• 제목/요약/키워드: Explosion Range

검색결과 153건 처리시간 0.041초

폭쇄법(爆碎法)을 이용(利用)한 목질계(木質系) biomass의 종합적(綜合的) 이용(利用)(II) -폭쇄재(爆碎材)로부터 Carboxymethyl cellulose의 제조(製造)- (Total Utilization of Woody Biomass by Steam Explosion(II) -The Preparation of Carboxymethylcellulose from Exploded Wood-)

  • 한상열;장준복;이종윤
    • Journal of the Korean Wood Science and Technology
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    • 제22권2호
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    • pp.30-36
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    • 1994
  • Steam explosion process is one of the most efficient, pretreatment method for the utilization of lignocellulosic biomass. The carbxymethyl-cellulose(CMC) was prepared with steam exploded wood(EXW), pine(Pinus densiflora) and oak(Quercus mongolica), by standard method using isopropyl alcohol and monochloroacetic acid. The range of water solubility of carboxymethylated pine exploded wood was 45.2~66.8 % and those of oak was 60.7~84.7 %. The degree of substitution(D.S) of carboxymethylated pine exploded wood was 0.11~0.33 and oak exploded wood was 0.48~0.76. The color of carboxymethylated pine and oak exploded wood was brown-black. When carboxymethylated EXW was purified by sulfuric acid, the yield of carboxymethylated wood was lower than non-treated one. However, the color was still brown-black although after delignification. In carboxymethylated EXM prepared after delignification, the water solubility and degree of substitution(D.S) of pine were 81.4~95.9 % and 0.71~0.79, and those of oak were 76.2~89.5 % and 0.79~1.05. The values were higher than non-treated. The degree of substitution of purified carboxymethylated wood prepared with delignified EXM, pine and oak were 0.50~0.71 and 0.70~0.88. The color of carboxymethylated wood was white. In carboxymethylated wood preparde after delignification of EXM, swelling ratio and water retention value of pine were 95.9~96.5 and 580.0~751.2, those of oak were 76.2~89.5 and 124.3~307.6.

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금속의 펨토초 어블레이션의 수치해석 (Numerical analysis of fs laser ablation of metals)

  • 오부국;김동식;김재구;이제훈
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2006년도 춘계학술대회 논문집
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    • pp.657-658
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    • 2006
  • Although there are many numerical models to simulate fs laser ablation of metals, no model can analyze the ablation phenomena over a wide range of fluence. In this work, a numerical code for simulating the fs laser ablation phenomena of metals has been developed. The two temperature model is employed to predict the ablation rate and the crater shape of metals using phase explosion mechanism in the relatively high fluence regime. Also, the ultrashort thermoelastic model is used for the low fluence regime to account for spallation of the sample by high strain rate. It has been demonstrated that the thermoelastic stress generated within the sample can exceed the yield stress of the material even near the threshold fluence. Numerical computation results are compared with the experiment for Cu and Ni and show good agreement. Discussions are made on the hydrodynamic model considering phase change and hydrodynamic flow.

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직사각형 전지 케이스의 V-notch부 터짐 예측에 관한 연구 (Study on Bursting Prediction of Rectangular Battery Case with V-Notch)

  • 김상목;송우진;구태완;김정;강범수
    • 소성∙가공
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    • 제18권1호
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    • pp.59-66
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    • 2009
  • In this study, V-notch part has been considered as one of safety components in rectangular cup used for mobile device. This kind of safety component in rectangular cup with the V-notch part, which controls adequately the increased internal pressure in the rectangular cup, plays an important role to prevent the explosion from the excessive internal pressure. The protecting mechanism on the mobile device against the explosion is that a series of fracture on the V-notch part at the critical internal pressure level occurs. Therefore, it is very crucial to estimate accurately the working pressure range of the safety device. Relationship between the working internal pressure and fracture phenomenon at V-Notch part was investigated through numerical analysis using ductile fracture criteria. Integral value, I, of the used ductile fracture criteria was calculated from effective stress and strain, and then the bursting pressure of the V-notch part was extracted. Comparisons between the estimated and experimental results show that this systematic approach to predict bursting pressure using the ductile fracture criteria gives fairly good agreements.

인화성액체의 폭발위험장소 설정을 위한 증발율 추정 모델 연구 (A Study on the Estimation Model of Liquid Evaporation Rate for Classification of Flammable Liquid Explosion Hazardous Area)

  • 정용재;이창준
    • 한국안전학회지
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    • 제33권4호
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    • pp.21-29
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    • 2018
  • In many companies handling flammable liquids, explosion-proof electrical equipment have been installed according to the Korean Industrial Standards (KS C IEC 60079-10-1). In these standards, hazardous area for explosive gas atmospheres has to be classified by the evaluation of the evaporation rate of flammable liquid leakage. The evaporation rate is an important factor to determine the zones classification and hazardous area distance. However, there is no systematic method or rule for the estimation of evaporation rate in these standards and the first principle equations of a evaporation rate are very difficult. Thus, it is really hard for industrial workplaces to employ these equations. Thus, this problem can trigger inaccurate results for evaluating evaporation range. In this study, empirical models for estimating an evaporation rate of flammable liquid have been developed to tackle this problem. Throughout the sensitivity analysis of the first principle equations, it can be found that main factors for the evaporation rate are wind speed and temperature and empirical models have to be nonlinear. Polynomial regression is employed to build empirical models. Methanol, benzene, para-xylene and toluene are selected as case studies to verify the accuracy of empirical models.

유화유 생산의 적정 인화점에 관한 연구 (A Study on the Optimal Flash-Point of WDF Production)

  • 이진;김화성
    • 한국전기전자재료학회논문지
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    • 제33권4호
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    • pp.310-314
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    • 2020
  • Although waste oil derived fuel (WDF) production technology was developed under a government initiative ~10 years ago, it became stagnant owing to the small size of participating companies, residents' rejection of foul odor, and the nature of the technology for recycling waste that was avoided. However, this subject is under the spotlight again because of recent developments, such as garbage crisis. In particular, plastic is the most difficult waste to dispose of, with more than 4 million tons of plastic waste produced every year according to statistics from the Ministry of Environment. The most effective method for treating plastic waste is to produce WDF through low temperature thermal decomposition. The WDF includes several volatile ingredients that mostly limit the use of fuel for boilers, owing to safety concerns. In particular, flash point is legally stipulated because of secondary contamination in the distribution process and the risk of fire and explosion. It is required that external shipments (distribution) should be maintained in the range of at least 30~60℃ (excluding explosion prevention facilities) for diesel power generation. Therefore, this study seeks to find the flash point that is best suited to WDFs produced from plastic waste.

지중선로의 분포 온도 측정 시스템 개발 (Development of optical temperature distribution measurement system for Underground Power Transmission tunnel)

  • 이근양;송우성
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1998년도 하계학술대회 논문집 B
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    • pp.766-768
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    • 1998
  • Optical Temperature Distribution measurement System (OTDS) is completely different from conventional electric point sensor in that it uses the optical fiber itself as the sensor. This new concept in temperature measuring system requires only one fiber to be laid. The use of optical fiber also gives the advantage of small diameter, light weight, explosion resistance, and electromagnetic noise resistance. The OTDS is a sensor which is capable of making a precise measurement over a wide range of areas using only a single optical fiber. Since current temperature sensors, such as the thermocouple, are only used to measure temperaturea of point, they are almost impractical for measuring a wider range because of the extremely high cost. In comparision with current sensors, the optical fiber distributed temperature sensor can make much quicker and more precise measurements at a comparatively low cost.

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수소 취급설비의 폭발위험장소에 관한 연구 (A Study on Explosive Hazardous Areas in Hydrogen Handling Facility)

  • 표돈영;임옥택
    • 한국수소및신에너지학회논문집
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    • 제30권1호
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    • pp.29-34
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    • 2019
  • Safety of hydrogen handling facilities is needed as supply of hydrogen cars has been expanded recently. In this study, the adequacy of safety regulations of hydrogen handling facilities and the risk of damage with hydrogen leakage were studied. The range of explosion hazard location of the hydrogen filling plant was investigated using the computational fluid dynamics (CFD) method, Explosive hazardous area is influenced by leakage type, hole size and sectional area. When the conditions of KS standard are applied, range explosive hazardous area is expanded 7.05 m, maximum. It is about 7 times larger than exceptional standard of hydrogen station. Meanwhile, distance from leakage point to 25% LEL of hydrogen is investigated 1.6 m. Considering the shape of charging hose, regulation of hydrogen station is appropriate.

복합화력발전소 내 수소연료 적용 시 누출 사고에 대한 피해영향범위 분석: 지역별 환경 특성 영향에 기반하여 (Consequence Analysis on the Leakage Accident of Hydrogen Fuel in a Combined Cycle Power Plant: Based on the Effect of Regional Environmental Features)

  • 박희경;이민철
    • 한국수소및신에너지학회논문집
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    • 제34권6호
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    • pp.698-711
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    • 2023
  • Consequence analysis using an ALOHA program is conducted to calculate the accidental impact ranges in the cases of hydrogen leakage, explosion, and jet fire in a hydrogen fueled combined cycle power plant. To evaluate the effect of weather conditions and topographic features on the damage range, ALOHA is executed for the power plants located in the inland and coastal regions. The damage range of hydrogen leaked in coastal areas is wider than that of inland areas in all risk factors. The obtained results are expected to be used when designing safety system and establishing safety plans.

석유 부산물의 물리화학적 분석을 통한 화재폭발 특성연구 (A Study on Fire Explosion Characteristics via Physico-chemical Analysis of Petroleum Residues)

  • 김형기;이영석
    • 공업화학
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    • 제30권5호
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    • pp.556-561
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    • 2019
  • 본 연구에서는 석유 부산물인 열분해잔사유의 화재, 폭발특성을 파악하기 위하여 그 물리 화학적 분석을 실시하고 주요 성분을 선정하였다. GC-SIMDIS 및 MALDI-TOF 분석을 통해 열분해잔사유의 주요 성분 분포영역을 확인하였으며, GC-MS 분석을 통해 주요 성분 분포영역에 대한 정성분석을 실시하였다. 아울러 EA, SARA, TGA 등 다양한 분석결과를 바탕으로 열분해잔사유의 주요 성분을 선정하였다. 그 결과 benzene, toluene, xylene을 주요 성분을 선정하여 PHAST 분석을 통한 화재 폭발 시 최대 피해영향범위를 고찰하였다. Toluene은 제트 화재 발생 시 $227kW/m^2$의 복사열 및 118 m의 영향범위를 나타내어 가장 높은 위험성을 보였으며, xylene과 benzene은 각각 114와 $151kW/m^2$의 최대 복사열 수치를 나타내었다, 또한, pasquill 안정도 및 풍속에 따른 피해영향범위를 분석한 결과 benzene에서 풍속에 따라 최대 55% 이상의 복사열이 증가함을 확인하였으며, 이는 영향범위를 증가시키는 주요인자인 것으로 여겨졌다.

근거리 폭발에 대한 경험식 기반 유한요소해석 방법의 적용성 분석 (Applicability Analysis of the FE Analysis Method Based on the Empirical Equation for Near-field Explosions )

  • 신현섭;김성욱;문재흠
    • 한국전산구조공학회논문집
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    • 제35권6호
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    • pp.333-342
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    • 2022
  • 경험식에 기반한 폭발 해석방법은 폭압-시간 이력곡선을 하중으로 적용하여 해석하는 방법이다. 이 방법은 모델링이 간단하고 해석시간이 짧아 효율적이지만, 일부 연구에 따르면 근거리 폭발 해석에는 적합하지 않음이 보고되고 있다. 본 연구에서는 예로써 환산거리 0.4~1.0의 근거리 폭발조건에 있는 RC 보에 대해 해석방법에 따른 결과의 차이 및 원인을 분석하였고, 이를 통해 경험식 방법을 이용한 해석의 적용 범위를 구체적으로 검토 및 확인할 수 있었다. 사용된 유한요소해석 프로그램은 LS-DYNA이다. 해석결과에 따르면, 원거리 폭발 실험 데이터를 근거로 하는 경험식 해석방법은 충격량을 과소평가하고 있었다. 이로 인해 RC 보의 처짐은 측정된 처짐 또는 ALE(Arbitrary Lagrangian Eulerian) 해석결과에 비해 작게 계산되었다. 구조체의 응답이 크게 나타나는 근거리 폭발에 대해서는 ALE 해석방법을 사용하는 것이 더 적합할 것으로 사료된다.