• 제목/요약/키워드: Standoff

검색결과 84건 처리시간 0.026초

지하수면 상.하부 환경에서의 PVC 케이싱 이격보정 비교 연구 (A Comparative Study of Density Compensation in Gamma-Gamma Log in PVC Casings between above and below Ground Water Tables)

  • 김영화;황병철;박성근;김종만
    • 지질공학
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    • 제19권2호
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    • pp.217-225
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    • 2009
  • 케이싱 구간에서 얻어진 밀도검층 자료에 대한 보정연구의 일환으로 모형공에서 PVC 케이싱의 인위적 이격을 이용한 이격보정 연구를 실시하였다. 케이싱의 유형과 공벽으로부터의 이격의 정도, 공내 유체의 존재에 따른 검출기의 반응양상의 변회를 추적하였으며 특히 동일한 이격환경에서 시추공 내에 물이 있을 때와 물이 없는 상태에서 얻어진 이격반응에 대한 비교 분석이 집중적으로 수행되었다. 이로부터 PVC 케이싱에서 수행되는 밀도검층에서 공벽과 검출기 사이의 이격 거리에 따른 감마선 반응 특성을 정량화할 수 있었으며 이격보정 차트가 작성되고 지하수면 하부구간과 상부구간에서의 각 이격오차보정의 효과와 한계가 밝혀졌다.

워터젯 노즐의 길이와 내부 나선 구조 유무에 따른 유체거동에 관한 전산해석 (A Study on the Simulation Analysis of Nozzle Length and Inner Spiral Structure of a Waterjet)

  • 곽청렬;신보성;고정상;김문정;유찬주;윤단희
    • 한국기계가공학회지
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    • 제16권1호
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    • pp.118-123
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    • 2017
  • It is well known that water jetting is now widely used in the advanced cutting processes of polymers, metals, glass, ceramics, and composite materials because of some advantages, such as heatless and non-contacting cutting different from the laser beam machining. In this paper, we proposed the simulation model of waterjet by lengths and the inner spiral structure of the nozzle. The simulation results show that the outlet velocity of the nozzle is faster than the inlet. Furthermore, we found rapid velocity reduction after passing through the outlet. The nozzle of diameter ${\phi}500$ and length 70mm, shows the optimal fluid width and velocity distribution. Also, the nozzle with inner spiral structure shows a Gaussian distribution of velocity and this model is almost twice as fast as the model without spiral structure, within the effective standoff distance (2.5 mm). In the future, when inserting abrasive material into the waterjet, we plan to analyze the fluid flow and the particle behavior through a simulation model.

Development of rotational pulse-echo ultrasonic propagation imaging system capable of inspecting cylindrical specimens

  • Ahmed, Hasan;Lee, Young-Jun;Lee, Jung-Ryul
    • Smart Structures and Systems
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    • 제26권5호
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    • pp.657-666
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    • 2020
  • A rotational pulse-echo ultrasonic propagation imager that can inspect cylindrical specimens for material nondestructive evaluations is proposed herein. In this system, a laser-generated ultrasonic bulk wave is used for inspection, which enables a clear visualization of subsurface defects with a precise reproduction of the damage shape and size. The ultrasonic waves are generated by a Q-switched laser that impinges on the outer surface of the specimen walls. The generated waves travel through the walls and their echo is detected by a Laser Doppler Vibrometer (LDV) at the same point. To obtain the optimal Signal-to-Noise Ratio (SNR) of the measured signal, the LDV requires the sensed surface to be at a right angle to the laser beam and at a predefined constant standoff distance from the laser head. For flat specimens, these constraints can be easily satisfied by performing a raster scan using a dual-axis linear stage. However, this arrangement cannot be used for cylindrical specimens owing to their curved nature. To inspect the cylindrical specimens, a circular scan technology is newly proposed for pulse-echo laser ultrasound. A rotational stage is coupled with a single-axis linear stage to inspect the desired area of the specimen. This system arrangement ensures that the standoff distance and beam incidence angle are maintained while the cylindrical specimen is being inspected. This enables the inspection of a curved specimen while maintaining the optimal SNR. The measurement result is displayed in parallel with the on-going inspection. The inspection data used in scanning are mapped from rotational coordinates to linear coordinates for visualization and post-processing of results. A graphical user interface software is implemented in C++ using a QT framework and controls all the individual blocks of the system and implements the necessary image processing, scan calculations, data acquisition, signal processing and result visualization.

화학오염운 탐지를 위한 접촉식 화학탐지기를 탑재한 무인기와 원거리 화학탐지기의 복합 운용개념 고찰 (Hybrid Operational Concept with Chemical Detection UAV and Stand-off Chemical Detector for Toxic Chemical Cloud Detection)

  • 이명재;정유진;정영수;이재환;남현우;박명규
    • 한국군사과학기술학회지
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    • 제23권3호
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    • pp.302-309
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    • 2020
  • Early-detection and monitoring of toxic chemical gas cloud with chemical detector is essential for reducing the number of casualties. Conventional method for chemical detection and reconnaissance has the limitation in approaching to chemically contaminated site and prompt understanding for the situation. Stand-off detector can detect and identify the chemical gas at a long distance but it cannot know exact distance and position. Chemical detection UAV is an emerging platform for its high mobility and operation safety. In this study, we have conducted chemical gas cloud detection with the stand-off chemical detector and the chemical detection UAV. DMMP vapor was generated in the area where the cloud can be detected through the field of view(FOV) of stand-off chemical detector. Monitoring the vapor cloud with standoff detector, the chemical detection UAV moved back and forth at the area DMMP vapor being generated to detect the chemical contamination. The hybrid detection system with standoff cloud detection and point detection by chemical sensors with UAV seems to be very efficient as a new concept of chemical detection.

Damage mechanism and stress response of reinforced concrete slab under blast loading

  • Senthil, K.;Singhal, A.;Shailja, B.
    • Coupled systems mechanics
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    • 제8권4호
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    • pp.315-338
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    • 2019
  • The numerical investigations have been carried out on reinforced concrete slab against blast loading to demonstrate the accuracy and effectiveness of the finite element based numerical models using commercial package ABAQUS. The response of reinforced concrete slab have been studied against the influence of weight of TNT, standoff distance, boundary conditions, influence of air blast and surface blast. The results thus obtained from simulations were compared with the experiments available in literature. The inelastic behavior of concrete and steel reinforcement bar has been incorporated through concrete damage plasticity model and Johnson-cook models available in ABAQUS were presented. The predicted results through numerical simulations of the present study were found in close agreement with the experimental results. The damage mechanism and stress response of target were assessed based on the intensity of deformations, impulse velocity, von-Mises stresses and damage index in concrete. The results indicate that the standoff distance has great influence on the survivability of RC slab against blast loading. It is concluded that the velocity of impulse wave was found to be decreased from 17 to 11 m/s when the mass of TNT is reduced from 12 to 6 kg. It is observed that the maximum stress in the concrete was found to be in the range of 15 to $20N/mm^2$ and is almost constant for given charge weight. The slab with two short edge discontinuous end condition was found better and it may be utilised in designing important structures. Also it is observed that the deflection in slab by air blast was found decreased by 60% as compared to surface blast.

폭발 손상을 입은 강섬유 및 FRP 시트 보강 철근콘크리트 보의 국부손상 및 잔류성능 평가 (Evaluation of Local Damages and Residual Performance of Blast Damaged RC Beams Strengthened with Steel Fiber and FRP Sheet)

  • 이진영;장대성;권기연;윤영수
    • 콘크리트학회논문집
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    • 제26권5호
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    • pp.627-634
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    • 2014
  • 본 연구에서는 폭발에 의한 국부손상이 철근콘크리트 보의 잔류 휨강도 및 연성에 미치는 영향을 알아보기 위하여 $160{\times}290{\times}2200mm$의 철근콘크리트 보에 대하여 근접 폭발 시험과 정하중 휨시험을 수행하였다. 또한 이 시험을 통해 강섬유 및 FRP 시트로 보강한 철근콘크리트 보의 폭발저항성능을 평가하였다. 장약량 1kg, 이격거리 0.1m의 폭발 시험을 수행하였으며, 시험 후 시험체의 crater, spall 지름과 무게손실(weight loss)을 측정하여 시험체의 국부손상을 평가하였다. 또한 폭발하중을 받지 않은 시험체와 폭발하중을 받아 국부손상이 발생한 시험체의 정하중 휨시험을 수행하여 휨강도 및 연성지수를 측정하였다. 시험결과, 보통콘크리트 시험체(NC)는 비교적 큰 crater와 spall이 발생하였으며 국부손상에 의한 무게 손실이 23.5kg 발생하였다. 반면 강섬유보강콘크리트 시험체(SFRC)와 FRP 시트 보강 시험체(NC-F, NC-FS)는 NC에 비해 crater 크기와 무게손실이 감소하며 향상된 폭발저항성능을 나타내었다. 또한 폭발하중에 의해 국부손상이 발생한 시험체들은 휨강도와 연성지수가 감소하였다. 특히 NC는 잔류 휨강도가 기존 강도에 비해 크게 감소하였고 압축철근의 좌굴현상이 나타나며 취성적으로 파괴되었다. 강섬유와 FRP 시트로 보강한 시험체의 경우 잔류 휨강도 및 연성지수가 NC에 비해 증가하였다. 이를 통해 폭발이 발생할 경우, 충분한 이격거리를 확보하지 못하면 장약량이 적더라도 구조부재에 심각한 국부손상을 발생 시킬 수 있다는 것을 알 수 있었으며, 강섬유와 FRP 시트에 의한 보강 방법이 폭발저항성능을 향상시킨다는 것을 확인할 수 있었다.

회전하는 알루미늄 환봉의 미세입자 분사가공시 통계적 방법에 의한 분사조건에 대한 연구 (A Statistical Study on the Blasting Conditions when Micro Blasting for Rotating Aluminum Rod)

  • 권대규;왕덕현
    • 한국기계가공학회지
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    • 제16권2호
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    • pp.135-141
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    • 2017
  • An experimental study of micro blasting for a rotating aluminum rod was conducted through the statistical analysis of ANOVA to obtain the effect of blasting conditions. The rotating equipment was designed and constructed with forward and backward moving for helical blasting, but rotation was used in this study. The blasting condition factors were the type of abrasive particle, nozzle diameter, pressure, standoff distance, injection time, etc. The width of the surface, the maximum depth of the sprayed surface, and ANOVA were analyzed by statistical analysis. The results showed that the contributions of the main factors were pressure, nozzle diameter, and injection particle.

레이저 절단가공에서 노즐설계가 용융물질 제거에 미치는 영향에 관한 실험적 연구 (Experimental Study of Influence of Nozzle Design on Removal of Melted Materials in Laser Cutting Process)

  • 손상혁;이석준;이열
    • 한국기계가공학회지
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    • 제11권1호
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    • pp.33-38
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    • 2012
  • An experimental study was carried out to observe the characteristics of impingement of assist gas from a rectangular supersonic nozzle on kerf surface in laser machining. A micro-scale supersonic (Mach number 2.0) rectangular nozzle system was designed and fabricated for the purposes, and hot tests of the performance of the nozzle system was proceeded in the ITI corporation laboratory. For various related parameters such as laser powers, nozzle pressures and cutting speeds, the quality of the frontal view of cut edge surfaces was observed by a microscope. In the study, it was shown that the application of the present micro-rectangular supersonic nozzle in an off-axis configuration made it possible to cut a mild steel, by combinations of relatively low laser - powers, large standoff distances, and assist gas with no oxygen, which was not achieved by conventional laser cutting processes.

연마제 워터젯을 이용한 복합재 미세가공의 백화현상에 대한 연구 (A Study on the Frosting Phenomena of Abrasive Waterjet Microcutting for Multi-Layered Materials)

  • 박강수;박연경;고정상;신보성
    • 한국공작기계학회논문집
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    • 제16권5호
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    • pp.183-190
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    • 2007
  • It is well known that abrasive waterjet(AWJ) was developed as a kind of high-density energy processing technologies. AWJ is used to obtain the better cutting quality of various materials such as metals, ceramics, glass and composite materials within a short manufacturing time because of the characteristics of heatless and noncontact processing. However, AWJ device still has some problems to obtain the high quality of thin workpiece. In this paper, we investigated the optimal microcutting conditions of AWJ, such as maximum pressure, cutting speed and standoff distance of thin multi-layered materials. The experimental results show that AWJ has possibilities and potential to apply to the microcutting of thin multi-layered materials for IT industrial applications.

Flow Field Analysis on the Stagnation Streamline of a Blunt Body

  • Lee, Chang-Ho
    • International Journal of Aeronautical and Space Sciences
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    • 제17권2호
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    • pp.149-156
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    • 2016
  • The hypersonic flow on the stagnation streamline of a blunt body is analyzed with quasi one-dimensional (1-D) Navier-Stokes equations approximated by adopting the local similarity to the two-dimensional (2-D)/axisymmetric Navier-Stokes equations. The governing equations are solved using the implicit finite volume method. The computational domain is confined from the stagnation point to the shock wave, and the shock fitting method is used to find the shock position. We propose a boundary condition at the shock, which employs the shock wave angle in the vicinity of the stagnation streamline using the shock shape correlation. As a result of numerical computation conducted for the hypersonic flow over a sphere, the proposed boundary condition is shown to improve the accuracy of the prediction of the shock standoff distance. The quasi 1-D Navier-Stokes code is efficient in computing time and is reliable for the flow analysis along the stagnation streamline and the prediction of heat flux at the stagnation point in the hypersonic blunt body flow.