• 제목/요약/키워드: CONWEP

검색결과 9건 처리시간 0.024초

폭발해석을 위한 간략 폭발하중 제안식 (A Suggestion of Simplified Load Formula for Blast Analysis)

  • 전두진;한상을
    • 한국전산구조공학회논문집
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    • 제29권1호
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    • pp.67-75
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    • 2016
  • 본 논문에서는 폭발해석에서 주로 사용되는 폭발하중의 압력-시간 이력곡선과 폭발하중 산정식인 Conwep 모델을 소개하고, 이를 더욱 간편하게 계산할 수 있는 간략 폭발하중 산정식을 제안한다. 폭발해석에서 폭발하중은 일반적으로 압력-시간 이력곡선의 형태로 적용되며, 그에 대한 주요 값들은 폭발하중 산정식에 의해 계산된다. 대부분의 폭발해석에서 사용되는 폭발하중 산정식인 Conwep 모델은 환산거리(scaled distance)를 핵심변수로 하여 계산되는데, 그 계산 과정이 매우 복잡한 단점이 있다. 따라서 본 논문에서는 환산거리를 변수로 갖는 간략한 유리식을 사용하여 주요 값들을 계산하고, 단순화된 압력-시간 이력곡선으로 폭발하중을 산정할 수 있도록 제안하였다. 간략식을 찾는 과정에서 Conwep 모델의 계산 결과를 바탕으로 곡선 적합(curve fitting) 방식이 사용되었으며, 제안된 간략식에 의한 주요 값의 계산 결과는 Conwep 모델과 비교하여 1% 미만의 오차를 갖는다. 또한, 유한요소를 이용한 폭발해석에 적용하였으며 Conwep 모델을 적용한 결과와 비교를 통해 검증하였다.

내부 폭발에 의한 함정의 손상 예측 (Prediction of Damage Extents due to In-Compartment Explosions in Naval Ships)

  • 장원준;정준모
    • 대한조선학회논문집
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    • 제61권1호
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    • pp.44-50
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    • 2024
  • In order to reasonably predict damage extents of naval ships under in-compartment explosion (INCEX) loads, two conditions should be fulfilled in terms of accurate INCEX load generation and fracture estimation. This paper seeks to predict damage extents of various naval ships by applying the CONWEP model to generate INCEX loads, combined with the Hosford-Coulomb (HC) and localized necking (LN) fracture model. This study selected a naval ship with a 2,000-ton displacement, using associated specifications collected from references. The CONWEP model that is embedded in a commercial finite element analysis software ABAQUS/Explicit was used for INCEX load generation. The combined HC-LN model was used to simulate fracture initiation and propagation. The permanent failures with some structural fractures occurred where at the locations closest to the explosion source points in case of the near field explosions, while, some significant fractures were observed in way of the interfaces between bulkheads and curtain plates under far field explosion. A large thickness difference would lead to those interface failures. It is expected that the findings of this study enhances the vulnerability design of naval ships, enabling more accurate predictions of damage extents under INCEX loads.

폭발압접에 대한 갱도의 안정성 분석 (Stability Analysis of Mine Drift for Explosive Welding)

  • 양형식;장명환;장형두
    • 화약ㆍ발파
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    • 제28권1호
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    • pp.55-62
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    • 2010
  • 광산의 채광장 활용을 위해 갱도 내에서 폭발압접이 계획되었다. 폭발압접의 입사압력에 의해 영향을 받을 것으로 예상되는 갱도의 천단부와 주변 광주의 안정성 분석 실시하였다. 폭풍압의 예측은 일반식, CONWEP 및 DDESB의 식을 이용하였다. 분석결과 폭발압접이 지속적으로 이뤄진다면 광산 채굴적에 상당한 영향을 줄 수 있을 것으로 판단되었다.

외부 폭발에 의한 축소형 방폭문 변형 및 터널 내부 폭풍파 전파 거동의 수치해석 (Numerical Analysis of the Subscale Blast Door Deformation and the Subsequent Blast Wave Propagation through the Tunnel by the External Explosion)

  • 윤경재;유요한
    • 한국군사과학기술학회지
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    • 제19권4호
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    • pp.462-468
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    • 2016
  • In this paper, we present the results of the numerical analysis employing CONWEP, LS-DYNA FSI(Fluid Structure Interaction), AUTODYN FSI, LS-DYNA ALE(Arbitrary Lagrange Eulerian) and combination of CONWEP and LS-DYNA ALE for blast door fracture and wave propagation through the tunnel by the external explosion. We compared the numerical analysis results with the subscale test data and selected combination of CONWEP and LS-DYNA ALE method as adequate data generation method for the FRM(Fast Running Model) software development. It is expected to save much time and costs by using the numerical simulation data for the various test conditions.

Lead Plate Blast Pressure Meter를 이용한 근거리 기폭의 발파압 계측 (Direct Measurement of Blast Pressure in Near Field with Lead Plate Blast Pressure Meter)

  • 고영훈;장형두;양형식
    • 터널과지하공간
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    • 제22권1호
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    • pp.54-59
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    • 2012
  • 노천에서 폭파실험을 통해 납판 발파압계의 변형량을 계측하였다. 홉킨슨 바 시험장치의 가스 건으로 압력 실험하여 구한 보정 그래프에 계측데이터를 적용하여 폭풍압을 산출하였다. 그 결과를 CONWEP, DDESB 등 여러 가지 폭풍압 예측식과 대비하였다. 근거리 폭풍압의 실 계측 값은 폭풍압 예측식의 결과보다 최대압력이 낮게 나타났지만 거리에 따른 압력감쇠는 폭풍압 예측식보다 완만한 것을 확인할 수 있었다. 이는 기존 이론식으로 추정한 초근접 지점의 발파압은 부정확함을 의미한다.

소구경 탄자에 대한 철근콘크리트 슬래브의 관입저항력 평가 (An Assessment for Anti-piercing Designs of RC Slabs against Small Caliber Bullets)

  • 김석봉;강영철;이종찬;백상호;박영준
    • 한국군사과학기술학회지
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    • 제10권2호
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    • pp.69-75
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    • 2007
  • So far, anti-piercing depths for concrete slabs have been determined using Conventional Weapon's Effects Program(CONWEP) that was developed by the U. S. Army's Corps of Engineering. However, it has been suggested by a number of field officers that the values computed by CONWEP tend to be too high for protective facilities used in small military units and that indiscriminate application of these values to such facilities would lead to uneconomical penetration-proof designs. In this study, gunshots onto RC slabs were carried out using KM80 bullets in order to measure the piercing depths. The observed depths and the depths offered by the CONWEP system differed greatly from each other by up to 119 centimeters. Based on the depth values obtained through this experiment, we have proposed a new equation to calculate effective anti-piercing depths for RC slabs against small caliber bullets.

Blasting resistance of curved sandwich composite concrete bunkers

  • Mahmudul Hasan;Ahmad B.H. Kueh
    • Structural Engineering and Mechanics
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    • 제91권1호
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    • pp.63-73
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    • 2024
  • Improving the blast resistance of structural establishments has become an imperative engineering commitment to prevent property damage and fatalities in terrorist incidents. This study investigates the effects of blast mass and stand-off distance on CFRP skin concrete core sandwich bunkers of varying thicknesses using ABAQUS/Explicit software with CONWEP functionality. The considered parameters include TNT masses of 1, 10, and 25 kg and stand-off distances of 0.1, 1, 2, and 2.5 meters on structures with 200, 250, and 500 mm core thicknesses. The study finds that there exists a declining response corresponding to the blasting mass reduction coupled with increases in the stand-off distance and core thickness. The 500 mm thick bunker sustains less damage compared to those with 200 mm and 250 mm core thicknesses. The sandwich configuration remains structurally advantageous vs. those without skins. The sandwich bunker with a 500 mm thick concrete core gives the best performance against the 10 kg TNT blast load with a 1 m standoff distance exhibiting a 22.8% reduction in damage vs. that without skins. Mathematical expressions are then formulated for predicting maximum von Mises stress, principal stress, and displacement of sandwich bunkers as functions of TNT masses, stand-off distances, and core thicknesses.

폭발하중에 의한 철골조 건물의 동적거동 (The Dynamic Behavior of Steel Structure under Blast Load)

  • 곽진이;김진구;박준희
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2008년도 정기 학술대회
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    • pp.313-318
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    • 2008
  • The blast load is caused by gas or bomb explosions. In this study blast load was simulated using the computer code CONWEP and nonlinear analysis was performed on three-story steel moment frames. It was observed from the analysis results that the response of the structures varied depending on the opening area and the explosive weight.

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자유 공중 폭발하중 파라메타의 수정 산정식 (A Modified Equation of Parameter of Free-air Blast Load)

  • 전두진;이민재;한상을
    • 한국공간구조학회논문집
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    • 제16권4호
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    • pp.117-123
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    • 2016
  • The blast load is classified into free-air blast and surface blast following the location of explosion and surface. In this paper, several equations for blast load calculation are explained briefly and a modified equation for free-air blast load is suggested. The modified equation is based on Kingery-Bulmash equation which is used in UFC 3-340-02 and Conwep model. In this modified equation, the process of calculation is simplified against the original equation, and the number of coefficients is reduced under 5. As a result, each parameter of estimated data by modified equation has less than 1% of error range comparing with Kingery-Bulmash equation.