• Title/Summary/Keyword: Maximum temperature rise

검색결과 223건 처리시간 0.024초

콘크리트 단열온도 상승량에 미치는 시험체 용적의 영향 (The Influence of Specimen Volume on the Adiabatic Temperature Rise of Concrete)

  • 배준영;조성현;신경준;김윤용
    • 콘크리트학회논문집
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    • 제24권6호
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    • pp.659-666
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    • 2012
  • 최근 대형 매스콘크리트 구조물의 온도균열 저감을 위해 저열 포틀랜드시멘트(LPC), 삼성분계 저발열시멘트(TBC) 및 조강형저발열시멘트(EBC)에 대한 다양한 연구와 현장적용이 이루어지고 있다. 콘크리트 구조물의 온도균열검토를 위해서는 단열온도 예측모델이 필수적이지만, 아직 많은 종류의 배합에 대한 자료가 축적되어 있지 않으며, 단열온도 상승 시험체의 용적에 따른 결과 차이가 보고되고 있다. 따라서 이 연구에서는 결합재 종류 및 단열 시험체 용적에 따른 단열온도 상승시험을 수행하고 배합별 최대 단열온도 상승양과 반응계수를 분석 제시하였다. 실험 결과, TBC 배합의 최대 단열온도 상승양($Q_{\infty}$) 및 반응계수(r)가 가장 작은 것으로 나타났다. 또한 단열 시험체 용적에 따라 $Q_{\infty}$과 r가 다르게 나타났으며, 50 l 시험체에 의한 측정 결과가 60 l보다 일정하게 높은 상관관계를 나타냈다. 이상의 상관관계를 이용하면, 6 l 시험체에 의한 결과로 50 l 시험체의 단열온도 상승양을 예측할 수 있어 현장 콘크리트 품질관리 및 기초연구단계에서 활용할 수 있을 것으로 판단된다.

고층건물의 수직방향 연기거동에 미치는 발코니의 영향에 관한 실험적 연구 (An Experimental Study on the Effect of the Balcony on the Vertical Smoke Movement of the High Rise Building)

  • 양승신;김성찬;유홍선;심상훈
    • 한국안전학회지
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    • 제20권1호
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    • pp.42-48
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    • 2005
  • The present study investigates the effect of balcony on external smoke movement of high rise building through the fire tests of the 1/10 reduced model scale using Froude scaling. A hexane pool fire is used to examine the smoke movement for various opening sizes of balcony and temperature distributions are measured by T-type thermocouples. Also, hydrogen bubble technique is applied to visualize the smoke movement near the balcony. Measured temperatures of the closed balcony is 2.5 times higher than those of the open balcony because the external smoke in case of the closed balcony rise along the vertical wall. The maximum vertical temperature of partially closed balcony is similar with fully closed balcony and mean temperature inside of balcony increases as opening size of balcony decreases. The experimental results show that the balcony space plays an important roles in preventing fire propagation and cooling of smoke layer. In order to ensure the fire safety in high rise building design, a series of systematic researches are required to examine the various type of balconies.

촉진양생이 콘크리트의 28일 압축강도에 미치는 영향에 관한 연구 (A Study on the Effect of Accelerated Curing on 28-Days Compressive Strength of Concrete)

  • 최세규;유승룡;김생빈
    • 콘크리트학회지
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    • 제8권4호
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    • pp.141-148
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    • 1996
  • 기존의 촉진양생 연구는 1960~1970년대에 주로 실행된 것으로, 전체 증기양생기간이 18시간 또는 24시간인 경우에 대하여 연구되었고, 상기 연구 결과는 수동식 항온항습조를 사용하였으므로 온도상승구배의 효과에 대하여 명확한 규명을 할 수 없다고 판단되었다. 따라서 국내 PC공장 여건에서 그 직접적인 적용이 불가능한 실정이다. 본 연구는 효과적인 콘크리트 촉진양생에 대한 기본 자료를 정립할 목적으로, 국내 PC 공장에서 사용하는 배합표를 근거로 시험공시체를 제작한 후, 각 해당 양생주기 조건을 변화시켜 가면서 실험하였다. 탈형시 및 수중양생 재령28일의 측정하고 비교 검토한 결과, 재령 28일 후 설계강도값을 초과하는 가장 효과적인 촉진양생조건, 본 실험조건 하에서 전양생시간은 커다란 영향을 미치지 않았으며, 온도상승구배는 $30^{circ}C/hr$ 이하로, 최고양생온도는 $82^{\circ}C$이하로 양생해야 하며, 또한 촉진양생 후 2차 양생으로 강도증진을 도모함이 촉진양생의 효과를 증대시킬 수 있다고 판단되었다.

Study of Hopkinson Effect in the HDDR-treated Nd-Fe-B-type Material

  • Kwon, H.W.;Shon, S.W.
    • 한국자기학회:학술대회 개요집
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    • 한국자기학회 2000년도 International Symposium on Magnetics The 2000 Fall Conference
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    • pp.397-406
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    • 2000
  • Hopkinson effect in the HDDR-treated Nd$\sub$15/Fe$\sub$77/B$\sub$8/ alloy was examined in detail by means of a thermomagnetic analysis with low magnetic field (600 Oe). The emergence and magnitude of maximum in magnetisation in the thermomagnetic curve due to the Hopkinson effect was correlated to the grain structure and coercivity of the HDDR-treated material. the HDDR-treated materials showed clear Hopkinson effect (maximum in magnetisation just below the Curie temperature of the Nd$\sub$2/Fe$\sub$14/B phase) on heating in the thermomagnetic curve. Magnitude of the magnetisation rise due to the Hopkinson effect became smaller as the recombination time increased. The magnetisation recovery at room temperature on cooling from above the Curie temperature became smaller as the recombination time increased. The HDDR-treated materials with shorter recombination time, finer grain size and higher coercivity showed larger magnetisation maximum due to Hopkinson effect in the thermomagnetic curve.

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Study of the Hopkinson Effect in the HDDR-treated Nd-Fe-B-type Material

  • Kwon, H.W;Shon, S.W
    • Journal of Magnetics
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    • 제6권2호
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    • pp.61-65
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    • 2001
  • The Hopkinson effect in the HDDR-treated $Nd_{15}Fe_{77}B_8$ allay was examined in detail by means of a thermo-magnetic analysis with low magnetic field (600 Oe). The emergence and magnitude of maximum in magnetisation in the thermomagnetic curve due to the Hopkinson effect was correlated with the grain structure and coercivity of the HDDR-treated material. The HDDR-treated materials showed a clear Hopkinson effect (maximum in magnetisation just below the Curie temperature of the $Nd_2Fe_{14}B\;$ phase) on heating. The magnitude of the magnetisation rise due to the Hopkinson effect became smaller as the recombination time increased. The magnetisation recovery at room temperature on cooling from above the Curie temperature became smaller as the recombination time increased. The HDDR-treated materials with shorter recombination time, finer grain size and higher coercivity showed larger magnetisation maximum due to the Hopkinson effect in the thermo-magnetic curve.

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Post-buckling analysis of Timoshenko beams with temperature-dependent physical properties under uniform thermal loading

  • Akbas, Seref Doguscan;Kocaturk, Turgut
    • Structural Engineering and Mechanics
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    • 제44권1호
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    • pp.109-125
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    • 2012
  • Post-buckling behavior of Timoshenko beams subjected to uniform temperature rising with temperature dependent physical properties are studied in this paper by using the total Lagrangian Timoshenko beam element approximation. The beam is clamped at both ends. In the case of beams with immovable ends, temperature rise causes compressible forces end therefore buckling and post-buckling phenomena occurs. It is known that post-buckling problems are geometrically nonlinear problems. Also, the material properties (Young's modulus, coefficient of thermal expansion, yield stress) are temperature dependent: That is the coefficients of the governing equations are not constant in this study. This situation suggests the physical nonlinearity of the problem. Hence, the considered problem is both geometrically and physically nonlinear. The considered highly non-linear problem is solved considering full geometric non-linearity by using incremental displacement-based finite element method in conjunction with Newton-Raphson iteration method. The beams considered in numerical examples are made of Austenitic Stainless Steel (316). The convergence studies are made. In this study, the difference between temperature dependent and independent physical properties are investigated in detail in post-buckling case. The relationships between deflections, thermal post-buckling configuration, critical buckling temperature, maximum stresses of the beams and temperature rising are illustrated in detail in post-buckling case.

피봇식 주력베어링의 선단압력과 THD성능에 관한 실험적 연구 (An Experimental Study on Ram Pressure and THD Performance of Pivoted Pad Thrust Bearing)

  • 박홍규;김경웅
    • Tribology and Lubricants
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    • 제2권1호
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    • pp.61-68
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    • 1986
  • Effects of the ram-pressure on the THD-performance of pivoted pad thrust bearings are investigated experimentally. A sector-shaped tilting pad thrust bearing and a rotating disk are used. Temperature distribution on the disk surface as well as on the pad surface, distribution of the pressure generated within the fluid film, and the film thickness are measured continuously in the circumferential direction after thermal equilibrium is established. The ram-pressure is proportional to the mean pressure of oil film and to the rotational speed of the disk and affects the maximum pressure and the pressure distribution. The temperature rise on the mating surface of the disc and the pad, contacting with the oil film, is proportional to to the bearing load and the disk speed. The ram-pressure and the temperature rise on the disk surface are dominant factors that affect the THD-performance of pivoted pad thrust bearings.

The Influence of Pressure, Temperature, and Addition of CO2 on the Explosion Risk of Propylene used in Industrial Processes

  • Choi, Yu-Jung;Choi, Jae-Wook
    • Korean Chemical Engineering Research
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    • 제58권4호
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    • pp.610-617
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    • 2020
  • In process installations, chemicals operate at high temperature and high pressure. Propylene is used as a basic raw material for manufacturing synthetic materials in the petrochemical industry; However, it is a flammable substance and explosive in the gaseous state. Thus, caution is needed when handling propylene. To prevent explosions, an inert gas, carbon dioxide, was used and the changes in the extent of explosion due to changes in pressure and oxygen concentration at 25 ℃, 100 ℃, and 200 ℃ were measured. At constant temperature, the increase in explosive pressure and the rates of the explosive pressure were observed to rise as the pressure was augmented. Moreover, as the oxygen concentration decreased, the maximum explosive pressure decreased. At 25 ℃ and oxygen concentration of 21%, as the pressure increased from 1.0 barg to 2.5 bar, the gas deflagration index (Kg) increased significantly from 4.71 barg·m/s to 18.83 barg·m/s.

Al:ZnO의 펄스 스퍼터 증착에서 주파수에 따른 플라즈마의 특성과 기판 온도 변화 (Plasma Characteristics and Substrate Temperature Change in Al:ZnO Pulse Sputter Deposition: Effects of Frequency)

  • 양원균;주정훈
    • 한국표면공학회지
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    • 제40권5호
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    • pp.209-213
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    • 2007
  • Change of the plasma volume by pulse frequency in a bipolar pulsed DC unbalanced magnetron sputtering was investigated. As increasing the frequency at off duty 10% and at a constant power, the plasma volume was lengthened in vertical direction from the AZO target. When there is an electrically floated substrate, the vertical length of the plasma area was not affected by the pulse frequency. Instead, the diameter of the plasma volume was increased. We found that the temperature rise of a substrate was affected by the pulse frequency, too. As increasing it, the maximum temperature rise of a glass substrate was decreased from $132^{\circ}C\;to\;108^{\circ}C$.

중/도시규모 기상모델을 이용한 고층건물군이 연안도시기상장에 미치는 영향 수치모델링 (Numerical Modeling for the Effect of High-rise Buildings on Meteorological Fields over the Coastal Area Using Urbanized MM5)

  • 황미경;오인보;김유근
    • 한국대기환경학회지
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    • 제28권5호
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    • pp.495-505
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    • 2012
  • Modeling the effects of high-rise buildings on thermo-dynamic conditions and meteorological fields over a coastal urban area was conducted using the modified meso-urban meteorological model (Urbanized MM5; uMM5) with the urban canopy parameterization (UCP) and the high-resolution inputs (urban morphology, land-use/land-cover sub-grid distribution, and high-quality digital elevation model data sets). Sensitivity simulations was performed during a typical sea-breeze episode (4~8 August 2006). Comparison between simulations with real urban morphology and changed urban morphology (i.e. high-rise buildings to low residential houses) showed that high-rise buildings could play an important role in urban heat island and land-sea breeze circulation. The major changes in urban meteorologic conditions are followings: significant increase in daytime temperature nearly by $1.0^{\circ}C$ due to sensible heat flux emitted from high density residential houses, decrease in nighttime temperature nearly by $1.0^{\circ}C$ because of the reduction in the storage heat flux emitted from high-rise buildings, and large increase in wind speed (maximum 2 m $s^{-1}$) during the daytime due to lessen drag-force or increased gradient temperature over coastal area.