Characteristics of Velocity and Electrical Resistivity in Gassy Sediments Results of Mudbelt Sediments in the Southeastern Inner Shelf of Korea

가스함유퇴적물에서의 음파전달속도 및 전기비저항 특성: 한국남동해역 이토대 퇴적물의 분석결과

  • Kim, Dae-Choul (Department of Environmental Exploration Engineering, Pukyung National University) ;
  • Park, Soo-Chul (Department of Oceanography, Chungnam National University) ;
  • Seo, Young-Kyo (Korea Inter-University Institute of Ocean Science, Pukyung National University)
  • 김대철 (부경대학교 환경탐사공학과) ;
  • 박수철 (충남대학교 해양학과) ;
  • 서영교 (부경대학교 해양과학공동연구소)
  • Published : 2001.11.30

Abstract

Compressional wave velocity and electrical resistivity of muddy sediments in the southeastern inner shelf of Korea were studied using nine piston core samples. The acoustic and physical properties were measured with 10 cm depth interval. Sediment structures were examined by x-radiographs of the cored sediments. Subbottom profiles were obtained by a high-resolution acoustic subbottom profiler. Acoustic turbid layers are clearly seen on the profiles, and x-radiographs of the sediments showed degassying structures formed by gas escaping. On the basis of x-radiographic images, velocities, electrical resistivities and physical properties, the sediments are divided into gassy and non-gassy sediments. The presence of gas and degassying structures result in a marked variation in velocity and electrical resistivity. It can be concluded that velocity and electrical resistivity arep arameter to recognize gassy sediment. The velocity is important parameter to indicate gassy sediment.

한국 남동해역 내대륙붕 음향혼탁층이 잘 발달된 이토대(mudbelt) 퇴적물의 음파전달속도와 전기비저항에 대해연구하기 위하여 총 9개 정점에서 피스톤시추기를 이용하여 해저퇴적물을 채취하였다. 각 코어별 10 cm 깊이로 퇴적물의 음파전달속도, 전기비저항, 공극율 및 전밀도를 측정하였고 연엑스선 촬영을 통해 퇴적구조를 관찰하였다. 연구지역의 해저지층은 고해상도 해저지층탐사기를 이용하여 조사하였다. 고해상도 해저지층탐사결과 음향혼탁층의 분포를 알 수 있었으며,코어시료의 연엑스선분석 결과 가스에 의해 형성된 균열구조(degassying structure)를 확인할 수 있었다. 코어시료의 내부구조, 음파전달속도, 전기비저항 및 물성 값을 토대로 연구지역 퇴적물을 가스함유퇴적물(gassy sediment)과 무가스함유퇴적물(non-gassy sediment)로 구분하였다. 퇴적물의 깊이에 따른 속도, 전기비저항, 공극율 및 전밀도 차이는 퇴적물 조직과 관련된 퇴적구조에 영향을 받으며, 가스의 함유유무와 그에 수반되는 균열구조에 의해 음파전달속도와 전기비저항 값이 큰 차이를 나타냈다. 이들 자료의 수직적인 단면도와 상관관계를 통해 연구지역에서는 가스함유 유무에 따라 음파전달속도와 전기비저항 값이 크게 반응하며 이중 음파전달속도가 더 민감하게 반응하는 것으로 나타났다.

Keywords

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