• 제목/요약/키워드: Heywood's Diameter

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THE DISTRIBUTION OF DIGESTA PARTICLES AND MEAN PARTICLE SIZE OF DIGESTA OBTAINED FROM THE DIVERSE PARTS OF THE GASTROINTESTINAL TRACT OF RUMINANTS

  • Sekine, J.;Fujikura, T.;Oura, R.;Asahida, Y.
    • Asian-Australasian Journal of Animal Sciences
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    • 제5권1호
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    • pp.13-18
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    • 1992
  • Three cattle, a sheep and a goat were slaughtered to determine the distribution of digesta particles and mean size of digesta particles. Aliquot samples of digesta in the diverse sites of the digestive tracts were fractionated by a wet sieving technique. Fractionated particles were analyzed by the magnetic grid analyzer system constructed by authors. Results showed that the proportion of particles in digesta was similar among the omasum, abomasums cecum, colon and rectum, but that for the reticulo-ruminal digesta was different from the others. The pattern of the mass base frequency distribution of particles was also similar in the post-ruminal digesta. Average Heywood's diameter (the diameter equivalent to that of a circle with equal area to a projected area of a given particle) was about 1.2 mm in the reticulo-ruminal digesta and decreased to 0.65 mm for cattle or to about 0.35 mm for sheep and goat in the omasal digesta. Average Heywood's diameter was about the same in the post-ruminal digesta. It is concluded that mean particle size and particle distribution in digesta of the rectum or feces reflect those in digesta of the omasum.

유동층 반응기 희박상 내 탄소나노튜브 응집체의 크기 및 형상 측정 (Measurement of Carbon Nanotube Agglomerates Size and Shape in Dilute Phase of a Fluidized Bed)

  • 김성원
    • Korean Chemical Engineering Research
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    • 제55권5호
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    • pp.646-651
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    • 2017
  • CNT 유동층 반응기(내경 0.15 m, 높이 2.6 m) 희박상 내 CNT 입자(평균입도 $291{\mu}m$, 벌크밀도 $72.9kg/m^3$)의 거동을 확인하기 위해 레이저 슬릿광 형상 측정법을 이용하여, CNT 응집체의 크기 및 형태를 측정하였다. 기포유동층 조건에서 CNT 반응기 내 축방향 고체체류량 분포는 하부 농후상과 상부 희박상을 갖는 S자 형태를 보였다. 기체 유속이 증가할수록 비산되는 CNT 응집체의 Heywood 직경과 Feret 직경이 증가하였고, 응집체 내 CNT 입자수가 증가하였다. 또한, 기체의 유속이 증가할수록 CNT 응집체의 종횡비는 증가하고, 원형도는 감소하였다. CNT 응집체의 원마도와 견고도는 기체의 유속이 증가할수록 감소하였다. 응집체의 형상 분석 정보에 기반한 희박상 내 응집체 형성 원인을 제안하였다.