• 제목/요약/키워드: thermal insulation rate

검색결과 160건 처리시간 0.032초

여름철 냉방 조건에서의 착의 훈련이 인체의 체온 조절 반응에 미치는 효과 (Effect on the Human Thermoregulation of Wear Training in Air Condition)

  • 김미경;최정화;염희경
    • 한국의류학회지
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    • 제19권3호
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    • pp.504-515
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    • 1995
  • This study was performed to investigate that wear training using thermal insulation with clothes has the effect on the human thermoregulatory response, especially on the heat tolerance. Twelve men and women in twenties wert divided into the control group, the training groups and each group except the control group had participated in wear training. The heat tolerance was assessed in all subjects who had participated in the experiment carried out in hot environment(40$\pm$1$^{\circ}C$, 50$\pm$5%RH) by such parameters as rectal temperature, skin temperature, systolic blood pressure, diastolic blond pressure, plume rate, total sweat volume, local sweat volume, subjective sensation, and the differences of heat tolerance in each group were compared. The results were as follows: In hot environment(4$0^{\circ}C$) the changing width of rectal temperature was decreased in the control and the heavy clothing group. Forehead and abdomen temperature in hot environment were significantly decreased after the training. Sweat rate was higher after the training than before. In all experimental groups, systolic and diastolic blood pries.;uses in hot environment(4$0^{\circ}C$) were significantly decreased after the training.

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중소형 화재시험(ISO 5660-1 및 EN 13823)을 이용한 샌드위치패널 연소성능 분석 (Analysis on the Reaction-to-fire's Performance of Sandwich Panel Systems by using ISO 5660-1 and EN 13823 Fire Tests)

  • 박계원;임홍순;정재군;김운형
    • 한국화재소방학회논문지
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    • 제23권1호
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    • pp.33-39
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    • 2009
  • 본 연구에서는 ISO 5660-1(cone calorimeter test)과 EN 13823(Single Burning Item;SBI)에 의해 샌드위치패널에 대한 화재연소성능이 비교 분석되었다. 4종의 국내 샌드위치패널(심재 및 패널재)에 대해 착화시간, 열방출율, 연기발생율, 산소소모율 등과 같은 변수들이 측정되었다. 또한, 각 종류의 패널에 대한 연소특성이 시험방법별 및 소재별로 분석되었으며, 최종적으로 일본, 캐나다, 유럽 EN 1350-1의 화재성능 등급분류기준에 의해 검증되었다.

Membrane Type LNG선의 3차원 정상상태 온도분포 및 BOR 계산 프로그램 개발에 관한 연구 (A Study on the Three-Dimensional Steady State Temperature Distributions and BOR Calculation Program Development for the Membrane Type LNG Carrier)

  • 이정혜
    • Journal of Advanced Marine Engineering and Technology
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    • 제23권2호
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    • pp.140-149
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    • 1999
  • This study is on the development of the computer program that calculates a 3-D hull temperadistribution and analyzes BOR(Boil off rate) to be important to the heat design of a membrane type LNG carrier. The quarter of a tank is taken as an calculation model. And the thermal conductivity of insulation is assumed to be the function of a temperature. In the present steady state calculation, the temperature of LNG in a cargo tank is assumed to be -$162^{\circ}C$ and the air temperature of a cofferdam, to be +$5^{\circ}C$. The lowest air temperature in compartments is calculated as $21.39^{\circ}C$ under the USCG condition ($T_{air}=-18^{\circ}C,\;T_{sw}=O^{\circ}C)$ and B.O.R value is O.0977%/day under the maximum boil-off condition, IMO IGC ($T_{air}=45^{\circ}C,\;T_{sw}=32^{\circ}C$), which satisfies the requirement by KOGAS. The calculated temperature distribution over tank panels at each condition is maximum 3% less than GTT's results. From the results of this study, it can be concluded that the present design of LNG cargo tank satisfies the requirement by KOGAS.

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마이크로기포제를 사용한 콘크리트의 열적 특성에 관한 연구 (Study on the Thermal Characteristics of Concrete Using Micro Form Admixture)

  • 박영신;김정호;전현규;서치호
    • 한국구조물진단유지관리공학회 논문집
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    • 제17권2호
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    • pp.101-109
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    • 2013
  • 최근 전세계는 급격한 기후조건과 환경변화에 의해 냉난방 에너지 사용이 증가되고 있으며 이는 화석 연료 사용량 증가와 함께 $CO_2$ 배출량 상승, 지구 온난화 등 환경과 에너지에 대한 수많은 문제를 유발하고 있어 세계 각국은 온실가스 배출 및 에너지 소비 감소를 위한 대응책을 마련하고 있다. 우리나라 또한 정부의 '저탄소 녹색 성장' 및 '친환경 주택 건설기준 및 성능' 등의 정책을 선포하는 등 건물 부분에 있어 환경과 에너지 관리에 대한 노력을 하고 있다. 우리나라의 총 에너지 소비량 중 건물 부문이 차지하는 비율은 약 25%에 달하며 다른 산업 분야에 비해 연간 에너지 소비 증가율이 높은 편이다. 건물에서 에너지 손실이 가장 큰 부위는 외피로서, 이 부분의 에너지 손실을 감소하기 위한 연구가 활발히 진행되고 있으나 이는 대부분 창호 및 단열재를 사용한 연구이며 건물 외피의 70% 이상을 차지하고 있는 콘크리트에 대한 연구는 미미한 실정이다. 따라서 건물의 에너지 손실을 최소화하기 위해서는 콘크리트 자체에서 단열성능을 확보할 수 있어야 하며 이에 대한 연구가 필요하다. 따라서 본 연구는 콘크리트의 단열성능을 확보하면서 구조용으로 사용이 가능한 콘크리트를 개발하기 위한 실험을 진행하였다. Test 1의 실험결과로써, Micro Foam Admixture (MFA)를 사용한 콘크리트는 슬럼프 경시변화가 개선되었으며, MFA의 혼입율을 증가할 경우 압축강도는 감소되고 열전도율은 증가되는 결과를 나타내었다. Test 2의 실험결과에서는 물시멘트비 변화시 물시멘트비 증가에 따라 압축강도는 감소하였고 열전도율은 증가하였다. 그러나 잔골재율 변화에 대한 물성 및 열적 특성은 큰 차이를 나타내지 않았다.

Accelerated Thermal Aging Test for Predicting Lifespan of Urethane-Based Elastomer Potting Compound

  • Min-Jun Gim;Jae-Hyeon Lee;Seok-Hu Bae;Jung-Hwan Yoon;Ju-Ho Yun
    • Elastomers and Composites
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    • 제59권2호
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    • pp.73-81
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    • 2024
  • In the field of electronic components, the potting material, which is a part of the electronic circuit package, plays a significant role in protecting circuits from the external environment and reducing signal interference among electronic devices during operation. This significantly affects the reliability of the components. Therefore, the accurate prediction and assessment of the lifespan of a material are of paramount importance in the electronics industry. We conducted an accelerated thermal aging evaluation using the Arrhenius technique on elastic potting material developed in-house, focusing on its insulation, waterproofing, and contraction properties. Through a comprehensive analysis of these properties and their interrelations, we confirmed the primary factors influencing molding material failure, as increased hardness is related to aggregation, adhesion, and post-hardening or thermal-aging-induced contraction. Furthermore, when plotting failure times against temperature, we observed that the hardness, adhesive strength, and water absorption rate were the predominant factors up to 120 ℃. Beyond this temperature, the tensile properties were the primary contributing factors. In contrast, the dielectric constant and loss tangent, which are vital for reducing signal interference in electric devices, exhibited positive changes(decreases) with aging and could be excluded as failure factors. Our findings establish valuable correlations between physical properties and techniques for the accurate prediction of failure time, with broad implications for future product lifespans. This study is particularly advantageous for advancing elastic potting materials to satisfy the stringent requirements of reliable environments.

배전용변압기의 부하운전에 의한 온도 및 유전특성 분석 (Temperature Rise and Dielectric Characteristics of Distribution Transformers with Over-Loading Operation)

  • 김병숙;이병성;송일근;한병성;정종만
    • 조명전기설비학회논문지
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    • 제21권1호
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    • pp.104-110
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    • 2007
  • 본 논문은 권선내부에 온도계가 설치된 지상변압기를 제작하여 부하운전에 따른 배전용 변압기의 온도상승 특성과 절연유의 유전특성 변화를 관찰하였다. 관찰결과 배전용변압기의 경우 과열점은 세 권선 중 두개의 권선이 접하고 권선의 약 2/3 높이에 위치하고 있으며, 과열점과 절연유 상부 간에 약 $17[^{\circ}C]$의 일정한 온도차를 확인할 수 있었다. 또한 절연유의 정전용량특성은 온도와 선형적인 관계로 감소하는 특성을 보이며, 그 기울기는 열화율과 무관하게 -0.0106의 일정한 값을 관찰할 수 있었다. 이 결과는 수명손실의 정확한 계산과 열화진단을 위한 기구로 활용할 수 있을 것이다.

유중가스농도를 이용한 유입식 변압기 고장진단 기법의 신뢰성에 관한 연구 (A Study on the Reliability of Failure Diagnosis Methods of Oil Filled Transformer using Actual Dissolved Gas Concentration)

  • 박진엽;진수환;박인규
    • 전기학회논문지P
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    • 제60권3호
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    • pp.114-119
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    • 2011
  • Large Power transformer is a complex and critical component of power plant and consists of cellulosic paper, insulation oil, core, coil etc. Insulation materials of transformer and related equipment break down to liberate dissolved gas due to corona, partial discharge, pyrolysis or thermal decomposition. The dissolved gas kinds can be related to the type of electrical faults, and the rate of gas generation can indicate the severity of the fault. The identities of gases being generated are using very useful to decide the condition of transformation status. Therefore dissolved gas analysis is one of the best condition monitoring methods for power transformer. Also, on-line multi-gas analyzer has been developed and installed to monitor the condition of critical transformers. Rogers method, IEC method, key gas method and Duval Triangle method are used to failure diagnosis typically, and those methods are using the ratio or kinds of dissolved gas to evaluate the condition of transformer. This paper analyzes the reliability of transformer diagnostic methods considering actual dissolved gas concentration. Fault diagnosis is performed based on the dissolved gas of five transformers which experienced various fault respectively in the field, and the diagnosis result is compared with the actual off-line fault analysis. In this comparison result, Diagnostic methods using dissolved gas ratio like Rogers method, IEC method are sometimes fall outside the ratio code and no diagnosis but Duval triangle method and Key gas method is correct comparatively.

초단열 슈퍼윈도우의 건물에너지효율등급 적용 연구 (A study on the Insulation Performance of the Super Window applied to building energy efficiency rating)

  • 장철용;김치훈;안병립
    • 한국태양에너지학회:학술대회논문집
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    • 한국태양에너지학회 2009년도 추계학술발표대회 논문집
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    • pp.205-210
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    • 2009
  • Generally, the building's windows and ventilation for the purpose of mining and the vista and windows by emotional engineering design area is a growing trend. According to the flow of energy is lost from the building, will be achieved through the walls and roof and windows. Among these, the window through the loss of about 45% of the entire building is big enough to rate. In addition, the building regulation U-value Limitation of window is $3.3W/m^2$ K in southern regions, while U-value Limitation of wall is $0.35{\sim}0.58W/m^2$ K. It means that the energy loss through windows is six times more than it through wall. Therefore, the purpose of this study is to evaluate the environmental performance of the super window system by verification experiment. The results of this study are as follows; 1)Thermal performance of insulated Super Window measured as $1.44W/m^2$ $^{\circ}C$ 2)Required energy for heating was cut down about 5.3% from 266.99 $MJ/m^2$ yr to 252.85 $MJ/m^2$ yr 3)Super Window's reduction rates increased 4.1% from 31.48% to 35.58% when it is compared to normal windows. 4)Building energy efficiency rating elevated from 2nd rating to 1st rating.

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Fabrication of mineral fiber via melt spinning method from blast furnace slag

  • Wang, Xiao-Song;Hur, Bo-Young
    • 한국결정성장학회지
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    • 제24권4호
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    • pp.158-163
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    • 2014
  • Mineral fiber, or be called mineral wool when it assembles in large amounts, is a kind of wide applied man-made material with excellent thermal and acoustic insulation properties. In this work, mineral fiber was produced via melt spinning method by using iron blast furnace slag as raw material. Two critical experimental parameters for fabrication were investigated: melt pouring temperature and rotating speed of spinning wheels. The mineral fiber produced under the condition of melt pouring temperature $1500^{\circ}C$ and spinning speed 4000 rpm, showed the smoother surface and most quality, while the others had rough surfaces or with heavy shots. In general, mineral fibers with the size in the range of $12{\sim}49{\mu}m$ in diameter and 8~130 mm in length can be fabricated by this method, and the production rate is more than 34 wt.%, which could be up to 57 wt.% at maximum.

PTFE 노즐로부터 발생하는 용삭가스를 고려한 스위칭 아크 해석 (Numerical Analysis of Switching Arcs with the Ablation of PTFE Nozzles)

  • 이원호;김홍규;이종철
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2011년도 제42회 하계학술대회
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    • pp.1536-1537
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    • 2011
  • The high-voltage circuit breaker plays an important role in the electrical system because there has been a need for suitable switching devices capable of initiating and interrupting the flow of the electric fault current. It continues as the contacts recede from each other and as the newly created gap is bridged by a plasma. The arc plasma happens inside the insulation nozzle of SF6 self-blast interrupter which is newly developed as the next-generation switching principle. The ablation of PTFE nozzle is caused by this high temperature medium, the PTFE vapor from the nozzle surfaces flows toward the outlets and the pressure chamber. The vapor makes the pressure of the chamber increased by heat and mass transfer from the arcing zone. Because the rate of ablation depends on the magnitude of applied current, it decreases when the current goes to zero. The compressed gas inside the chamber flows reversely toward the arc plasma during this moment. According to this principle, the arc can be cooled down and the fault current can be interrupted successfully. In this study, we calculate arc plasmas and thermal-flow characteristics caused by fault current interruption inside a SF6 self-blast interrupter, and to investigate the effect of PTFE ablation on the whole arcing history.

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