• Title/Summary/Keyword: pinus densiflora forma erecta Uyeki

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Biomass Production of Pinus densiflora forma erecta Uyeki by Planting Density and Its Allocation Chracteristics (식재밀도에 따른 강송의 Biomass 생산 및 배분 특성)

  • 이돈구;권기철;김영환
    • Journal of Korea Foresty Energy
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    • v.18 no.1
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    • pp.6-10
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    • 1999
  • This study was conducted to examine biomass production and its allocation characteristics by the planting density for 12- year - old Pinus densiflora forma erecta Uyeki plantation located in Chilbo Experimental Forest of Seoul National University in Suwon, Kyonggj-do. Different sample trees were selected for harvest by the planting density as follows; six trees from 1.0m X 1.0m, five trees from 1.8m X 1.8m, four trees from 3.0m X 3.0m. Stem, previous year branches, current year branches, previous year needles and current year needles were weighed respectively with the stratified clipping method, and biomass production and its allocation characteristics were analyzed : (1) Total biomass of the above-ground was the highest at the planting density of 1.8m X l.8m and followed by 1.0m X l.0m. (2) The higher the planting density was, the lower the ratio of biomass in branches and needles. (3) As the planting density decreased, the moisture contents of stem and current year branches increased but those of needles and previous year branches decreased. (4) Maximum photosynthetic layer appeared in the upper portion of the tree at higher density plantation.

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A Study on The Mechanical Properties of Korean Red Pine (Geumgangsong, Pinus densiflora forma erecta Uyeki) (금강송의 기계적 성질에 관한 연구)

  • Kim, Dong-Woo;Hwang, Sung-Wook;Lee, Won-Hee
    • Journal of the Korean Wood Science and Technology
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    • v.42 no.1
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    • pp.58-67
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    • 2014
  • We investigated the mechanical properties of Korean red pine (Geumgangsong, Pinus densiflora forma erecta Uyeki) of Uljin province in Korea as a basic research to investigated the material properties. Compressive strength of Korean red pine was $36.2N/mm^2$, which was slightly lower than the pine (Pinus densiflora S. et Z.) in Korea. The compressive strength of Korean red pine showed the maximum value at a distance of 60 mm from the pith. Bending strength of Korean red pine was $76.5N/mm^2$, which was slightly higher than the pine (Pinus densiflora S. et. Z.) and nut pine (Pinus koraiensis) in Korea. Similar to the compressive strength, bending strength of Korean red pine showed the maximum value at a distance of 60 mm from the pith. On the other hand, the shearing strength showed the maximum value at part of including the pith. This result does not coincide with the results of compressive and bending strength, in consideration of the specific gravity, which is consistent. Surface hardness of Korean red pine was $43.7N/mm^2$ in cross section, $12.0N/mm^2$ in radial section and $13.7N/mm^2$ in tangential section respectively. The mechanical properties of Korean red pine were similar to the pine and nut pine having a similar specific gravity. The mechanical properties were greatly affected on the specific gravity than the annual ring width.

Property of Uljin-Geumgangsong Wood (Pinus densiflora forma erecta Uyeki): Appearance Pattern of Resin Canal and Ray (울진 금강송재의 재질: 수지구 및 방사조직의 출현형태)

  • Kim, Dong-Woo;Hwang, Sung-Wook;Lee, Won-Hee
    • Journal of the Korean Wood Science and Technology
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    • v.42 no.1
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    • pp.78-87
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    • 2014
  • It was examined the key criterion of the time of property revelation as Uljin-Geumgangsong wood. For this purpose, we investigated in physical properties in pine wood (Pinus densiflora Sieb. et Zucc.) and representative Uljin-Geumgangsong wood (Pinus densiflora forma erecta Uyeki). The results are as follows; Air-dry density of Uljin-Geumgangsong wood have higher values over about 20 percent than that of pine wood. And also heartwood rate of Uljin-Geumgansong wood have higher values above 70 percent. The number of vertical resin canals per $1mm^2$ in Uljin-Geumgangsong wood was 40 percent greater than in pine wood. As the average diameters of axial resin canals were 67.8 mm and 67.3~69.9 mm in pine wood and in Uljin-Geumgangsong wood, respectively, there was no significant difference among wood species. There tends to be an increase in diameters as annual rings increase. The number of horizontal resin canals in Uljin-Geumgangsong-1 was approximately 55 percent greater than in pine wood and Uljin-Geumgangsong-2. The number of resin canals in pine wood and Uljin-Geumgangson-2 decreased while it increased in Uljin-Geumgangsong-1 as annual rings increased. No significant difference was found in the number of rays among wood species and between earlywood and latewood of same wood species. As annual rings increased the number of rays decreased in both pine wood and Uljin-Geumgangsong. The heights of rays were greater in pine wood than Uljin-Geumgangsong and no difference was found between earlywood and latewood. In conclusion, rings of tree for the time of property revelation as Uljin-Geumgangsong wood is assumed about more than 150 years.