• Title/Summary/Keyword: Type of tree

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A study on the Art Style of Sacred Tree - Focusing on the Assyrian Style Tree Pattern - (성수문(聖樹文)에 대(對)한 연구(硏究) - 앗시리아식(式) 수목중심문양(樹木中心文樣)을 중심(中心)으로 -)

  • Kim, Moon-Ja
    • Journal of Fashion Business
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    • v.5 no.3
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    • pp.63-71
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    • 2001
  • The symbol of the sacred tree represents the world tree. They were influenced by Tree worship in Northern mounted nomadic groups, and the first is quite obvious, that the sacred tree is a palm tree. The Assyrian sacred tree possesses characteristics, making the tree iconographic and rather artificial. The tree typically has a thin trunk arranged in two or three tiers. Each tier is separated by horizontal plates or bands. The top of the tree is crowned with a palmette form. Wavy streamers emanate from the tree abd terminate in palmettes in a criss cross fashion. The central trunk is topped with a palmette and surrounded the trunk with palmettes emphasizing a link to date trees. The number of branches on the tree is limited, and there are usually seven, fifteen or thirty branches. The connection of these numbers with those of the week, and of the lunar wax and wane is so obvious. The branches on the tree may have indeed represented a calender of some sort. Mainly based on the excavated tomb articles of the three kingdoms and referred to Chinese and Japanese ones, Sacred Tree pattern showed that was lightly influenced by the times and area, but was slowly changed and developed to different types through those each ages generally. The Sacred Tree type was three part in according to the wavy streamers emanate from the tree abd, Sacred tree type I, Sacred tree type II, Sacred tree type III[the Mountain(; 山)-typed piled up Sacred Tree].

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Study on the tree-mimic array of solar cell modules (수목형상에 따른 태양전지 모듈의 배열 연구)

  • Kim, Ki-Hyun;Yun, Rin
    • Journal of the Korean Solar Energy Society
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    • v.31 no.6
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    • pp.32-39
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    • 2011
  • This study is about the installation of the solar cell modules. The solar cell modules are built by the tree-mimic structure, and the performance is compared with that of the flat-plate type solar cell module installation. The mathematical tree model, which was suggested by Fisher and Honda, is utilized to determine the location of the solar cell modules for the tree-mimic type. The experiment shows that the generated electric power of the flat-plate type is higher than that of the tree-mimic type by 30% for one month of July. This lower performance for the tree-mimic type comes from the shading effects among the solar cell modules. The theoretical calculation for the absorbed solar radiation on the two types of solar cell installation shows that the tree-mimic type is higher than the flat-plate type by 8.5%. The shading area for the tree-mimic model is calculated with time by using the 3D-CAD, which will be utilized for the optimization of the tree-mimic model in the future.

Internal PD Pulses Analysis Accompanying with Bush-type Tree in Solid Dielectrics (고체유전체에서 발생한 부시형 전기트리에 수반된 내부 부분방전 펄스 해석)

  • 강성화;홍현문;류부형
    • Journal of the Korean Society of Safety
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    • v.15 no.1
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    • pp.100-105
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    • 2000
  • Correlation between propagation of bush-type electrical tree and internal partial discharges(PD) was discussed. We used specimens with needle-plane electrode system made of LDPE(Low Density Polyethylene), observed inception and propagation of electrical tree by optical microscope interfaced with computer and investigated characteristics of phase resolved PD pulses accompanying with propagation of electrical tree. Electrical tree generally growed bush-type tree. PD data detected and analyzed were average discharge current and statistical operator of q-n, $\psi$- $q_{avg}$, $\psi$-n, ${\psi}-q_{max}$ distribution. Parameters used were skewness, kurtosis, average discharge phase, cross-correlation factor, asymmetry and etc. In generally, average discharge current had good linear relationship with propagation of bush type electrical tree on this experiment. Peak discharge magnitude and repetition rate were increased, but they had not good linear relationship.p.

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The Grassland Type in Korea (한국의 초지형)

  • 박봉규
    • Journal of Plant Biology
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    • v.9 no.3_4
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    • pp.7-13
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    • 1966
  • The investigation on the grassland type was conducted by the data in the previous these (Park 1963, '64, '65, '66). The results obtained are as follows; 1) I defined that the relationship between the valves of DS and the main species of the grass in Korea(Table Ⅰ) Grassland Stage ; Waste type………6 community-types Short grass type………3 community-types Pteridium type………1 community-types Tall grass type………4 community-types Sasamorpha type………1 community-types Shrubby Stage; Lespedeza type Pioneer tree type………6 species Forest Stage; Deciduous broad leave tree type………6 species Evergreen broad leaved tree type………3 species Evergreen needle leaved tree type………7 species 2) I defined; that the relationship between the valves of DS and the grassland type in Korea(Table 2). Of grassnland type, the range of valves of DS, 50-220 belongs to waste type; 130-310 short grass type; 230-640 tall grass type; 210-450 pteridium type; 510-970 sasamorpha type; 730-1450 shrubby type; 3) I decided; The succession stage centering on the Sasamorpha purpuracens in Korea(Table 3). 4) I decided the climate type and the grassland succession in Korea(Table 4).

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Fractal Analysis of Electrical Tree Patterns Occurred in XLPE (XLPE에서 발생하는 전기트리 패턴의 프렉탈 분석)

  • Kim, Duck-Keun;Lim, Jang-Seob;Lee, Jin;Chun, Ki-O;Kim, Tae-Sung
    • Proceedings of the KIEE Conference
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    • 1999.07e
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    • pp.2060-2062
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    • 1999
  • When the high voltage is applied on insulation materials that have voids and impurities inner one, then probability of electrical tree inception is increased at defects. Electrical tree gives a profit to degradation analysis, because it is possible to observe by eyes and provides electrical degradation step. And electrical tree is divided to three types in usual - tree type, bush type and chestnut type tree. But these three types are divided not by method of quantitative analysis but visual and experiential analysis. In this paper, three types of electrical tree were calculated by quantitative analysis using fractal mathematics and classified to fractal dimensions (FD). FD of tree types are 1.1$\sim$1.4, bush types are 1.4$\sim$1.6 and chestnut type trees have above 1.6 FD.

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Sensitivity Analysis on the Non-tree Solution of the Minimum Cost Flow Problem (최소비용문제의 비정점 최적해에 대한 감도분석)

  • 정호연;박순달
    • Journal of the Korean Operations Research and Management Science Society
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    • v.20 no.1
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    • pp.1-10
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    • 1995
  • The purpose of this paper is to develop a method of the sensitivity analysis that can be applied to a non-tree solution of the minimum cost flow problem. First, we introduce two types of sensitivity analysis. A sensitivity analysis of Type 1a is the well known method applicable to a tree solution. However this method can not be applied to a non-tree solution. So we propose a sensitivity analysis of Type 2 that keeps solutions of upper bounds at upper bounds, those of lower bounds at lower bounds, and those of intermediate values at intermediate values. For the cost coefficient we present a method that the sensitivity analysis of Type 2 is solved by finding the shortest path. Besides we also show that the results of Type 2 and Type 1 are the same in a spanning tree solution. For the right-hand side constant or the capacity, the sensitivity analysis of Type 2 is solved by a simple calculation using arcs with intermediate values.

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Dependence of needle tip Curvature of the Inception Stress and Propagation of electrical tree (침전극의 곡율반경에 따른 트리개시전계 및 트리진전 특성)

  • 박영국;김완수;이홍규;이용희;임기조
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1999.11a
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    • pp.59-62
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    • 1999
  • Inception and propagation of electrical tree and properties of Partial discharge(PD) pulses accompanying with tree as a function of needle tip radius in low density polyethylene were discussed. To study on these characteristics in different tip radius, we used specimens with needle-plane electrode system made of LDPE, observed inception and propagation of electrical tree by optical microscope with computer and investigated the characteristics of the phase resolved PD pulses accompanying with propagation of electrical tree. The PD quantities detected and analysed were PD magnitude, mean phase angle, average discharge, and the statistical characteristics of the PD pulses. As the tip radius ${\gamma}$ increases, tree inception stress E$\sub$i/ converges to constance value. This result suggests that tree inception stress E$\sub$i/ increases due to stress relaxation when the tip radius is small. Branch-type electrical tree was formed When E$\sub$i/ is 640-750[kV/mm]. bush-type electrical tree when E$\sub$i/ is 370∼400[kV/mm], branch-like electrical tree when E$\sub$i/ is 370-400[kV/mm].

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A Presentation on the Manual Hydraulic Calculation Method of the Loop Type Fire Sprinkler System (Loop형 스프링클러 설비의 수리계산 방법에 대한 제시)

  • Jeong, Keesin
    • Fire Science and Engineering
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    • v.29 no.1
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    • pp.73-79
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    • 2015
  • There are three kinds of design method of the fire sprinkler systems. Grid type is connected all branch as a trapezoid. Loop type is connected cross-mains like circle. The last one is a tree type most commonly used. Grid type needs computer program to calculate the friction loss and flow rate apart from very simple form. In loop type, manual calculation is possible. Design engineer can draw up and calculate the demands without computer program. Because water supplies two direction in loop type, friction loss is smaller than tree type. Water distribution in operation area is uniform because of the small differences of sprinklers discharge pressure. Loop type is superior to tree type in respect of total pressure and flow rate. Using the small diameter pipe, the labor and construction cost will be decreased in the end. Loop type sprinkler design is rarely laid out because design engineers don't know the method. This paper is intended to inform that the loop type is better than the tree type in performance and economic point of view. And also this paper intend to use the loop type easily and widely.

A Study on Prediction of Treeting Breakdown in XLPE Cable According to Method of Acoustic Emission Detection (음향방출 계측법에 따른 가교폴리에틸렌 케이블의 트리잉 파괴 예지에 관한 연구)

  • 김재환;박재준
    • The Proceedings of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.7 no.4
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    • pp.26-33
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    • 1993
  • The acoustic emission automatic detection system is developed to observe tree deterioration phenomena. Applying an alternating voltage of 15(kVnns) toXLPE tree specimens, many pulses of small amplitude are detected when the bush type tree developes branch type and a few pulses of high amplitude prcxluced as branch type propagated to bush type tree. Therefore, it is known that pulses having small amplitude operates as a destructive factor. It is observed that the skewness of the amplitude and the number of average pulses as distribution tendency of three dimension are characteristic quantity of AE pulses. As the trajectory of skewness is farther from the origin on the S-plane, it is more likely to breakdown.

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Sensitivity Analysis on the Degenerate Tree Solution of the Minimum Cost Flow Problem (최소비용문제의 퇴화 정점 최적해에 대한 감도분석)

  • Chung, Ho-Yeon;Park, Soon-Dal
    • IE interfaces
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    • v.7 no.3
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    • pp.193-199
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    • 1994
  • The purpose of this paper is to develop a method of the sensitivity analysis that can be applicable to a degenerate tree solution of the minimum cost flow problem. First, we introduce two types of sensitivity analysis. A sensitivity analysis of Type 1 is the well known method applicable to a spanning tree solution. However, this method have some difficulties in case of being applied to a degenerate tree solution. So we propose a sensitivity analysis of Type 2 that keeps solutions of upper bounds remaining at upper bounds, those of lower bounds at lower bounds, and those of intermediate values at intermediate values. For the cost coefficient, we present a method that the sensitivity analysis of Type 2 is solved by using the method of a sensitivity analysis of Type 1. Besides we also show that the results of sensitivity analysis of Type 2 are union set of those of Type 1 sensitivity analysis. For the right-hand side constant or the capacity, we present a simple method for the sensitivity analysis of Type 2 which uses arcs with intermediate values.

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