• 제목/요약/키워드: Building Energy Simulation

검색결과 687건 처리시간 0.021초

지역 건축물의 에너지 자립을 위한 패시브 외단열 복합패널 개발 연구 (Development of the Passive Outside Insulation Composite Panel for Energy Self-Sufficiency of Building in the Region)

  • 문선욱
    • 한국농촌건축학회논문집
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    • 제20권1호
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    • pp.11-18
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    • 2018
  • The study aims to address the energy crisis and realize self-sufficiency of building as part of local energy independence, breaking away from a single concentrated energy supply system. It is intended to develop modules of the outside insulation composite panels that conform to passive certification criteria and for site-assembly systematization. The method of study first identifies trends and passive house in literature and advanced research. Second, the target performance for development is set, and the structural material is selected and designed to simulate performance. Third, a test specimen of the passive outside insulation curtain wall module designed is manufactured and constructed to test its heat transmission coefficient, condensation performance and airtightness. Finally, analyze performance test results, and explore and propose ways to improve the estimation and improvement of incomplete causes to achieve the goal. The final test results achieved the target performance of condensation and airtightness, and the heat transmission coefficient was $0.16W/(m^2{\cdot}K)$, which is $0.01W/(m^2{\cdot})K$ below the performance target. As for the lack of performance, we saw a need for a complementary design to account for simulation errors. It also provided an opportunity to recognize that insulated walls with performance can impact performance at small break. Thus, to be commercialized into a product with the need for improvement in the design of the joint parts, a management system is needed to increase the precision in the fabrication process.

실측 실험을 통한 단열문의 열성능 평가 (Thermal Performance Assessment of Insulated door by experiment.)

  • 장철용;김치훈;안병립;홍원화
    • 한국태양에너지학회 논문집
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    • 제31권2호
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    • pp.47-52
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    • 2011
  • Currently, Exterior wall's U-value about building envelope is 0.36 W/$m^2K$(Central Region), but window's one is 2.1 W/$m^2K$ according to air gap of glazing, filling gas, coating and type of windows. The door"s one is 1.6~5.5 W/$m^2{\cdot}K$ depending on material and configuration of door. As such, energy loss per unit of door is considerably larger like windows. The door for the recognition was relatively low because energy loss through the door is relatively small compared to window area. In this paper, thermal performance was analyzed through simulation targeting the door which has thermal break that can improve the insulation performance and doesn't have one. As a results of simulations, case1 was calculated as the average of 1.63 w/m2k and case 2 was calculated as the average of 4.14 w/m2k. The thermal performance of door depends on the type and condition of insulations. As a results of final simulations, Case1 was calculated as 1.06 w/m2k and Case2 was calculated as 1.27 w/m2k. As a results of the experiments, thermal performance of case 1 was measured as 1.28 w/m2k. Error between experiments and simulations is considered problems encountered when creating the samples. The effect of door frame on the overall thermal performance is slight because it's a small proportion of the door frame.

노후 공공도서관의 그린리모델링 적용 요소 조합에 따른 우선순위 도출 (Deriving Priorities Based on Combination of Green Remodeling Application Elements in Old Public Libraries)

  • 심성진;임세현;김성은;송용우
    • 토지주택연구
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    • 제15권2호
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    • pp.1-7
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    • 2024
  • 2015년 파리 기후 협약을 시작으로 나라별로 국가 온실가스 감축 목표를 제시하고 실행하기로 합의하였다. 이에 따라 대한민국 정부는 건물 부문에서 온실가스 배출량 32.8% 감축을 목표로 설정하였다. 이를 위해 국토교통부는 2020년부터 공공건축물 그린리모델링 사업을 통해 노후 건축물의 에너지효율 강화를 추진하고 있다. 노후 건축물의 에너지 절감을 위한 그린리모델링 공사에는 패시브 및 액티브 요소의 필수공사와 선택공사가 있다. 그러나 현재는 패시브와 액티브 시스템의 통합설계가 부족하며 건축물의 노후도에 따른 적용 요소들의 우선순위에 대한 기준이 없는 실정이다. 따라서, 본 연구에서는 노후 건축물 중 많은 사람들의 이용이 가능하며 에너지 사용량이 높을 것으로 예상되는 중부 2지역에 위치한 공공도서관 6개소를 선정하였다. 공공도서관은 준공년도에 따라 Model 1~3으로 구분하였으며 각각 1980년대, 1990년대, 2000년대 준공된 건물이다. Model 1~3의 ECO2-OD를 통한 시뮬레이션 분석으로 1차 에너지소요량 절감률에 따른 상위 3개의 우선순위를 도출했다.

Cool Tube System 사례를 활용한 환기부하 절감방안 (Ventilation Load Reduction Plan Using Cool Tube System Case)

  • 정민영;박진철;양영권
    • 토지주택연구
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    • 제10권1호
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    • pp.25-32
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    • 2019
  • In this study, the case analysis data on underground temperature are presented. In addition, numerical analysis of the ventilation load reduction plan was derived according to the residence schedule change for the building with cool tube. The research scope and method are as follows. The overall system principle was examined through reviewing the theory of the Cool tube system. Case study and analysis were conducted. Numerical simulation was used to examine the change in energy usage. Also, the change of load energy in case of varying amount of ventilation was derived based on actual building room schedule. When the Cool tube system was applied to the residential buildings, the cooling load was reduced from 3,331 kW to 193 kW, which showed a reduction effect of about 90%.The heating load was reduced from 42,276kW to 32,575kW by 23%.Also, result shows that the cooling load decreased by 24% and the heating load decreased by 66% when the number of ventilation according to the occupancy schedule was applied.

실측 분석기법과 시뮬레이션 분석 기법에 의한 아트리움 열환경 개선에 관한 연구 (A Study on the Improvement of Thermal Environment by a method using thermometers and computer simulations on the Atrium)

  • 이소연;안정수;김강수
    • 한국태양에너지학회 논문집
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    • 제29권5호
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    • pp.28-34
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    • 2009
  • The atrium in the building has many advantages including its aesthetic and functional effect. But the upper part of the atrium has the thermal problem of overheating due to insolation through the window. But natural ventilation aided buoyancy effect can be a solution to make comfortable indoor environment. Proper design of openings is very important to improve thermal environment in the atrium. In this study, thermal evaluations were performed to improve thermal environment in the atrium. Indoor thermal environment of an atrium at Seoul was measured in the field and simulated with Computational Fluid Dynamics( CFD) code. The turbulent flow model adopted is $K-{\varepsilon}$ model. The results of computer simulations are compared with the measurements at the point in the atrium. In order to improve the indoor ventilation environment of the atrium, thermal environment evaluations of six alternatives were conducted. After evaluations of the results, the design guidelines of an atrium are suggested.

수평면 전일사를 이용한 창 투과 일사량 계산 방법 (Calculation Method for the Transmitted Solar Irradiance Using the Total Horizontal Irradiance)

  • 전병기;이승은;김의종
    • 설비공학논문집
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    • 제29권4호
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    • pp.159-166
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    • 2017
  • The growing global interest in energy saving is particularly evident in the building sector. The transmitted solar irradiance is an important input in the prediction of the building-energy load, but it is a value that is difficult to measure. In this paper, a calculation method, for which the total horizontal irradiance that can be easily measured is employed, for the measurement of the transmitted solar irradiance through windows is proposed. The method includes a direct and diffuse split model and a variable-transmittance model. The results of the proposed calculation model are compared with the TRNSYS-simulation results at each stage for the purpose of validation. The final results show that the CVRMSE over the year between the proposed model and the reference is less than 30 %, whereby the ASHRAE guideline was achieved.

업무용 건축물에 적용된 단열재의 경년열화에 따른 열손실량 분석 (Analysis of Heat Loss Due to Time Dependent Aging of Insulation Applied to Office Building)

  • 이도형;나환선
    • 한국태양에너지학회 논문집
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    • 제37권5호
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    • pp.65-75
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    • 2017
  • In this study, the change of heat loss due to the degree of deterioration of the XPS insulation in KEPCO's office buildings is analyzed. The acceleration aging test of the XPS insulation was carried out according to the test method A of KS M ISO 11561: 2009. The performance of the insulation was analyzed by applying it to the three - dimensional steady state heat transfer analysis program. The acceleration aging test of the XPS insulation, show that the thermal resistance performance decreased by 1.44% at the A regional headquarters, 0.85% at the B regional headquarters, 6.41% at the C branch office, 7.76% at the D regional headquarters, 8.51% at the E branch office, and by 8.54% at the F branch office respectively. Using simulation, we determined that the thermal resistance value of E branch office decreased by 8.04%, while its heat loss increased by 8.52%. At A regional headquarters, the thermal resistance decreased by 1.38%, and the heat loss increased by 1.51%. At D regional headquarters, these value are 6.82% and 7.17%, respectively.

스틸 스터드 모듈러 건축물 접합부위의 결로방지성능 개선방안 평가 (Evaluation of Condensation Resistance of Steel Stud Wall Corner Details in Modular Buildings)

  • 오지현;양시원;조봉호;김선숙
    • 한국태양에너지학회 논문집
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    • 제34권3호
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    • pp.107-114
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    • 2014
  • Modular systems are widely used in various building types including housing, dormitory, and barracks. Steel studs have many advantages over other materials as construction components of modular buildings in terms of seismic performance, durability and maintenance. However, steel stud modular systems also have weakness in condensation resistance due to high thermal conductivity of steel. The purpose of this study is to investigate the condensation resistance of steel stud wall corner details in modular buildings by thermal simulation. The condensation resistance was evaluated by temperature difference ratio according to ISO 13788. The result showed that there was little difference between the alternatives of adding cavity and insulation. Separation of interstitial steel studs showed outstanding effect on the improvement of temperature difference ratio.

The dynamic response of adjacent structures with the shallow foundation of different height and distance on liquefiable saturated sand

  • Jilei Hu;Luoyan Wang;Wenxiang Shen;Fengjun Wei;Rendong Guo;Jing Wang
    • Earthquakes and Structures
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    • 제25권2호
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    • pp.135-148
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    • 2023
  • The structure-soil-structure interaction (SSSI) effect in adjacent structures may affect the liquefaction-induced damage of shallow foundation structures. The existing studies only analysed the independent effects on the structural dynamic response but ignored the coupling effect of height difference and distance of adjacent structures (F) on liquefied foundations on the dynamic response. Therefore, this paper adopts finite element and finite difference coupled dynamic analysis method to discuss the effect of the F on the seismic response of shallow foundation structures. The results show that the effect of the short structure on the acceleration response of the tall structure can be neglected as F increases when the height difference reaches 2 times the height of the short structure. The beneficial effect of SSSI on short structures is weakened under strong seismic excitations, and the effect of the increase of F on the settlement ratio gradually decreases, which causes a larger rotation hazard. When the distance is smaller than the foundation width, the short structure will exceed the rotation critical value and cause structural damage. When the distance is larger than the foundation width, the rotation angle is within the safe range (0.02 rad).

Characteristic of indoor air quality according to ventilation in a temporary residential building

  • Chae, Ho-Byung;Nam, Yujin;Sung, Min-Ki;Kim, Jong-Hun
    • KIEAE Journal
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    • 제15권1호
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    • pp.5-12
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    • 2015
  • Recently, natural disasters have unexpectedly occurred at various places in the world and the countermeasure of them become the social issues. Many of victims in disasters need temporary residential facilities above all things and many of researches have been conducted in order to develop simple, safe, and economic designs of them. Moreover, indoor thermal comfort and air quality must be considered in the facilities against a disaster, because clean and healthy space should be provided to the suffered victims. In this research, in order to estimate the indoor environment of the developed modular building for disaster preparation, CFD simulation was conducted in the various condition. In this paper, indoor air quality such as the age of air, the concentration of $CO_2$ was estimated by the case study