• 제목/요약/키워드: mountain soil

검색결과 412건 처리시간 0.028초

황폐임야(荒廢林野)가 수해참상(水害慘狀)에 미치는 영향(影響) (천보산(天寶山)과 인접(隣接) 죽엽산(竹葉山)을 중심(中心)으로) (Influences of the devastated forest lands on flood damages (Observed at Chonbo and the neighbouring Mt. Jook-yop area))

  • 정인구
    • 한국산림과학회지
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    • 제5권1호
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    • pp.4-9
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    • 1966
  • 1. On 13 September 1964 a storm raged for 3 hours and 20 minutes with pounding heavy rainfalls, and precipitation of 287.5 mm was recorded on that day. The numerous landslides were occured in the eroded forest land neighbouring Mt. Chunbo, while no landslides recorde at all on Mt. Jookyup within the premise of Kwangnung Experiment Station, the Forest Experiment Station. 2. Small-scalled Landslides were occured in 43 different places of watershed area (21.97 ha.) in which the survey had already been done, in and around Mt. Chunbo (378 m a.s.l.). The accumulated soil amount totaled $2,146,56m^3$ due to the above mentioned landslides, while soil accumulated from riverside erosion has reached to $24,168.79m^3$, consisting of soils, stones, and pebbles. However, no landslides were reported in the Mt. Jook yup area because of dense forest covers. The ratio of the eroded soil amount accumulated from the riversides to that of watershed area was 1 to 25. On the other hand, the loss and damage in the research area of Mt. Chonbo are as follows: 28 houses completly destroyed or missing 7 houses partially destroyed 51 men were dead 5 missing, and 57 wounded. It was a terrible human disaster However, no human casualties were recorded at all, 1 house-completly destroyed and missing, 2 houses-partially destroyed. Total:3 houses were destroyed or damaged, in The area of Mt. Jookyup 3. In the calculation of the quanty of accumulated soil, the or mula of "V=1/3h ($a+{\sqrt{ab}}+b$)" was used and it showed that 24, 168.79m of soil, sands, stones and pebbles carried away. 4. Average slope of the stream stood 15 at the time of accident and well found that there was a correlation between the 87% of cross-area sufferd valley erosion and the length of eroded valley, after a study on regression and correlation of the length and cross-area. In other works, the soil erosion was and severe as we approached to the down-stream, counting at a place of average ($15^{\circ}1^{\prime}$) and below. We might draw a correlation such as "Y=ax-b" in terms of the length and cross-area of the eroded valley. 5. Sites of char-coal pits were found in the upper part of the desert-like Mt. Chunbo and a professional opinion shows that the mountain was once covered by the oak three species. Furthermore, we found that the soil of both mountains have been kept the same soil system according to a research of the soil cross-area. In other words, we can draw out the fact that, originally, the forest type and soil type of both Mt. Chunbo (378m) and Mt. Jookyup (610m) have been and are the same. However, Mt. Chunbo has been much more devastated than Mt. Jookyup, and carried away its soil nutrition to the extent that the ratios of N. $P_2O_5K_2O$ and Humus C.E.C between these two mountains are 1:10;1:5 respectively. 6. Mt. Chunbo has been mostly eroded for the past 30 years, and it consists of gravels of 2mm or larger size in the upper part of the mountain, while in the lower foot part, the sandy loam was formulated due to the fact that the gluey soil has been carried and accumulated. On the hand, Mt. Jookyup has consitantly kept the all the same forest type and sandy loam of brown colour both in the upper and lower parts. 7. As for the capability of absorbing and saturating maximum humidity by the surface soil, the ratios of wet soil to dry soil are 42.8% in the hill side and lower part of the eroded Mt. Chunbo and 28.5% in the upper part. On the contrary, Mt. Jookyup on which the forest type has not been changed, shows that the ratio in 77.4% in the hill-side and 68.2% in the upper part, approximately twice as much humidity as Mt. Chunbo. This proves the fact that the forest lands with dense forest covers are much more capable of maintaining water by wood, vegitation, and an organic material. The strength of dreventing from carring away surface soil is great due to the vigorous network of the root systems. 8. As mentioned above, the devastated forest land cause not only much greater devastation, but also human loss and property damage. We must bear in mind that the eroded forest land has taken the valuable soil, which is the very existance of origin of both human being and all creatures. As for the prescription for preventing erosion of forest land, the trees for furtilization has to be planted in the hill,side with at least reasonable amount of aertilizer, in order to restore the strength of earth soil, while in the lower part, thorough erosion control and reforestation, and establishments along the riversides have to be made, so as to restore the forest type.

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경복궁 아미산의 조영과 조산설(造山說)에 관한 고찰 (Studies on the Construction and the Artificial Mountain Theory of Amisan in the Gyeongbok Palace)

  • 정우진;심우경
    • 한국전통조경학회지
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    • 제30권2호
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    • pp.72-89
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    • 2012
  • 본 연구는 사료 및 도상자료의 분석을 통하여 경복궁 교태전 북쪽의 아미산 화계가 인공산이라는 기존의 주장을 재검토하고 반론을 제기하기 위한 목적으로 수행되었다. 경회지를 판 흙으로 아미산을 조산했다는 논리는 그간 정설로 여겨졌으며, 의심 없이 대부분의 경복궁 관련 논저와 단행본에서 반복되어 기술되고 있다. 본 연구에서는 사료에서 전혀 발견되지 않는 아미산 조산설에 대해 몇 가지 반론을 제기하였는데, 기존 주장에 내재된 논리적 모순, 경회지 축조시기와 교태전 건립 시점의 불일치, 영조와 고종 연간에 제작된 도형사료에서 나타난 백악산과 아미산을 잇는 산줄기의 존재, 아미산 북쪽에 있는 흥복전에서 동쪽 담장을 경계로 높은 위차를 보이고 통행기능이 없다는 점, 중건 당대에 아미산을 풍수적인 아미사(蛾眉砂)로 인식하고 있는 것과 세종 연간에 경복궁 주산논쟁 결과 조치된 경복궁 내맥의 보존에 관한 주장이 그것이다. 아울러 본 연구에서는 교태전 북쪽의 언덕이 아미산으로 불러지게 된 기원과 잘못된 조산설이 등장하게 된 원인을 규명하였는데, 풍수용어 아미사가 음변되어 아미산이 되었다는 것을 밝히고, 중국 사천에 있는 도불(道佛)성지인 아미산을 모방한 의경의 조성과 천연두신을 퇴치하기 위한 벽사적 의미의 아미산 조영관에 의한 것이라고 판단하였다. 또한 아미산 조산설은 천지조산(穿池造山)식 조경법식을 경회지와 아미산에 소급시킨 것으로 보이며, 1980년대를 전후로 주장이 등장하게 된 것으로 조사 되었다. 백악산과 아미산을 잇는 용맥은 일제가 1915년 경복궁에 개최한 대규모 박람회를 기점으로 상당부분 절토되었으나, 교태전 동북쪽에 위치한 탐방로를 따라 낮은 둔덕이 약 70m 가량 이어져 있어 일제 강점기에 이 지맥이 아주 없어진 것은 아니었던 것으로 판단된다. 또한 표고분석 결과 녹산에서 아미산까지 불연속적인 언덕이 일정한 축을 이루는 것이 발견되어 아미산의 용맥을 대략적으로 가늠해 볼 수 있으며, 이러한 아미산 용맥에 관한 기초연구를 통해 향후 경복궁 지형복원의 주요한 단서를 제공하려 하였다.

산록경사지(山麓傾斜地)에 분포(分布)한 토양특성(土壤特性)의 변이분석(變異分析) (Variation of Soil Characteristics in Mountain-foot Slope)

  • 박창서;엄기태;정석재;최선식;박병식
    • 한국토양비료학회지
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    • 제18권3호
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    • pp.254-259
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    • 1985
  • 우리나라의 산록경사지(山麓傾斜地)에 분포(分布)한 토양(土壤)의 단위위치별(單位位置別) 대표단면(代表斷面)의 토양특성(土壤特性)에 대(對)하여 분류단위수준내(分類單位水準內) 변이성(變異性) 및 순수성(純粹性)을 분석(分析)하고, 특정(特定) 신뢰구간(信賴區間)에서 주워진 정도내(精度內)에 요구(要求)되는 표본(標本)크기를 결정(決定)하고자 수행(遂行)한 결과(結果)는 다음과 같다. 1. 입경분포(粒徑分布), pH 및 염기치환용량(鹽基置換容量)의 변이성(變異性)은 낮았으며, 나머지 토양특성(土壤特性)은 변이성(變異性)이 높았음. 2. 대수정규분포(對數正規分布)를 나타내는 토양특성(土壤特性)의 산술평균(算術平均)값이 수정(修正) 되었음. 3. 토양특성(土壤特性)의 변이성(變異性)은 고차분류단위(高次分類單位)일수록 감소(減少) 하였으며, 저변이군(低變異群)의 토양특성(土壤特性)은 고변이군(高變異群)보다 약(約) 3배(倍) 이상(以上) 토양관리(土壤管理)에 의(依)해 영향(影響)을 적게 받았음. 4. 분류단위수준별(分類單位水準別) 순수성(純粹性)은 목(目)이 54.1, 대군(大群) 53.7, 그리고 통(統) 39.7% 이었음. 5. 유의수준(有意水準) 0.05에서 모평균(母平均)의 10, 20% 정도(精度)를 추정(推定)하는데 필요(必要)되는 표본(標本)크기가 결정(決定)되었음.

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서울주변에 분포한 화강암류 풍화토층의 물리적 성질 (Physical properties of granitic weathered soil on natural terrain around Seoul city)

  • 김경수
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2010년도 추계 학술발표회
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    • pp.1122-1129
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    • 2010
  • Various soil tests were performed in the laboratory after soil samples were obtained from natural terrains distributed on the granitic rocks where are located in Mt. Bukhan, Mt. Surak and Mt. Gwanak around Seoul. Through the comparison of soil properties in each mountain, the difference of soil properties in a similar geological condition was investigated. According to the result of soil test, the soils were generally classified into calyey and silty sands with a well grade. Soil densities are ranged from $2.62kg/cm^3$ to $2.67kg/cm^3$, and water contents of soils are ranged from 3.77% to 31.12%. These values are not sorted locally. The wet unit weights of soils are ranged from $1.092kg/cm^3$ to $1.814kg/cm^3$. It has a big difference between the average values because that of Mt. Bukhan is $1.604kg/cm^3$ and those of Mt. Surak and Mt. Gwanak are $1.500kg/cm^3$ and $1.331kg/cm^3$, respectively. The internal friction angles are ranged from $31^{\circ}$ to $39^{\circ}$ and the cohesions are ranged from 1.57kPa to 8.63kPa. The shear strengths are too high and similar in all regions. The coefficients of permeability are ranged from $3.07{\times}10^{-3}cm/sec$ to $4.61{\times}10^{-2}cm/sec$. So, these soils are evaluated as a middle to high permeable ground. On average, the value of Mt. Bukhan is $1.47{\times}10^{-2}cm/sec$ and the values of Mt. Surak and Mt. Kwanak are $1.29{\times}10^{-2}cm/sec$ and $1.66{\times}10^{-2}cm/sec$, respectively.

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토지이용 제한인자를 활용한 농업적 토지이용 적합성 분석 - 경상남도 창녕군 이방면을 대상으로 - (An Analysis of Agricultural Landuse Suitability Using Landuse Limitation Factors - A Case Study of Ibang-myeon, Changnyeong-gun, Kyungsangnam-do -)

  • 장갑수;박인환
    • 환경영향평가
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    • 제15권6호
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    • pp.357-372
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    • 2006
  • The excessive land activities in farming can cause soil erosion, inundation by a flood, and fallow. So far land evaluation has been analyzed using the land use limitation derived from the excessive land activities. This study was done for evaluating the agricultural fields by using 3 land use limitations, inundation potential, soil erodibility potential, and fallow potential. The study area is Ibang-myeon, Changnyeong-gun, Gyeongnam-province, Korea. A logistic regression model was applied to recognize the inundation potential by a flood in the Nakdong river basin. And potential soil erodibility index (PSEI) was derived from USLE model to analyze the soil erodibility potential. And a probability model from a logistic regression model was applied to detect the fallow potential. Therefore, we found 220.7ha for the 4th grade and 86.1ha for the 5th grade was analyzed as water damage potential. Large area near Nakdong river have problem to grow the rice due to the damage by water inundation. And 213.6ha for the 3rd grade and 103.3ha for 4th grade was detected as a result of the analysis of soil erosion potential. The soil erosion potential was high when within-field integrity of soil was not stable, or the kinetic energy was high or the slope length was long due to a steep slope of a specific land. And 869.1ha for 3rd grade, 174.9ha for 4th grade, and 110.6ha for 5th grade was detected to be distributed having the fallow potential. Especially, a village, having a steep mountain, had 249.5ha for the 3rd grade, which was 28.7% of total area showing the 3rd grade. Finally, Three villages, including An-ri, Geonam-ri, Songgok-ri, showed they had largest area of the suitable land in the study area. These villages had similar topographic condition where they were far from Nakdong river, and they had relatively higher elevation and flat lands.

冠岳山의 南斜面과 北斜面의 植被의 比較硏究 (Phytosocioloical Study on the Two Contrasting Aspects with the South and North Slopes in Mt. Kwanak)

  • Kim, Joon Min;Seok Joon Kim
    • The Korean Journal of Ecology
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    • 제8권2호
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    • pp.81-87
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    • 1985
  • The vegetation on the north and south slopes of Kwanak mountain was assessed and recorded during thesummer of 1976. Recordings were made of 5*5m quadrats placed along the transects running parallel to the slopes. On the north slope, most of large trees such as Alnus sibirica, Sorbus alnifolia, Robinia pseudo-acacia and Pinus rigida make the crown and their mean DBH was conspicuously large, while the vegetation of south slope is dominated by dwarf Juniperus utilis, Pinus densiflora, Weigela florida var. glabra which are considered as a resistant species of dry site. The amount of humus, total nitrogen, soil water content and available phosphorous is higher on the north slope than the south one. However, the soil pH is higher on the south slope. It is assumed that the humus content is a main factor to make difference on the type of vegetation between the north and south slope.

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한국산 개미의 분포에 관한 연구(16) - 전라북도의 개미상- (Distribution of Ants(Formicidae) in Korea(16) -Ant Fauna from Chollabukdo-)

  • 최병문
    • 한국토양동물학회지
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    • 제1권1호
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    • pp.5-23
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    • 1996
  • To clarify the ants fauna in Chollabukdo, field survey was carried out for about 10 years from 1986 to 1995. As a result, 1,699 clonies were collected and identified. These clonies were composed of 76 species belonging to the 31 genera of 5 subfamilies. The list of ants in Chollabukdo was prepared with them involving a subfamily, 6 genera and 18 species newly recorded from Chollabukdo. In NSC analysis between areas, zones and clonies respectively, all 16 areas were continuous expect Bangchukdo. In block analysis of ant distribution. 28 species were found only in mountain-zone and 4 species in island-zone. Among 5 subfamilies distributied in Chollabukdo, Myrmicinae is the most abundant, but Cerapacinae is the oppisite. The Lasius of Formicinae is the most abundant genus among 31 genera investigated.

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식생구조에 따른 솔잎흑파리개체군 동태에 관한연구 (Studies on the Population Dynamics of Pine Needle Gall Midge, Thecodiplosis japonensis, by Diversity of Vegetation Structure)

  • Ri, Chong Un
    • The Korean Journal of Ecology
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    • 제6권1호
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    • pp.33-44
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    • 1983
  • Vegetatiion structure and population dynamcis of pine needle gall midge were investigated from 1980 to 1982 at the southern part of Palgong mountain near Daegu. The results of investigation at the areas of A (pure stand), B(30% mixed forest) adn C(60% mixed forest) were as follow; Vegeation of 3 areas were not classified by the species diversity, but by the unequal distribution of Alnus hirsuta, Robinia pseudo-acacia, Lespedeza cyrtobotrya, Quercus variabilis and vitality of Pinus densiflora at the area C was low, due to shadow by broad-leaf trees. Soil environmental factors at 3 areas not characteristic, but the average of humus contents showed high significance and the order was A

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점말동굴 지역의 지형과 지질 (A Geological and Geomorphological Study on Jeomal Cave)

  • 김주환
    • 동굴
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    • 제67호
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    • pp.21-34
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    • 2005
  • 점말동굴은 대부분이 퇴적기원인 석회 암 동굴이다. 토양은 산악지 역, 구릉지, 산록지 등에 다양한 종류의 토양이 분포한다. 동굴의 기본 골격은 주변을 통과하는 단층곡의 일부에 형성되었다. 동굴내의 소규모 수로는 절리의 방향이나 규모에 의해 유도된다. 동굴의 형태와 미지형은 그 지역의 지질구조 및 지하수의 유동과 밀접한 관련이 있다. 동굴내의 점토는 지표로부터 유입되었을 가능성이 크다. 동굴의 성인은 구조적으로 접근하는 것이 필요하다.

산록경사지 토양인 안룡통의 분류 및 생성 (Taxonomical Classification and Genesis of Anryong Series Distributed on Mountain Foot Slope)

  • 송관철;현병근;손연규;장용선;박찬원;장병춘
    • 한국환경농학회지
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    • 제29권1호
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    • pp.27-32
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    • 2010
  • Soil Taxonomy 분류체계 변화에 대응하여 산록경사지에 분포하고 있으며, Alfisols로 분류되고 있는 안룡통을 재분류하고, 그 생성을 구명하기 위하여 안룡통 대표단명의 형태적 특성을 조사하고, Soil Taxonomy의 표준 분석방법인 Soil survey laboratory methods manual에 따라서 토양을 분석하여 Laboratory data sheets를 작성하였다. 안룡통은 0~22 cm 깊이에서 ochric 감식표층을 보유하고, 22~120 cm 깊이에서 점토피막과 같은 점토 이동의 근거를 보유하는 arfillic층을 보유하고있다. 그러나 기준 깊이에서의 염기포화도(양이온 합)가 32.3%로 35% 미만이므로 Alfisols이 아나라 Ultisols로 분류되어야 한다. 안룡통은 udic 토양수분상을 보유하고 있으므로 Udults로 분류할 수 있으며, Hapludults의 분류조건을 충족시키고 있다. 또한 Typic 아군의 분류조건을 충족시키므로 Typic Hapludults로 분류할 수 있다. 토성속 제어부위에서의 토성속이 식양질이고, 토양온도상이 mesic 온도상이기 때문에 안룡통은 Fine loamy, mesic family of Ultic Hapludalfs가 아니라 Fine loamy, mesic family of Typic Hapludults로 분류되어야 한다. 안룡통은 산록경사지에 분포하고 있으면서도 안정한 지형에 분포하고 있으므로 토양이 거의 침식되지 않고 새로운 붕적물이 별로 퇴적되지 않기 때문에 오랫동안 토양수의 하향이동에 따른 점토집적작용과 염기용탈작용을 받았다. 그 결과 점토집적층인 argillic층을 보유하는 토양으로 생성 발달되었다. 또한 Alfisols 과 Ulrisols을 구분하는 가장 기본적인 분류기준인 기준깊이에서의 염기포화도 (양이온 합)가 35% 미만으호서 Alfisols이 아니라 강산성 토양인 Ultisols로 발달하였다.