• 제목/요약/키워드: Airtightness Performance

검색결과 54건 처리시간 0.031초

기존 단독주택의 침기량 산정법에 관한 연구 (A Study on the Calculation Method of Infiltration for Detached Houses)

  • 김길태;유정현;황하진;김경식
    • 설비공학논문집
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    • 제25권9호
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    • pp.493-498
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    • 2013
  • The purpose of this study is to find the infiltration of detached houses, for energy consumption analyses. The pressurization and depressurization method is used to determine infiltration. Blower door tests are expressed in terms of ACH 50, which stands for the hourly air change rate at 50 Pa of fan pressure. The ACH 50 of existing Detached Houses ranges from 5 to 50. Air infiltration is related to construction year and accuracy, maintenance conditions, and so on. When estimating the infiltration of random detached houses, the year used can be the base value of the infiltration rate from 0.25 to 2.0 times/h. The maintenance conditions, construction accuracy and repair affect the air infiltration 0 to 0.5 times/h, 0 to 0.3 times/h, 0 to 1 times/h, respectively.

공동주택의 한국형 온돌시스템 적용에 관한 연구 (A Study on the Korean Ondol-System Application in Apartment Houses)

  • 안민희;최창호;유기형;조동우
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2006년도 하계학술발표대회 논문집
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    • pp.860-865
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    • 2006
  • The traditional Korean Ondol System that is a radiant floor heating system was made as warm floor and cool indoor temperature. Nowaday, Ondol is developed as the hydronic floor heating system. But unbalance of floor temperature and indoor temperature is occurred bocause strengthen thermal insulation and airtightness in building changes thermal performance. To solve these problems, we examine actual indoor environment of heating system methods in existing apartments and present the new method of floor heating system. The existing heating system made definite indoor temperatures but floor temperatures that is $22^{\circ}C-26^{\circ}C$ was maintained. To solve these problems, we adopted the differential heating system which made warm area and cool area. A differential heating system was made different pitches of heating pipe in single zone and ratio of warm area to cool area is 1 to 2. As a result of experiments, warm area temperature is $40.7^{\circ}C$, cool area temperature is $36.1^{\circ}C$. A difference of temperature between both area is 4K. A distribution of indoor vertical temperature is similar to both warm area and cool area.

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Air Quality Changes in a Museum Damaged by a Tsunami - Whale and Sea Museum, Iwate, Japan -

  • MATSUI, Toshiya;KAWASAKI, Emi;Huttmann, Imme
    • 보존과학회지
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    • 제35권1호
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    • pp.51-60
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    • 2019
  • This paper provides quantitative data that describes the evolution of the air quality in the Whale and Sea Museum, located in the Iwate prefecture, collected after the 2011 Great East Japan Earthquake and tsunami. The museum was damaged significantly by the disaster, and restoration works continued for over six years. The air quality in the temporary storage facility and museum was monitored during the rehabilitation process. Evaluation of air quality is carried out by gas chromatography- mass spectrometry, ion chromatography and high-performance liquid chromatography. The results showed that the characteristics of the chemical components differed depending on the measurement locations inside the building. The museum atmosphere tended to be alkaline as the airtightness increased because of the maintenance works at the entrance. It was also determined that it was necessary to study the intake/exhaust routes and to clean them according to the contamination degree. In Japan, there are recommended museum air quality standards for acetic acid, formic acid, alkali, and aldehydes. The results indicated that these standards should not be used as a reference for damaged museums. Furthermore, at the temporary storage facilities for to store the collections during the rehabilitation of the museum, solvents such as ethyl benzene, toluene, and xylene are initially abundant, although they can be reduced by ventilation, while other components such as 2E1H was confirmed in this case are likely to remain.

시동/정지반복에 의한 공랭식 고분자연료전지 스택 내구성 평가 (Durability Evaluation of Air-Cooled Proton Exchange Membrane Fuel Cells Stacks by Repeated Start-Up/Shut-Down)

  • 유동근;김현석;오소형;박권필
    • 한국수소및신에너지학회논문집
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    • 제32권5호
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    • pp.315-323
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    • 2021
  • The air-cooled proton exchange membrane fuel cells (PEMFC) stacks, which is widely used in small-sized PEMFC, have a problem in that durability is weaker than that of the water-cooled type. Because the cathode is open to the atmosphere and the structural problem of the air-cooled stack, which is difficult to maintain airtightness, is highly likely to form a hydrogen/air boundary during start-up/shut-down (SU/SD). Through the accelerated durability evaluation of the 20 W air-cooled PEMFC stack, the purpose of this study was to find out the cause of the degradation of the stack and to contribute to the improvement of the durability of the air-cooled PEMFC stack. In this study, it was possible to evaluate durability in a relatively short time by reducing 20-30% of initial performance by repeating SU/SD 1,000 to 1,200 times on an air-cooled PEMFC stack. After disassembling the stack, each cell was divided into two and the performance analysis showed that the electrode degradation was more severe in the anode outlet membrane electrode assembly (MEA), which facilitates air inflow as a whole, than in the inlet MEA. It was shown that the cathode Pt was dissolved/precipitated to deteriorate the polymer ionomer inside the membrane.

Cathode 개방형 고분자연료전지 스택 내구성 평가 (Durability Evaluation of Cathode Open-type Proton Exchange Membrane Fuel Cells Stacks)

  • 유동근;김현석;오소형;박권필
    • Korean Chemical Engineering Research
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    • 제60권1호
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    • pp.12-19
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    • 2022
  • 소형 이송형 고분자전해질 연료전지 (PEMFC)에 많이 사용되는 cathode 개방형 PEMFC 스택은 내구성이 약한 문제점이 있다. 13개의 셀로 이루어진 PEMFC 스택의 가속 내구성 평가를 통해 스택의 열화 원인을 찾고 cathode 개방형 스택의 내구성 향상에 기여하고자 하였다. Cathode가 대기에 개방되어 있고, 기밀 유지가 어려운 cathode 개방형 스택의 구조적 문제점 때문에 시동/정지 (SU/SD)시 수소/공기 경계가 형성되어 cathode를 열화시킨다. 본 연구에서는 cathode 개방형 스택에 SU/SD 1,800회 반복 후 초기 성능의 54%가 감소하여 비교적 짧은 시간에 내구성을 평가할 수 있었다. 스택 해체 후 각 셀을 2등분하여 성능분석하였다. 전체적으로 공기 유입이 용이한 anode 출구부 MEA가 유입부 MEA보다 전극 열화가 더 심해서 SU/SD시 수소/공기 경계 형성이 주요 열화 원인임을 확인했다.

WUFI 시뮬레이션 프로그램을 이용한 목조주택 벽체 레이어 구성에 따른 hygrothermal 성능 평가 (Evaluation of The Hygrothermal Performance by Wall Layer Component of Wooden Houses Using WUFI Simulation Program)

  • 강유진;김수민
    • Journal of the Korean Wood Science and Technology
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    • 제44권1호
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    • pp.75-84
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    • 2016
  • 건물에너지 저감에 효과적으로 기여하는 건축 재료를 이용하는 목조주택을 기반으로 단열 성능이 향상되고 있다. 그러나 고단열 고기밀화로 인한 습기 제어가 어려워져 외벽의 결로 및 곰팡이 발생으로 인하여 성능이 저하될 수 있다. 이에 열 습기 시뮬레이션 프로그램을 이용하여 선정한 5가지 형태의 목조주택 외벽의 열 습기 성능, 결로 발생 및 곰팡이 성장 위험을 평가하였다. 목조주택은 농촌주택 표준설계도 '10과 '14, $2^{{\prime}{\prime}}{\times}6^{{\prime}{\prime}}$형, EIFS 그리고 목조형 패시브 하우스로 선정하였고, 각 벽체 레이어를 구성에 따라 벽 A, B, C, D, E로 구분하였다. 벽체의 열관류율은 각각 0.171, 0.172, 0.221, 0.150, $0.079W/m^2K$이다. 벽 A와 C의 OSB 절대함수량은 기준치 20%를 초과하는 값이 나타났고, 결로 평가를 통하여 단열재 내부 표면에서 겨울철에 결로가 발생할 수 있음을 확인하였다. 벽 D와 E는 외단열 벽체로 다른 벽체에 비하여 함수량 평가와 결로 평가에서 우수한 결과를 보여주었다. 그러나 곰팡이 성장 위험 평가에서 5가지 형태의 벽체 모두 곰팡이 성장 위험성이 있음을 확인하였다. 이에 따라 외벽의 열 습기 성능의 차이는 열적 성능에 의한 발생보다는 레이어 구성에 따른 차이가 발생하는 것으로 판단되었다. 모든 벽체는 비슷한 열적 성능을 가지고 있으나 레이어에 따라 동일한 조건에서의 적합성이 다르게 나타나는 것을 확인하였다.

잣나무열처리재의 흡방습성능에 미치는 영향인자 분석 (Analysis of Factors Affecting the Hygroscopic Performance of Thermally Treated Pinus koraiensis Wood)

  • 장윤성;한연중;엄창득;박주생;박문재;최인규;여환명
    • Journal of the Korean Wood Science and Technology
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    • 제40권1호
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    • pp.10-18
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    • 2012
  • 최근 만들어지고 있는 거주공간은 단열성능 향상을 통한 냉난방 에너지 절약을 위하여 더욱 기밀해지고 있다. 이로 인해 일상생활 중에 발생하는 수분의 인위적인 배출과 외부공기의 인위적인 유입이 줄어듦에 따라 건축내장재의 자연조습기능에 대한 관심이 증대하고 있다. 본 연구에서는 열처리된 잣나무의 흡 방습성능을 평가하고 이에 영향을 미치는 인자들을 분석하였다. 상대습도 변화에 따른 평형함수율과 흡 방습률을 측정하였고, 조도(거칠기)와 미시적 표면형상, 그리고 FT-IR spectrum과 흡방습성과의 관계를 고찰하였다. 본 연구결과는 거주공간의 조습성능 정량화 평가시스템 구축을 위한 기초자료로 활용될 수 있을 것이라 기대된다.

주거용 건물의 개별 환기시스템 필요성에 관한 연구 (The Individual Heat-recovery ventilation system of Residential Buildings)

  • 신우철;이왕제;윤종호;백남춘
    • KIEAE Journal
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    • 제14권6호
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    • pp.99-104
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    • 2014
  • Recently supply of low energy house is increasing which can enhance energy efficiency and indoor environment comfort. Low energy house have to secure air tightness as well as thermal performance so house become high airtightness and inevitably need heat recovery ventilator to enhance indoor air quality. However, most of current ventilation systems are one-click, controlling the entire space so it causes increasing of heating load and fan power which makes it hard to save energy. Thus, Individual Control system is required which can achieve both enhancing indoor air quality and decreasing heating load and electric fan power. Thereby, in this study, we analyzed the correlation between ventilation and fan power through mock-up experiment and measured ventilation load under individual control system. As a result, under the condition of $24^{\circ}C$ of indoor temperature for 6 month(November to April) in Daejeon, ventilation load by fan speed was $10.9{\sim}19.6kWh/m^2{\cdot}a$ when operated 24 hours and $7.6{\sim}13.7kWh/m^2{\cdot}a$ when operated 12 hours in night time. In addition, it is possible to reduce at most 60% of ventilation load under the individual control system; measured ventilation load was $7.4kWh/m^2{\cdot}a$ when operated 24 hours, and $5.5kWh/m^2{\cdot}$ when operated 12 hours in night time.

BIPV모듈의 제조공정에 관한 실험적 연구 (An Experiment Study on Manufacturing process of BIPV Module)

  • 안영섭;김성태;이성진;윤종호
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2010년도 추계학술대회 초록집
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    • pp.54-54
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    • 2010
  • In this study, the correlation between temperature and the gel-content of the module were analyzed through experiments. Amorphous thin-film solar cell used in this experiment has a visible light transmission performance of 10%. In addition, ethylene vinyl acetate(EVA) film and the clear glass have been used for the modulation. The most important process is to laminate the module in the manufacturing process of BIPV(Building integrated photovoltaic) module. Setting parameters of laminator in the lamination process are temperature, pressure and time. Setting conditions significantly affect the durability, watertightness and airtightness of module. The most important factor in the setting parameters is temperature to satisfy the gel-contents. The bottom and top surface temperature of module are measured according to setting temperature of laminator. The results showed $145^{\circ}C$ of max temperature of the bottom surface and $128^{\circ}C$ of max temperature of top surface on the module at the temperature condition of $160^{\circ}C$. And at the another temperature condition of laminator with $150^{\circ}C$, the max temperature do bottom and top are $117^{\circ}C$ and $134^{\circ}C$ respectively. The temperature difference between bottom and top of the module occurred, that is because heat has been blocked by the clear glass and the bottom of the cells absorb the heat from the laminator. In this particular, the temperature difference between setting temperature of the laminator and the surface temperature of the module showed $15^{\circ}C$, because the heat of laminator plate is transferred to the surface of the module and heat is lost at this time. As a results, gel-content showed 94.8%, 88.7% and 81.7% respectively according to the setting temperature $155^{\circ}C$, $150^{\circ}C$ and $145^{\circ}C$ of the laminator. In conclusion, the surface temperature of module increases, the gel-contents is relatively increased. But if the laminator plate temperature is too high, the gel-content shows rather decline in performance. Furthermore, the temperature difference between setting temperature and the surface temperature of the module is affected by laminating machine itself and the temperature of module should be considered when setting the laminator.

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수상함 격실기밀시험 결과의 신뢰성 확보를 위한 압력 보정 시스템 개발 (Development of Pressure Correction System for Surface Vessel to Ensure Reliability of Compartment Test Result)

  • 민일홍;김준우;손기중
    • 한국산학기술학회논문지
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    • 제22권1호
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    • pp.409-414
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    • 2021
  • 수상함이 전투 환경에서 우수한 임무수행능력과 생존성을 구현하기 위해서는 구획을 차단하는 수밀/기밀 성능이 중요하다. 위와 같은 요구사항을 충족을 위해 함정 건조 후 시운전에서 구조요소(격실 및 탱크)에 대한 밀폐성과 특정부위에 대한 강도의 적합성을 검사하며, 특히 수선에 인접한 격실들의 격실기밀시험(Air test)을 수행한다. 격실기밀시험은 대상 격실에 공기를 주입하여 시운전 평가서 상의 요구압력까지 압을 적용하고, 일정 시간동안 압력강하 값을 확인하여 해당 구역의 요구조건 충족여부를 판단한다. 검사 기준은 10분 동안 감소된 압력이 시운전 평가서의 압력강하 허용치 이내이어야 한다. 하지만 외기온도의 영향이 큰 여름철에 격실기밀시험 진행 간 유입되는 열이 내부 공기의 온도를 상승시키고, 이로 인해 공기가 팽창하여 격실 내 압력이 증가하는 현상이 식별되었다. 이러한 현상은 격실기밀시험에서 최종 압력강하 값을 정확히 판단할 수 없게 하고 평가결과에 대한 신뢰성을 결여시킬 수 있다. 본 연구를 통해 격실 내 온도변화 영향을 보정하기 위한 시스템을 고안하였다. 개발된 시스템은 격실 내 온도변화에 의한 압력 변화량을 계산하여 보정값을 출력한다. 이상기체 방정식을 통해 압력변화량을 계산하며, 격실기밀시험 간 온도유지 및 증가/감소를 반영할 수 있도록 개발되었다. 계산된 압력 보정값을 NIST REFPROP의 데이터 베이스와 비교하였을 때, 최소 0.126 %에서 최대 0.253 %의 차이를 보였다.