• Title/Summary/Keyword: 전자탐사 측정장비

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Application of electromagnetic survey to geotechnical problems (지반조사를 위한 전자탐사의 적용)

  • Cho In-Ky;Song Yoonho
    • 한국지구물리탐사학회:학술대회논문집
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    • 1999.08a
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    • pp.37-47
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    • 1999
  • Among the geophysical exploration methods, electromagnetic (EM) survey must have the broadest range of instrumental systems and remarkable range of applications. There is a plethora of available techniques and instruments, and the depth of investigation and resolution are highly dependent on the particular systems used according to their operating frequency and source-receiver configuration. This diversity of EM systems, however, provides a wide range of instruments or methodologies to choose in order to select the most appropriate tool for the task in hand. This rather than being a disadvantage, would be a major strength of EM methods. Modern EM equipments are remarkably portable, considering their sophistication. Coupled with major advances in recent computer technology, accurate modeling and interpretation techniques are on the way of continuous development and upgrade which, in turn, make the EM methods to become much more heavily used, especially for engineering and environmental applications. We aim to provide a brief theoretical principles, survey techniques and case histories of some selected EM methods that can be applied to geotechnical and environmental problems in Korea.

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전자탐사를 이용한 지하 이상대 영상화

  • Jo, In-Gi;Kim, Hak-Su
    • Journal of the Korean Geophysical Society
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    • v.5 no.2
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    • pp.99-109
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    • 2002
  • Among the geophysical exploration methods, electromagnetic method(EM) has the broadest range of instrumental systems and remarkable range of applications. There are a lot of available techniques and instruments which have different depth of investigation and resolution depending on the operating frequency and source-receiver configuration. Furthermore, it is very easy to apply on the engineering and environmental problems since modern EM equipments are remarkably portable, considering their sophistication. Even though electromagnetic theory is very complex and not easy to understand, rapid avances in recent computer technology have made it possible to conduct accurate forward modeling and inversion of various EM exploration data. Here, we are going to provide brief theoretical principles, survey techniques and case histories of some selected EM methods that can be applied to geotechnical and environmental problems in Korea.

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Measurements and Data Interpretation for the Detection of Steel Bars and Delamination inside Concrete (콘크리트내의 철근 및 공동탐사를 위한 측정과 분석)

  • Rhim, Hong-Chul;Park, Ki-Joon;Lee, Soong-Jae
    • Journal of the Korean Society for Nondestructive Testing
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    • v.20 no.4
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    • pp.305-313
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    • 2000
  • To determine detection capabilities of locating steel bars and delamination inside concrete, commercially available nondestructive testing (NDT) equipments have been tested. The equipments include two radar systems and two electromagnetic method systems. The inclusions are a 19 mm diameter steel bar and 50 mm thick delamination embedded at different cover depths from the surface of concrete specimens. For the steel bar, attempts were made to determine the size of the bars by changing the diameter of the bars. A sample result of measuring horizontal spacing between doubly reinforced bars is presented in this paper. Experimental results on various measurement cases are discussed. Application of numerical modeling technique for the simulation of radar measurements and improved output display of radar measurements are also presented.

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A small ocean bottom electromagnetometer and ocean bottom electrometer system with an arm-folding mechanism (Technical Report) (팔-접힘 구조를 가지는 소규모 OBEM과 OBE시스템 (기술보고서))

  • Kasaya, Takafumi;Goto, Tada-nori
    • Geophysics and Geophysical Exploration
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    • v.12 no.1
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    • pp.41-48
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    • 2009
  • Natural magnetic fields are attenuated by electrically conductive water. For that reason, marine magnetotelluric surveys have collected data at long periods (1000-100 000 s). The mantle structure has been the main target of seafloor magnetotelluric measurements. To ascertain crustal structure, however, electromagnetic data at shorter periods are important, e.g. in investigations of megathrust earthquake zones, or in natural resource surveys. To investigate of the former, for example, electromagnetic data for periods of less than 1000 s are necessary. Because no suitable ocean bottom electromagnetometer (OBEM) has been available, we have developed a small OBEM and ocean bottom electrometer (OBE) system with a high sample rate, which has an arm-folding mechanism to facilitate assembly and recovering operations. For magnetic observation, we used a fluxgate sensor. Field observations were undertaken to evaluate the field performance of our instruments. All instruments were recovered and their electromagnetic data were obtained. Results of the first experiment show that our system functioned well throughout operations and observations. Results of other field experiments off Tottori support the claim that the electromagnetic data obtained using the new OBEM and OBE system are of sufficient quality for the survey target. These results suggest that this device removes all instrumental obstacles to measurement of electromagnetic fields on the seafloor.

원격탐사위성의 탑재체자료전송장치를 위한 시험검증장비의 개발

  • Lee, Sang-Taek;Jin, Yeong-Bae
    • The Bulletin of The Korean Astronomical Society
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    • v.37 no.2
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    • pp.228.2-228.2
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    • 2012
  • 본 논문에서는 탑재체자료전송장치의 시험검증을 위한 장비 개발에 관하여 소개 한다. 원격탐사위성에 탑재되는 고성능원격측정센서는 대용량 데이터를 생성하며 탑재체자료전송장치를 통하여 고주파통신에 의해 지상으로 전송된다. 따라서 탑재체자료전송장치의 검증은 전체 인공위성 개발에 있어서 매우 중요하다. 시험검증장비는 송신되는 수신자료를 수신하여 여러 장비로 분배해주는 고주파신호분배모듈, 계측기 및 복조기 등 다양한 장비로 구성된다. 시험검증장비는 고성능 고주파신호 부품, 다양한 전자장비와 이를 통합, 제어 운영하는 다양한 복잡한 소프트웨어가 필요하여 개발이 어렵다. 본 논문에서는 초기 제작 시험검증장비와 최종 제작 시험검증장비 사이의 차이와 성능, 기능의 향상을 위한 설계변경 등을 통하여 이에 대한 어려움을 극복한 과정과 설계 근거와 장비 선택 등 제반사항에 대하여 기술하여 이후 관련 유사장비의 개발에 있어 도움이 되고자 한다.

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Dispersion constraints and the Hilbert transform for electromagnetic system response validation (전자기 탐사 시스템 반응의 타당성 확인을 위한 분산 관계식과 힐버트 변환)

  • Macnae, James;Springall, Ryan
    • Geophysics and Geophysical Exploration
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    • v.14 no.1
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    • pp.1-6
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    • 2011
  • As a check on calibration and drift in each discrete sub-system of a commercial frequency-domain airborne electromagnetic system, we aim to use causality constraints alone to predict in-phase from wide-band quadrature data. There are several possible applications of the prediction of in-phase response from quadrature data including: (1) quality control on base level drift, calibration and phase checks; (2) prediction and validation of noise levels in in-phase from quadrature measurements and vice versa and in future; and (3) interpolation and extrapolation of sparsely sampled data enforcing causality and better frequency-domain-time-domain transformations. In practice, using tests on both synthetic and measured Resolve helicopter-borne electromagnetic frequency domain data, in-phase data points could be predicted using a scaled Hilbert transform with a standard deviation between 40 and 80 ppm. However, relative differences between base levels between flight could be resolved to better than 1 ppm, which allows an independent quality control check on the accuracy of drift corrections.

Simple Interpretation of VLF Data (VLF 전자탐사 자료의 해석)

  • Kim Hee Joon;Nam Myung Jin;Song Yoonho;Suh Jung Hee
    • Geophysics and Geophysical Exploration
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    • v.8 no.2
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    • pp.184-190
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    • 2005
  • We have attempted to give some physical into the factors that control the response of subsurface target to plane wave excitation at VLF (very low frequency) frequencies. Although the VLF technique has some serious disadvantages, such as a lack of penetration depth and limited frequencies, its advantages are also extremely important to have made it by far the most popular electromagnetic technique in current use. In the magnetic-field measurement mode these lightweight, relatively low-priced tools allow us to survey large areas rapidly and inexpensively, to locate and roughly define subsurface electrical conductors. When used in the electric-field mode the technique is, in simple environments, capable of quantitative interpretation and once again the speed and relative cheapness of these devices makes them a natural 'first electromagnetic tool ' to use in reconnaissance mapping.

A Display System of Realtime 3D Bathymetry Using Remote Sensing Exploration and Cloud Computing Technologies (원격탐사와 클라우드 컴퓨팅 기술을 활용한 실시간 3D 해저지형의 디스플레이 시스템)

  • Lee, Jong-Hoon;Park, Man-Gon
    • Journal of Korea Multimedia Society
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    • v.17 no.2
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    • pp.152-159
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    • 2014
  • Recently. utilization of remote sensing exploration and cloud computing has been extended to efficient measurement, store, and update of bathymetry map data according to cloud computing technology. In the field of real ocean, water depth measurements and measurement data management, distribution, and display equipment for the development and dissemination have generated a lot of time and cost. To improve these problems, through real-time three-dimensional display system at this location, we can determine the importance of measurement activities, and reduce the time and cost of measurement activities. Data measured from marine probe vessels and remote sensing exploration equipments and other various channels can be handled and managed. In this paper, we propose a realtime three-dimensional display system through the depth measurements from remote sensing exploration. The proposed real-time three-dimensional display system can be effectively applied in the field of measurement of the topographical survey of the land as well as bathymetry of the sea.

Multi-purpose Geophysical Measurements System Using PXI (PXI를 이용한 다목적 물리탐사 측정 시스템)

  • Choi Seong-Jun;Kim Jung-Ho;Sung Nak-Hun;Jeong Ji-Min
    • Geophysics and Geophysical Exploration
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    • v.8 no.3
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    • pp.224-231
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    • 2005
  • In geophysical field surveys, commercial equipments often fail to resolve the subsurface target or even sometimes fail to be applied because they do not fit to the various field situations or the physical properties of the medium or target. We developed a geophysical measurement system, which can be easily adapted for the various field situations and targets. The system based on PXI with A/D converter and some stand alone equipment such as Network Analyzer was applied to borehole radar survey, borehole sonic measurement and electromagnetic noise measurement. The system for borehole radar survey consists of PXI, Network Analyzer, dipole antennas, GPIB interface is used for PXI to control Network Analyzer. The system for borehole sonic measurement consists of PXI, 24 Bit A/D converter, high voltage pulse generator, transmitting and receiving piezoelectric sensors. The electromagnetic noise measurement system consists of PXI, 24 Bit A/D converter, 2 horizontal component electric field sensors and 2 horizontal and 1 vertical component magnetic filed sensors. The borehole radar system has been successfully applied to detect the width of the artificial tunnel through which the borehole pass and to image buried steel pipe, while the commercial borehole radar equipment failed. The borehole sonic system was tested to detect the width of artificial tunnel and showed a reasonable result. The characteristic of electromagnetic noise was grasped at an urban area with the data from the electromagnetic noise measurement system. The system is also applied to characterize the signal distortion by induction between the electric cables in resistivity survey. The system can be applied various geophysical problems with a simple modification of the system and sensors.

A Study on the Detecting Accuracy of EM Induction Survey Data of Buried Utility (전자유도 탐사를 이용한 지하매설물 탐지 정확도 분석)

  • Kwon, Hyoung-Seok;Choi, Joonho;Hwang, Daejin;Kim, Munjae;Yoon, Jeoungseob
    • Journal of Korean Society of societal Security
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    • v.1 no.4
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    • pp.73-81
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    • 2008
  • Electromagnetic induction surveys are one of the useful methods to detect the location and buried depth of underground utilities by measuring horizontal and vertical magnetic fields. It can effectively detects single buried utility with the accuracy of within 20 cm. However when another utility is buried near to target one, the accuracy of utility location considerably decreases due to the distortion of magnetic fields caused from adjacent utility. This study shows the ways to verify the location and buried depth of target utility when magnetic fields does not show symmetric distribution due to adjacent another utility. Using Bluetooth wireless communication tools, we developed the way to records measured magnetic fields to handheld PDA. We investigated the criteria for minimum distance of two adjacent utilities to separate the individual responses through field model test.

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