• Title/Summary/Keyword: 줄기 직경

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Ecophysiological Interpretations on the Water Relations Parameters of Trees(VIII) - The Hydraulic Architecture of Quercus mongolica (수목(樹木)의 수분특성(水分特性)에 관(關)한 생리(生理)·생태학적(生態學的) 해석(解析)(VIII) - 신갈나무의 수분통도성(水分通導性) 구조(構造) -)

  • Han, Sang Sup;Kim, Sun Hee
    • Journal of Korean Society of Forest Science
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    • v.85 no.1
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    • pp.120-129
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    • 1996
  • This study was carried out to investigate the hydraulic architecture such as relative hydraulic conductivity, Leaf specific conductivity(LSC), Huber value, Specific conductivity of the stem, branch and Junctions of stem-to-branch in Quercus mongolica trees. The hydraulic architecture of various hydraulic conductivities of stem and branch was described. The results obtained were summarized as follows : 1. The range of relative hydraulic conductivity was $2.5526{\times}10^{-12}$ to $1.2260{\times}10^{-10}m^2$ in stems, $1.6279{\times}10^{-11}$ to $6.8378{\times}10^{-11}m^2$ in branches. The relative hydraulic conductivities increased with decreasing diameter of stem and branch. The relative hydraulic conductivity of one-year-old terminal shoots were two times greater than that of the lateral shoots. 2. LSC value was larger at the top than at the base in stem. LSC is much smaller in branches than in stem ; especially smallest at branching part. 3. Hydraulic conductivities of the branching part appeared the different values with the 4 type and 4 type. Relative hydraulic conductivity, LSC, Specific conductivity and mean vessel diameter in type branching part were larger in stem than in branch part, but not found in the branching part of Y type. 4. LSC and Specific conductivity of stem increased with decreasing diameter, but Huber value slowly increased with decreasing diameter ; especially highest at less than 1cm diameter. 5. LSC, Huber value, and mean diameter of vessels were larger at 1-year-old leader shoots than at lateral shoots. 6. The mean vessel diameter in various parts of a tree decreased with decreasing diameter of stem, but the number of vessels per unit area($mm^{-2}$) increased reversely. Mean vessel diameter in stem decreased sharply at earlywood and slowly at latewood with decreasing diameter of stem.

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Dimensional Variation of Vessel Element and Fiber in Alnus hirsuta and A. firma (물오리나무와 사방오리나무에 있어서 도관요소 및 섬유의 칫수 변이)

  • 소웅영;한경식
    • Journal of Plant Biology
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    • v.28 no.1
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    • pp.9-20
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    • 1985
  • Dimensional variation of secondary xylem elements, such as vessel element and fiber, was investigated in root, stem and branch of Alnus hirsuta and A. firma. It is clear that vessel diameter in the root is the widest, next in the stem, and the least in the branch. Length of vessel element among them becomes, however, larger in following sequence; stem, root, and branch, whereas fiber diameter and length are the widest in the root, the second in the stem, and the least in the branch. The size of secondary xylem element at any one level in tree increases from the center (pith) of the organs through a number of annual rings to the outer.

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Development of Light-Treatment Technology for Producing Tomato Transplants of High Quality -Effects of End-of-day Light Treatment Affecting on the Quality of Tomato Transplants- (고품질의 토마토묘 생산을 위한 광처리 기술개발 -일몰 후 광처리가 토마토묘 소질에 미치는 영향-)

  • 이귀현
    • Journal of Bio-Environment Control
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    • v.10 no.1
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    • pp.55-60
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    • 2001
  • To investigate the effect of red light (R) and far-red light(FR) on controlling the growth of tomato transplants, height, length of 1st internode, and stem diameter of plant were measured every 12 days during 24 days of light treatment. At the end of experiment, fresh and dry weights of roots and shoots were measured. Generally, it was shown that the height of plant was suppressed by the treatment of FR. However, the effect of light-treatment time (10 or 20 min) on plant height was not significant. Stem diameter of the plant treated with R was greater than that of the plant treated with FR or the control. Dry weight ratio of shoot to root of the plant treated with R was smaller that of the plant treated with FR. R was more effective than the control, which was more effective than FR, in making the transplant compact.

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Stand Structure and Biomass in Wild Populations of Camellia sinensis (야생(野生) 차(茶)나무 집단(集團)의 임분구조(林分構造)와 물질현존량(物質現存量))

  • Park, In Hyeop;Ryu, Suk Bong;Lee, Seon Ha
    • Journal of Korean Society of Forest Science
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    • v.87 no.2
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    • pp.173-178
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    • 1998
  • Twelve Camellia sinensis populations were studied to investigate the biomass distribution related to stand structure. With increasing mean age of the population, mean root collar diameter increased, while mean height, density and root collar area had no correlation with the age. The result of dimension analysis after cutting the sample trees showed that dry weights of stems +branches and root were exponentially increased and dry weights of current leaves and twigs were linearly increased with increasing root collar diameter. However, the dry weight of older leaves was not related to the root collar diameter. The range of total biomass was 1,162~11,474kg/ha and the range of current leaf biomass was 165~1,341kg/ha. The range of T/R ratio was 1.5~2.8. The biomass of stems+branches and root were significantly correlated with the root collar area of the population and were not significantly correlated with the mean age, mean root collar diameter and density of the population. The biomass of current leaves and twigs were significantly correlated with the root collar area and density of the population.

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Comparative Anatomy of the Secondary Xylem in the Root and Stem of Some Korean Lauraceae (수종(數種)의 한국산(韓國産) 녹나무과(科) 식물(植物)에 있어서 뿌리와 줄기의 이기목부(二期木部)의 비교해부(比較解剖))

  • Soh, Woong Young;Lim, Dong Ok
    • Journal of Korean Society of Forest Science
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    • v.76 no.4
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    • pp.317-329
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    • 1987
  • A comparative anatomy between the secondary xylem in the root and the stem of some Korean Lauraceae, including 6 genera and 7 species, was carried out in this study. The results are as follows; diameter and length of vessel element and fiber are wider and longer in the root than the stem. The angle of end wall of vessel element is more inclined in the root than the stem. Also more number of bar on the perforation plate of vessel element in root wood is found. From the anatomical characters of root and stem wood in some Lauraceous species, it is suggested that the wood of the root is phylogenetically mote primitive than that of the stem, except the diameter of vessel element.

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Characteristics of Aboveground and Red Ginseng Quality of Polystem Ginseng(Panax gjnseng C.A. Meyer) (다경형(多莖型) 인삼(人蔘)의 지상부 생육 및 홍삼(紅蔘) 품질 특성)

  • Lee, Jong-Chul
    • Korean Journal of Medicinal Crop Science
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    • v.4 no.3
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    • pp.255-260
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    • 1996
  • This study was conducted to investigate the characteristics of aboveground plants and red ginseng of polystem ginseng in 6 years of age having two or more stems in a plant. Total leaf weight and area of polystem ginseng were larger, while its stem diameter, and the leaf weight and area of the big­gest stem in each plant were decreased with increase the stem numbers in a plant. The ratio of shoot weight to root weight in the polystem ginseng with three or more stems was higher than that in the monos­tem ginseng and the polystem ginseng with two stems, In ginseng plants with no more than 2 stems, there were positive correlations between root weight and total leaf weight, and leaf area, but not between leaf weight and area of the biggest stem. Inner cavity and inner white, limiting factors for redginseng quality grade, occurred more in tri-stem ginseng than mono- and di-stem one. Percentages of Heaven (1st grade) and Earth (2nd grade) red ginseng in tri-stem ginseng were decreased compared with mono stem and di-stem ginseng.

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Biomass Production of One-year-old Hybrid Poplars and Its Estimation (식재 당년생 신품종 포플러류의 Biomass 생산량 및 생산량 추정)

  • Koo, Yeong-Bon;Shim, Sang-Yung;Noh, Eui-Rae
    • Journal of Korea Foresty Energy
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    • v.7 no.1
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    • pp.22-27
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    • 1987
  • Above ground biomass production of one-year-old hybrid poplars was investigated to select the best clones which are suitable for short rotation forestry. The results were as follows: 1. Average dry weight of Populus alba X P. glandulosa Fl clones was 2.86 for stem,0.41 for branches 0.70 for leaves and 3.97 t/ha for total. and the ratios of green weight to dry weight were 0.47 for stem,0.36 for branches,0.31 for leaves and 0.42 for total. Dry weight of Populus nigra X P. maximowiczii Fl clones was 1.48 for stem, 0.54 for branches.0.71 for loaves and 2.73t/ha for total, and the ratios of green weight to dry weight were 0.42 for stem. 0.37 for branches, 0.28 for leaves and 0.36 for total. 2. Biomass production (green and dry weight)of Populus alba X P. glandulosa F1 clones can be predicted by diameter measurement only, but biomass production of Populus nigra X P. maximowiczii F1 clones can not be predicted by any of investigated characteristics. 3. Dry weight distribution of pepulus alba X P. glandulosa Fl clones were 73$\%$ for stem, 10$\%$ for branches and 17$\%$ for leaves, and dry weight distribution of P. Populus nigra X P. maximowiczii F1 clones were 54$\%$ for stem, 20$\%$ for branches and 26$\%$ for leaves.

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The Characteristics of Longitudinal Permeability and Hydraulic Resistance in Stem of Acer mono (고로쇠나무 줄기의 통수성(通水性)과 통수저항(通水抵抗)의 특성(特性))

  • Kim, Sun-Hee;Han, Sang-Sup
    • Journal of Korean Society of Forest Science
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    • v.89 no.4
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    • pp.488-496
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    • 2000
  • This study was carried out to investigate the characteristics of longitudinal permeability and hydraulic resistance, and to compare the longitudinal permeability ($K_E$) calculated by the Hagen-Poiseuille's law (Siau, 1971) and the longitudinal permeability (K) measured in sapwood of Acer mono stem. The volume flow rate (Q) in a vessel was $0.80{\times}10^{-4}cm^3/sec$ and the hydraulic resistance ($R_S$) to viscous flow through a vessel was, on average, $1.37{\times}10^{10}dyn{\cdot}sec{\cdot}cm^{-3}{\cdot}cm^{-2}$. The average value of volume flow rate ($Q_N$) through the cross section of sapwood was $0.32cm^3{\cdot}sec^{-1}{\cdot}cm^{-2}$, and the average resistance ($R_{SN}$) was $3.59{\times}10^6dyn{\cdot}sec{\cdot}cm^{-3}{\cdot}cm^{-2}$. The values of K decreased as the diameter of stem increases, which was attributable to variations in the number of vessel per unit area rather than in vessel diameter, and to different resistances in the conducting tissues of each part of the stem. The average value of K measured at breast height was 31% of average value of $K_E$. The $K/K_E$ ratios were 100% in 4 to 6 year-old stems and more than 90% in 7 to 27 year-old stems. The $K/K_E$ ratio decreased as the age of stems increases, and was not more than 20% in near-ground parts of stem.

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Effects or air current speeds on the growth or eggplant plug seedlings in a wind tunnel under artificial lighting (인공광하의 풍동내에서 기류속도가 가지 플러그묘의 생장에 미치는 영향)

  • 김용현
    • Journal of Bio-Environment Control
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    • v.7 no.1
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    • pp.9-14
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    • 1998
  • Air current speeds were controlled of 0.3, 0.5, 0.7 and 0.9 m.s$^{-1}$ to investigate the effects of air current speeds on the growth of eggplant plug seedlings (Solanum melongena L.) in a wind tunnel under artificial lighting. Growth of plug seedlings was influenced by the magnitude of air current speed and the traveling distance of regulated air flow. Stem length. ratio of length to diameter in stem, plant height .and number of leaves of plug seedlings decreased with the increasing air current speed and were significantly different at 5% level. Net photosynthetic rates of plug stand increased with the increasing air current speed and took a maximum value at the air current speed of 0.7~09 m.s$^{-1}$ . Stem diameter decreased and leaf area increased with the traveling distance of regulated air flow. Fresh weight and T/R ratio of dried weight were not influenced by the air current speed. Optimum control for microclimates inside the plug stand is needed to produce the uniform growth and high quality of plug seedlings in a semi-closed plant Production system under artificial lighting.

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Variation of the Drag Force Acting on Vegetation Model Elements (식생 모형 요소를 이용한 항력 변화 검토)

  • Rhee, Dong-Sop;Lee, Du-Han
    • Proceedings of the Korea Water Resources Association Conference
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    • 2012.05a
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    • pp.665-665
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    • 2012
  • 식생의 물리적 특성에 따라 조도의 관점에서 식생이 흐름에 미치는 영향도 많이 달라지게 된다. 일반적인 식생 조도 실험은 초본류를 대상으로 하고 있지만, 초본류 식생은 매우 유연하기 때문에 단일 개채가 흐름에 미치는 영향을 정량적으로 파악하는 것이 매우 힘들다. 따라서 단일 개체에 의한 조도 특성 보다는 식생군에 의한 조도계수 변화 특성을 알아내는 것이 보통 중요해진다. 하지만 조도의 관점에서 초본류와 달리 목본류는 삭생의 강성이 매우 크기 때문에 식생군의 군집으로서 특징보다는 개별 식생의 형상이 큰 역할을 수행하게 된다. 일반적으로 목본류는 수심에 따라 흐름에 영향을 주는 생체량(biosmass)이 수심에 따라 변화하지만, 줄기(trunk)의 경우 수심에 따라 생체량의 변화가 거의 없으며, 줄기의 강성 및 단면 모양이 큰 역할을 하게 된다. 또한 목본류는 실험 수로에 고밀도의 수목군을 형성하여 실험을 수행하는 것이 쉽지 않으므로 개별 식생이나 소규모 군체에 대하여 항력을 측정하여 조도를 평가하는 것이 일반적이다. 따라서 본 연구에서는 목본류의 줄기 부분이 흐름에 미치는 영향을 파악하기 위한 기초 연구로서 원기둥이나 사각기둥과 같은 식생 모형 요소를 이용하여 식생 줄기를 구현하였고, 식생 형상 및 식생 직경 등을 달리하여 침수 조건 변화에 따른 항력 변화 특성을 검토하였다.

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