issn><eissn>2234-1862</eissn><abstract>This study was conducted to evaluate the performance of a 12 tons capacity circulating concurrent flow rice dryer. An actual scale dryer with the capacity of 12 tons was developed to obtain a faster drying rate of 0.8~1.2%(w.b.)/h, while maintaining a lower drying energy consumption of 5,000 kJ/kg-water and achieving a drying quality that was comparable to a conventional cross-flow rice dryer. The Test-1 was conducted at $110^{\circ}C\;-\;20\;cmm/m^2$ and the Test-2 was conducted at $120-110-100-90^{\circ}C\;-\;20\;cmm/m^2$ under the same conditions as Test-1. In Test-1, the drying rate, drying energy consumption and crack ratio were 0.98 %(w.b.)/h, 4,573 kJ/kg-water and 3.2%, respectively. In Test-2, the drying rate, drying energy consumption and crack ratio were 0.74 %(w.b.)/h, 4,790 kJ/kg-water and 4.0%, respectively. The results of these tests demonstrated that this concurrent-flow dryer reached the desired drying rate, drying energy consumption and crack ratio.</abstract><pub>한국농업기계학회</pub><tpages>5</tpages><oa>free_for_read</oa></addata></record> |
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source | KoreaScience; EZB-FREE-00999 freely available EZB journals |
subjects | Concurrent-flow dryer Rice Circulating type Rough rice Drying 농학 |
title | 순환식 병류형 곡물건조기 개발(3) -12톤 용량 건조기 성능평가 |
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