• 제목/요약/키워드: Yongcheon Cave

검색결과 3건 처리시간 0.017초

지구물리 탐사에 의해 발견된 제주도 용암동굴의 특징과 의미 (Characteristics and Implications of Lava Tubes from Geophysical Exploration in Jeju Island)

  • 전용문;기진석;고수연;김련;류춘길
    • 지질공학
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    • 제25권4호
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    • pp.473-484
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    • 2015
  • 제주도에서 기존에 알려진 동굴 이외에 새로운 지하동굴의 존재를 확인하기 위해 제주시 구좌읍 일대에서 지구물리탐사(전기비저항탐사, GPR탐사, ZHF탐사)를 실시하였다. 탐사결과 여러 지점에서 동굴로 추정되는 이상대가 발견되었고, 이상대의 위치와 규모가 일치하는 27개 지점을 선별하여 시추조사를 실시하였다. 그러나 예상과 달리 이상대의 대부분은 용암의 상하부에 형성된 클링커층이거나 용암 사이에 협재된 고토양층이었으며, 5곳에서만 동굴이 발견되었다. 클링커층과 고토양층은 용암과 다른 암석의 물리적 특징으로 인해 이상체로 반응한 것으로 해석된다. 한편 동굴이 확인된 5개 지점 중 2공은 기존에 알려진 용천동굴을 관통하였고, 3공에서 새로운 동굴이 확인되었다. 용천동굴을 관통한 시추공은 시추당시 동굴의 존재가 확인되지 않았던 구간이었으나 용천동굴이 관통됨에 따라 기존 측량도의 오류를 수정하였다. 한편 시추조사로 새롭게 발견된 석회장식 용암동굴은 길이가 약 180 m이며, 상류방향으로 당처물동굴(약 110 m)과 연결되어 있다. 또한 동굴내부에는 용암곡석, 용암제방, 밧줄구조 등이 발달해 있으며, 탄산염 동굴생성물로는 종유관, 종유석, 석순, 석주, 동굴산호 등이 잘 보존되어 있다. 특히 동굴에서 발견되는 탄산염 동굴생성물은 식물 뿌리를 따라 유입된 지표수에 의해 성장하여 독특한 형태를 띠게 된 것으로 추정된다.

제주도 용천동굴 석순(YC-2)에 기록되어 있는 한반도의 소빙하기 (Little Ice Age recorded in the YC-2 stalagmite of the Yongcheon Cave, Jeju Island (South Korea))

  • 지효선;우경식;양동윤
    • 대기
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    • 제20권3호
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    • pp.261-271
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    • 2010
  • Carbon isotopic compositions of the YC-2 stalagmite in Yongcheon Cave were analyzed to delineate paleoclimatic variations near Korean peninsula for the past historical period. The YC-2 stalagmite is about 68 mm long and annual growth laminae are distinctively identified. Because the number of growth laminae is at least 242, the stalagmite can be estimated to be at least 241 years old. At about 15 mm from the bottom, one thick brown growth lamina is observed, and this lamina was likely to have been formed when the stalagmite ceased to grow, making the hiatus. High resolution, carbon isotope data indicate past fluctuations of East Asia monsoonal intensity (intimately related to the amount of precipitation). Based on the carbon isotope trend, the stalagmite can be divided into three stages (Stages I, II and III). The highest carbon isotopic compositions of Stage I (${\delta}^{13}C$=-3.3~0.4‰, PDB) indicate that the stalagmite grew during the Little Ice Age when cold and dry climate prevailed with less vegetation. Stage II is characterized by a transitional period from cold and dry to warm and wet climate with a increasing trend of carbon isotopic compositions (${\delta}^{13}C$=-9.6~-0.6‰) and this period indicates the weakening of the Little Ice Age climate. This decreasing trend also suggests that Little Ice Age was terminated near middle 1870's around Korean peninsula. Relatively low carbon isotopic compositions during Stage III (${\delta}^{13}C$=-11.0~-8.0‰) indicates that the climate was changed to warm and wet conditions which are similar to the present.

Yellow-colored mats in Jeju Island lava tubes

  • Kim, Jong-Shik;Kim, Dae-Shin;Lee, Keun Chul;Kim, Yong-Hwan;Ahn, Ung-San;Lee, Mi-Kyung;Lee, Jung-Sook
    • 한국응용과학기술학회지
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    • 제36권4호
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    • pp.1338-1348
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    • 2019
  • The Geomunoreum Lava Tube System, declared as a UNESCO World Heritage Site, has a unique natural ecosystem. The information available about this ecosystem, which contains lava caves with secondary carbonate speleothems, is sparse. Hence, extensive research is warranted for establishing a conservation standard. We commenced microbial research on the system and have been studying the microorganisms coating the lava tube wall to acquire fundamental information for understanding the lava cave ecology of Jeju Island. Samples were collected from yellow-colored walls in six caves that are part of the system-the Bengdwi, Utsanjeon, Bukoreum, Manjang, Gimnyeong, and Yongcheon caves. This study focused on yellow walls as it is the most easily distinguished color. According to previous studies, the color of cave walls is attributed to microorganisms or their components. To determine whether the yellow mats from the Jeju lava tube walls are caused by microorganisms, we examined samples at the microscopic scale, by staining mats and analyzing bacterial isolates from glitter particles. As a result, we found that the yellow walls of lava tubes are comprised of microbial mats.