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답전윤환 인삼재배 예정지 토양의 물 이동특성 평가
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  • 답전윤환 인삼재배 예정지 토양의 물 이동특성 평가
  • Assessment on Water Movement in Paddy-Upland Rotation Soil Scheduled for Ginseng Cultivation
저자명
허승오,이윤정,연병열,전상호,하상건,김정규,Hur. Seung-Oh,Lee. Yun-Jeong,Yeon. Byung-Ryul,Jeon. Sang-Ho,Ha. Sang-Geon,Kim. Jeong-Gyu
간행물명
韓國藥用作物學會誌
권/호정보
2009년|17권 3호|pp.204-209 (6 pages)
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한국약용작물학회
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

This study was conducted to assess water movement in paddy-upland rotation soil scheduled for ginseng cultivation through the measurement of infiltration and permeability of soil water. Soil sample was divided with four soil layers. The first soil layer (to 30cm from top soil) was loamy sand, the second and the third soil layers (30$sim$70 ㎝) were sand, and the fourth (< 120 ㎝) was sandy loam. The soil below 130 ㎝ of fourth soil layer was submerged under water. The shear strength, which represents the resisting power of soil against external force, was 3.1 kPa in the first soil layer. This corresponded to 1/8 of those of another soil layer and this value could result in soil erosion by small amount of rainfall. The rates of infiltration and permeability depending on soil layers were 39.86 cm $hr^{-1}$ in top soil, 2.34 cm $hr^{-1}$ in 30$sim$70 ㎝ soil layer, 5.23 cm $hr^{-1}$ and 0.18 cm $hr^{-1}$ in 70$sim$120 ㎝ soil layer, with drain tile, and without drain tile, respectively. We consider that ground water pooled in paddy soil and artificial formation of soil layer could interrupt water canal within soil and affect negatively on water movement. Therefore, we suggest that to drain at 5 m intervals be preferable when it makes soil dressing or soil accumulation to cultivate ginseng in paddy-upland rotation soil to reduce failure risk of ginseng cultivation.