• Title/Summary/Keyword: 인체 에너지수지

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A Study on Greenspace Planning Strategies for Thermal Comfort and Energy Savings (열쾌적성과 에너지절약을 위한 녹지계획 전략 연구)

  • Jo, Hyun-Kil;Ahn, Tae-Won
    • Journal of the Korean Institute of Landscape Architecture
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    • v.38 no.3
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    • pp.23-32
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    • 2010
  • The purpose of this study is to quantify human energy budgets for different structures of outdoor spatial surfaces affecting thermal comfort, to analyze the impacts of tree shading on building energy savings, and to suggest desirable strategies of urban greenspace planning concerned. Concrete paving and grass spaces without tree shading and compacted-sand spaces with tree shading were selected to reflect archetypal compositional types for outdoor spatial materials. The study then estimated human energy budgets in static activity for the 3 space types. Major determinants of energy budgets were the presence of shading and also the albedo and temperature of base surfaces. The energy budgets for concrete paving and grass spaces without tree shading were $284\;W/m^2$ and $226\;W/m^2$, respectively, and these space types were considerably poor in thermal comfort. Therefore, it is desirable to construct outdoor resting spaces with evapotranspirational shade trees and natural materials for the base plane. Building energy savings from tree shading for the case of Daegu in the southern region were quantified using computer modeling programs and compared with a previous study for Chuncheon in the middle region. Shade trees planted to the west of a building were most effective for annual savings of heating and cooling energy. Plantings of shade trees in the south should be avoided, because they increased heating energy use with cooling energy savings low in both climate regions. A large shade tree in the west and east saved cooling energy by 1~2% across building types and regions. Based on previous studies and these results, some strategies including indicators for urban greenspace planning were suggested to improve thermal comfort of outdoor spaces and to save energy use in indoor spaces. These included thermal comfort in construction materials for outdoor spaces, building energy savings through shading, evapotranspiration and windspeed mitigation by greenspaces, and greenspace areas and volume for air-temperature reductions. In addition, this study explored the application of the strategies to greenspace-related regulations to ensure their effectiveness.

Study on Characteristics of coated fabric using nano-particle (나노물질이 코팅된 직물의 기능성 향상에 관한 연구)

  • Kim, Jong-Won;Yoon, Seok-Han;Yeum, Jeong-Hyun;Bae, Eun-A
    • Proceedings of the Korean Society of Dyers and Finishers Conference
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    • 2011.11a
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    • pp.55-55
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    • 2011
  • 국내의 등산용 아웃도어 제품의 경우, 기능성인 투습도와 내수압만을 증대시키려는 연구가 주류를 이루고 있었다. 하지만, 실제 등산용 아웃도어의 경우 산악지형인 고지대에서 사용시간이 많으므로, 이에 따른 장시간의 직접적인 태양광 노출로 인한 인체에 치명적인 영향을 야기시키고 있지만, 인체 보호용 헬스케어 아웃도어 제품에 대한 연구는 미흡한 실정이다. 태양광은 자외선 2.5%, 가시광선 51.5%, 적외선 46.0%의 광량 비율을 가지고 있으며, 이 중 자외선은 광량은 적지만 에너지적으로 높아 유기물 분해 및 열화를 일으킨다. 이러한 자외선을 차단하기위해 아웃도어 의류에서는 유무기하이브리드 소재를 표면에 코팅시키게 되며, 기능성 코팅액내에 함유되어 있는 나노분말의 경우 이산화티타늄($TiO_2$), 산화세륨(CeO), 산화아연(ZnO), 삼산화텅스텐($WO_3$), 산화마그네슘(MgO) 등이 주로 사용되어 진다. 본 연구에서는 자외선 흡수소재로 나노산화아연분말을 이용하여, 그 입도 및 코팅용 희석 용매내의 분산성을 확인하고, 함유량을 달리한 코팅 수지를 제조하여, 코팅시편 제조 후 그 특성을 비교/분석하여 자외선 차단 효과를 확인하고자 한다.

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A Study on the Promotion of Combustible Construction Waste Recycling (가연성 건설폐기물의 자원화 제고를 위한 방안)

  • Park, Ji-Sun;Lee, Sea-Hyun
    • Journal of the Korean Recycled Construction Resources Institute
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    • v.4 no.1
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    • pp.89-95
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    • 2009
  • The current enforce decree of "The Act on the Promotion of Construction Waste Recycling" divides seventeen kinds of construction wastes by property and configuration. Mixed construction waste, one of them classified by the enforce decree, is composed two more than justified construction wastes except refuse soil and rock. In construction wastes justified by enforce decree of this law, most refuse concrete and asphalt concrete of construction wastes are recycled. As well as refuse metal is separated, sorted from bulk them, and merchandised for value. Finally this is used the secondary manufactured products. Even though combustible construction wastes like refuse wood, plastics, fiber can be recycled RDF(Refuse derived fuel) or RPF(Refuse plastic fuel) because of high caloric value and low heavy metal but most of them are discharged as mixed construction waste and then treated by treated by incineration and landfill. Therefore, to control construction waste flow efficiently, construction wastes are classifies first combustible, incombustible, mixed combustible, incombustible and etc. in this study. The combustible waste is consisted refuse wood, plastics, fiber and etc. and incombustible waste contains refuse concrete, asphalt, and etc. Mixed construction is construction waste that can not separate from mixed waste bulk with different kinds.

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