• 제목/요약/키워드: Passive Ventilation

검색결과 82건 처리시간 0.113초

ZEB 활성화를 위한 부하기준 산정 방법 연구 (A Study on the Calculation Method of Load standard for ZEB activation)

  • 이항주;김인수
    • 에너지공학
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    • 제26권4호
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    • pp.92-99
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    • 2017
  • 국내에서는 국토부 7대 신산업, 산업부 8대 신산업으로 제로에너지빌딩이 지정되었으며, 건물외피의 단열성능 극대화와 건물 기기 효율향상 및 신재생 보급 확대를 위해 부처간 융합을 통해 제로에너지빌딩 보급 활성화 달성을 목표로 하고 있다. 국내에서 시행 중인 제로에너지빌딩 인증제에 해당되는 건물에너지효율등급 1++이상이 되는 건축물들의 부하(냉방, 난방, 급탕, 조명, 환기)들의 에너지소요량을 분석하여 대략적인 부하들의 수준을 파악하고 제로에너지빌딩 인증제 고도화를 위한 기초 자료로 활용될 수 있도록 하는 목적이 있다. 제로에너지빌딩 인증에 해당되는 건축물은 2017년 기준 61개 가량 되는 것으로 파악되고 있으며, 패시브 측면과 액티브 측면을 고려하여 5대 부하별 대략적인 기준 값과 1차 에너지소요량을 산정하였다. 부하기준 산정을 위한 데이터의 표본이 적어 명확한 기준이 된다고 보기는 어려우나 앞으로 제로에너지빌딩 인증 기준을 고도화하기 위해 다양한 방법들을 적용하여 해석할 필요성이 있다고 판단된다.

창호에 SHGC를 반영한 공동주택의 방위각별 에너지 효율성 평가를 통한 합리적인 창호 계획 방안 연구 (A Study on the optimized Performance Designing of the Window of the Apartment based on the Annual Energy Demand Analysis according to the Azimuth Angle applying the Solar Heat Gain Coefficient of the Window)

  • 이장범
    • 대한건축학회논문집:계획계
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    • 제35권11호
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    • pp.25-34
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    • 2019
  • It is important to design windows in a reasonable way considering the performance characteristics of the elements of the window rather than just to increase the thermal energy performance of the window. In this study, the Heat-transfer Coefficient as insulation performance of the windows and together with the grade of the glass's SHGC (Solar Heat Gain Coefficient) were analyzed to relate to the energy efficiency performance of the building by azimuth angle. Based on this basic study, the Heat-transfer Coefficient of windows and the SHGC rating of glass were applied to the unit plan of apartment building, and the Heating and Cooling Demand were analyzed by azimuth angle. Apartment plan types were divided into 2 types of Non-extension and extension of balcony. The designPH analysis data derived from the variant of the Heat-transfer Coefficient and SHGC, were put into PHPP(Passive House Planning Package) to analyze precisely the energy efficiency(Heating and Cooling Demands) of the building by azimuth angle. In addition, assuming the 'ㅁ' shape layout, energy efficiency performance and potential of PV Panel installation also were analyzed by floors and azimuth angle, reflecting the shading effects by surrounding buildings. As the results of the study, the effect of Heat Gain by SHGC was greater than Heat Loss due to the Heat-transfer Coefficient. So it is more effective to increase SHGC to satisfy the same Heating Demand, and increasing SHGC made possible to design windows with low Heat-transfer Coefficient. It was also revealed that the difference in annual Heating and Cooling Demands between the low, mid and high floor households is significantly high. In addition to it, the installation of PV Panel in the form of a shading canopy over the window reduces the Cooling Load while at the same time producing electricity, and also confirmed that absolute thermal energy efficiency could not be maximized without controlling the thermal bridge and ventilation problems as important heat loss factors.