• Title/Summary/Keyword: 열파

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Phenomena of Hyperbolic Heat Conduction in the Hot Mold with an Inner Defect (내부결함이 있는 고온 금형에서의 쌍곡선형 열전도 현상)

  • Lee, Gwan-Su;Im, Gwang-Ok;Jo, Hyeong-Cheol;Kim, U-Seung
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.25 no.7
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    • pp.952-957
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    • 2001
  • In the glass forming process, the phenomena of hyperbolic heat conduction in the hot mold with an inner defect are studied analytically. It is shown that the temperature predicted by the parabolic model is underestimated compared to the one by the hyperbolic model. As the rmal wave is reflected from the area with defects and then arrives at the surface supplied by the heat flux, it is expected that there exists thermal shock in the materials. The area with defects is assumed to be adiabatic since its thermal conductivity is much lower compared to the one of the material. The results also indicate that the sudden temperature -jump in the mold surface can cause diverse problems such as glass defect (embryo mark, etc), oxidation of mold and coating, and change of material properties.

A Study of the Heat Conduction Phenomena with a Phase Lag of Heat Flux (열유속 상지연이 존재하는 열전도 현상에 대한 연구)

  • Jin, Chang-Fu;Kim, Kyung-Kun;Chung, Han-Shik;Jeong, Hyo-Min;Choi, Du-Yeol;Choi, Soon-Ho
    • Journal of Advanced Marine Engineering and Technology
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    • v.32 no.5
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    • pp.684-690
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    • 2008
  • In most engineering applications related with the heat conduction phenomena, a conventional Fourier heat conduction equation has been successfully applied and it has supplied quite reasonable results. However, it is well known that the Fourier heat conduction equation is failed in the application to the extremely small space and short time, in other words, a nano-scale system and a pico-second time. In this study, non-Fourier effect was evaluated in the heat conduction by considering the concept of a phase lag model. The results show the existence of a heat wave, which means that the heat is transferred with a finite speed while an infinite speed of heat transfer is assumed in the conventional Fourier heat conduction. In addition, the copper and the gold are tested to evaluate the phase lag time between the heat flux and the temperature gradient. The results show that the gold has the heat wave speed faster than that of the copper consistent with the prediction based on an actual experiment.

Development and Application of Evaluation System for Disaster Prevention Ability of Urban Parks (도시공원 방재기능 평가체계 개발 및 적용)

  • Huang, Zhirui;Lee, Ai Ran
    • Ecology and Resilient Infrastructure
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    • v.7 no.3
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    • pp.199-207
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    • 2020
  • Against the backdrop of frequent weather disasters such as floods, droughts, and heat waves worldwide, urban parks should provide functions for the safety of urban residents as well as rest, culture, and ecological functions. In this study, a classification system for urban disaster prevention parks is proposed for the safety of the urbanites with the aim of securing a complex function in a green space in response to climate changes in the city. Analytical indicators were extracted through literature research, and the classification system was verified through on-site surveys of the target sites and interviews with those involved. The large class for evaluation was divided into three types: location, spatial composition, and disaster prevention complex facilities of urban parks; the direction of improvement was proposed for problems identified through empirical analysis.

Development of Photothermal Mirage Technique for Measuring Thermal Diffusivity (열확산도 측정을 위한 광열 신기루 기법 개발)

  • Choi, Sun-Rock;Lee, Joo-Chul;Kim, Dong-Sik
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.27 no.9
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    • pp.1220-1228
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    • 2003
  • The mirage technique is proved to be powerful in measuring the thermal diffusivity of materials. In particular, its contactless nature makes it suitable for delicate samples and microscale structures. In this study, thermal-wave-coupling method is developed in a general form for both thermally thin and thick samples. In the suggested measuring scheme, the probe beam can be positioned close to the pump beam and the absolute position need not be measured. Therefore the new scheme provides a relatively simple yet effective way to determine the thermal diffusivity of thermally thick samples. Thermal diffusivities of bulk samples like Ni and Al were measured and the characteristics of mirage signal for a thin film were observed by using the mirage experimental setup. The apparent thermal diffusivity was measured by varying such parameters as probe beam height, size of pump beam, power of pump beam, and surface condition of sample. From the practical standpoint, it is shown that the size of the pump beam is the most important factor for accurate thermaldiffusivity measurement. Experiments using thin-film samples show that the thermal diffusivity of a substrate covered with thin film can be measured by photothermal mirage signals.

A Numerical Study on a Prediction of Performance of the Metal Hydride Thermal Conversion System through the Propagation Phenomena of Superadiabatic Thermal Waves (초단열 열파동의 전파현상을 활용하는 수소저장합금 열변환 시스템의 성능예측을 위한 수치해석적 연구)

  • Kim, Gyu-Jeong;Kim, Gwan-Yeong;Chae, Jae-U
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.25 no.4
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    • pp.572-582
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    • 2001
  • A method of metal-hydride thermal conversion that is an alternative to the traditional method is proposed and investigated. The unit heat pump consists of reactors of two different metal-hydrides are distributed inside parallel channels filled with porous media. The channels are blown through with a heat-transfer agent. Thermal conversion develops as a set of successive heat waves. By a numerical-modeling method it is shown that the maximum thermal effect is attained in synchronous motion of the heat wave and the heat source (or sink) that accompanies the phase transition in the succession of unit metal-hydride pumps. The results are presented in a form convenient for prediction of the thermal and energy efficiency of the proposed thermal-conversion method in real devices.

The Sensitivity Analysis of Thermal Expansion Breakage of Multi-layer Glazing in Building Envelope (건물 외피에 적용된 복층창의 열팽창 파손에 대한 민감도 분석 연구)

  • Yoon, Jong-Ho;Kim, Seung-Chul;Im, Kyung-Up;Oh, Myeong-Hwan
    • KIEAE Journal
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    • v.14 no.6
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    • pp.93-97
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    • 2014
  • Curtain wall system of office buildings has recently become very common in Korea. As the multi-layer curtain glazing is exposed to outdoor environment, it is very subjected to direct environmental impact. Consequently, breakage and cracks of glazing due to heat expansion is frequently observed. This study explores various causes and aspects for destruction of multi-layer glazing. A sensitivity analysis was performed on the basis that thermal changes causes damage to the multi-layer glazing. Air temperature in air cavity within the multi-layer glazing was examined to find its effect on multi-layer glazing breakage. Analysis showed high deflection to depth ratio of 1:1.8 and that higher the aspect ratio, smaller is the deflection. Allowable pressure showed that the weakest value is for aspect ratio of 1:2.9. Sensitivity analysis by the area of the glazing showed that as area of glazing becomes higher, allowable pressure and deflection-depth ratio becomes smaller. For allowable pressure and allowable deflection-depth within air cavity, the glazing breakage occurred at least $107^{\circ}C$. The results from glazing breakage by thermal factor shows that it is hard to break the glazing with only an increase in air cavity temperature in multi-layer glazing applied in buildings.

Climate Change during the recent 10 years in Korea (한반도 최근 10년 기후특성)

  • Kwon, Won-Tae;Boo, Kyung-On;Heo, In-Hye
    • Proceedings of the Korea Water Resources Association Conference
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    • 2007.05a
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    • pp.278-280
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    • 2007
  • 우리나라는 지난 94년간 1.5도 상승하여 전지구 온난화추세를 상회하였다. 기온뿐만 아니라 강수량 역시 변화하였는데 변동폭이 크기는 하나 장기적으로 증가하는 경향으로 20세기초에 비해 상대적으로 기온이 높고 강수량도 많은 특성을 보인다. 평균적인 기후변화추이와 더불어 특히 최근 10년($1996{\sim}2005$년)은 1850년 이후 지구평균기온이 가장 높았던 기간으로, 세계적으로 열파, 홍수, 가뭄, 태풍 등 기상이변에 의한 인명과 재산 피해, 생물종의 멸종 등 사회경제적 피해가 막대하였다. 우리나라 역시 폭염, 호우등의 빈번한 출현으로 급격해지는 온난화추세 영향을 반영하였는데 이러한 기후 변화양상을 파악하기 위하여 우리나라의 최근 10년간 기후 특성과 계절별 현상일수의 변화를 분석하였다. 최근 10년(1996-2005년) 우리나라 기후변화의 특성을 보면 우리나라(15개 관측지점자료)는 평균기온이 과거 30년$(1971{\sim}2000)$ 평균대비 $0.6^{\circ}C$ 상승하였다. 계절별로 봄은 평년대비 $0.7^{\circ}C$, 여름은 $0.4^{\circ}C$, 가을은 $0.6^{\circ}C$, 겨울은 $0.7^{\circ}C$ 상승하여 봄과 겨울의 상승폭이 가장 크다. 연강수량은 30년 평균대비 최근 10년 강수량은 11% 증가하였고 특히 여름은 증가폭이 가장 커서 18% 증가하였다. 계절에 따라 다양한 기상현상의 변화도 나타났다. 3월 이후에 나타나는 늦서리의 종료일은 평균적으로 3월 말경에 나타났는데 최근 10년에는 3월 중순으로 2주 앞당겨졌고 이 추세는 특히 1993년 이후 뚜렷하다. 늦서리의 발생일수도 평균 4일 정도 줄었다. 일평균기온 $20^{\circ}C$이상인 날은 평년에 비해 최근 10년 동안 약 2일 증가하여 여름 시작시기가 빨라지고 있음을 알 수 있다. 일최저기온이 25도 이상인 열대야는 평년대비 최근 10년간 연간발생일수가 1.3일 증가하였으나 일최고기온 $35^{\circ}C$ 이상인 날의 수는 오히려 감소하는 경향을 보인다. 이것은 여름철 강수량이 증가하고, 호우발생빈도, 특히 8월의 강수일수가 증가하고 있다는 것과 밀접한 관련이 있다. 여름과 가을에 우리나라에 영향을 미치는 태풍의 수는 뚜렷한 추세를 보이지 않으나, 2002년 루사, 2003년 매미로 인하여 각각 6조원, 4조원 이상의 막대한 피해가 발생하였다. 태풍에 의한 피해액은 GDP 대비 약 0.9%(태풍 루사)로 최근 경제상장률과 비교해 보면, 상당한 비율을 차지한다. 우리나라에 영향을 미치는 태풍은 연근해의 해수면 온도가 높아지면 세기가 강해질 가능성이 높다. 폭설과 한파일수도 평년대비 최근 10년 감소하였고 일최저기온이 영하 $10^{\circ}C$ 이하인 날도 연간 발생일수가 감소하였다. 최근 10년간 우리나라 기후의 변화특성은 기온상승과 더불어 서리종료일이 앞당겨지고 열대야가 증가하고 폭설, 한파, 겨울철 일최저기온 영하 10도 이하인 날의 감소 등이 나타나고, 여름철 재해의 원인인 호우일수는 증가하는 추세이다. 앞으로 지구온난화는 가속화될 것으로 전망되고 이로 인한 피해규모도 커질 것으로 예상된다. 최근 우리나라에서 나타나는 기후변화의 추이를 감안할 때, 기후변화에 대한 장기적인 대비책을 마련하여 이로 인한 부정적인 영향을 감소시키기 위하여 국가차원의 체계적인 대응이 필요하다.

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