• 제목/요약/키워드: karstic cave

검색결과 4건 처리시간 0.016초

Investigation of possible causes of sinkhole incident at the Zonguldak Coal Basin, Turkey

  • Genis, Melih;Akcin, Hakan;Aydan, Omer;Bacak, Gurkan
    • Geomechanics and Engineering
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    • 제16권2호
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    • pp.177-185
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    • 2018
  • The subsidence mechanism of ground surface is a complex phenomenon when multiple seam coal mining operations are carried out. Particularly, the coal mining beneath karstic formations causes a very special form of subsidence. The subsidence causes elasto-plastic deformation of the karstic layers and the collapse of cavities leads to dolinization and/or sinkhole formation. In this study, a sinkhole with a depth of 90 m and a width of 25 m formed in Gelik district within the coal-basin of Zonguldak (NW, Turkey) induced by multiple seam coal mining operations in the past has been presented as a case-history together with two-dimensional numerical simulations and InSAR monitoring. The computational results proved that the sinkhole was formed as a result of severe yielding in the close vicinity of the faults in contact with karstic formation due to multiple seam longwall mining at different levels.

Age Dating and Paleoenvironmental Changes of the Kunang Cave Paleolithic Site

  • Yum, Jong-Kwon;Lee, Yung-Jo;Kim, Jong-Chan;Kim, In-Chul;Kim, Ju-Yong
    • 한국제4기학회지
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    • 제17권2호
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    • pp.145-148
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    • 2003
  • The Kunang cave paleolithic site is located at Tanyang [$N37^{\circ}2'$, $128^{\circ}21'E$], Chungbuk Province, which is in the Central part of the Korean peninsula. The cave is developed at 312 amsl in a karstic mountainous area. The South Han River flows across this region and other caves can also be found near the river. The site was discovered in 1986 and excavated 3 times by the Chungbuk National University Museum until now. The cave was wellpreserved from modem human activities until the first discovery. The full length of the cave is estimated to be ca. 140 m. However, a spacious part up to 11 m from the entrance has been excavated. Eight lithological units are divided over the vertical profile at a depth of 5 m. Each unit is deposited in ascending order as follow: mud layer (Unit 9), lower complex (Unit 8) which is composed of angular blocks and fragments with a muddy matrix, lower travertine layer (Unit 7; flowstone), middle complex (Unit 6; cultural layer) which is composed of fragments with a muddy matrix, middle travertine layer (Unit 5; flowstone), yellowish muddy layer (Unit 4), upper complex (Unit 3; cultural layer) which has a similar composition to Unit 8. the upper travertine layer (Unit 2; flowstone), and finally surface soil layer (Unit 1). The most abundant vestiges in the cultural layers are the animal bones. They are small fractured pieces and mostly less than 3 cm in length. About 3,800 bone pieces from 25 animal species have been collected so far, 90 percent of them belonging to young deers. Previous archaeological study of these bone pieces shows thatprehistoric people occupied the cavenot for permanent dwelling but for temporary shelter during their seasonal hunting activity. More extensive studies of these bones together with pollen analysis are in progress to reconstruct the paleoenvironment of this cave. Only a single date (12,500 BP) obtained from a U-Th measurement of the upper travertine layer was previously available. In spite of the importance of the cave stratigraphy, there was no detail chronological investigation to establish the depositional process of the cultural layers and to understand the periodic structure of the cave strata, alternating travertine floor and complex layers. We have measured five 14C age dating (38900+/-1000, 36400+/-900, 40600+/-1600, more than 51000 and 52000 14C BP) using Seoul National University 14C AMS facility, conducted systematic process of the collagen extraction from bone fragments samples. From the result, we estimate that sedimentation rate of the cave earth is constant, and that the travertine layers, Unit 2 and Unit 3, was formed during MIS 5a(ca. 80 kBP) and MIS 5c (ca. 100 kBP) respectively. The Kunang Cave site is located at Yochonli of the region of Danyang in the mid-eastern part of Korea. This region is compased of limestones in which many caves were found and the Nam-han river flows meanderingly. The excavations were carried out three times in 1986, 1988, and 1998.

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Phylogenetic Diversity of Bacteria in an Earth-Cave in Guizhou Province, Southwest of China

  • Zhou, Jun-Pei;Gu, Ying-Qi;Zou, Chang-Song;Mo, Ming-He
    • Journal of Microbiology
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    • 제45권2호
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    • pp.105-112
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    • 2007
  • The objective of this study was to analyze the phylogenetic composition of bacterial community in the soil of an earth-cave (Niu Cave) using a culture-independent molecular approach. 16S rRNA genes were amplified directly from soil DNA with universally conserved and Bacteria-specific rRNA gene primers and cloned. The clone library was screened by restriction fragment length polymorphism (RFLP), and representative rRNA gene sequences were determined. A total of 115 bacterial sequence types were found in 190 analyzed clones. Phylogenetic sequence analyses revealed novel 16S rRNA gene sequence types and a high diversity of putative bacterial community. Members of these bacteria included Proteobacteria (42.6%), Acidobacteria (18.6%), Planctomycetes (9.0 %), Chloroflexi (Green nonsulfur bacteria, 7.5%), Bacteroidetes (2.1%), Gemmatimonadetes (2.7%), Nitrospirae (8.0%), Actinobacteria (High G+C Gram-positive bacteria, 6.4%) and candidate divisions (including the OP3, GN08, and SBR1093, 3.2%). Thirty-five clones were affiliated with bacteria that were related to nitrogen, sulfur, iron or manganese cycles. The comparison of the present data with the data obtained previously from caves based on 16S rRNA gene analysis revealed similarities in the bacterial community components, especially in the high abundance of Proteobacteria and Acidobacteria. Furthermore, this study provided the novel evidence for presence of Gemmatimonadetes, Nitrosomonadales, Oceanospirillales, and Rubrobacterales in a karstic hypogean environment.

석회암 분포지에서 터널시공에 따른 지표침하 원인 분석 (Ground Subsidence Caused by the Development of Underground Karstic Networks in Limestone Terrain, Taebag City Korea)

  • 이병주;박성욱;김대홍;송영갑
    • 지질공학
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    • 제26권1호
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    • pp.63-70
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    • 2016
  • 연구지역은 고생대 지층인 석회암류과 석회암층 사이에 셰일층이 협재하고 이 석회암 상부에 사암 및 탄질셰일층이 분포 한다. 이 퇴적암들의 층리는 서북서 방향의 주향에 북동방향으로 경사지고 있으며 절리들은 경사각이 75도 이상이고 주향은 여러 방향으로 발달한다. 이 지역에는 층리방향과 거의 평행한 파쇄대들은 대규모로 발달하며 이들 파쇄대는 지하 깊이까지 연장되고 있다. 급격한 지하수위의 변화는 5월에 일차 그리고 6월초와 6월 중순에 2차 약 1달 사이 총 3차례의 -4 m에서 시작하여 최대 -15 m까지 하강과 회복을 반복하였으며 이는 지표의 강수량과는 무관함이 확인되었다. 이에 따라 지표침하의 원인은 석회암 내 풍화대와 연결된 터널 심도까지 발달하는 파쇄대와 석회암과 셰일, 석회암과 사암 및 탄질셰일과의 경계부에 발달하는 파쇄대들에서 터널 시공 시 하루에 1000톤 이상의 지하수가 용출되며 지하수위의 급격한 강하와 이에 따라 지하수의 급격한 하강 시 지반에 흡입력을 증가하면서 지표에 침하가 일어난 것으로 해석된다.