• Title/Summary/Keyword: daylighting analysis

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Comparative Analysis on Configurations and Characteristics of IEA's Advanced Daylighting Systems (IEA 첨단채광시스템의 형상 및 특성에 관한 비교분석)

  • Kim, Jeong-Tai;Chung, Yu-Gun;Ahn, Hyun-Tai;Ahn, Hyug-Keun
    • KIEAE Journal
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    • v.3 no.1
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    • pp.45-56
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    • 2003
  • New and innovative technologies for utilizing daylight in buildings have been developed for saving energies and improving visual environments. This study describes the most up-to date information available about the application and evaluation of advanced daylighting systems to enhance daylighting in non-residential buildings from IEA's Task 21. IEA's Task 21 consists on 4 subtasks such as "Performance Evaluation of Daylighting Systems(subtask A)", "Daylighting Responsive Controls(subtask B)", "Daylighting Design Tools(subtask C)" and "Case Studies(subtask D)". For the study, the configurations and characteristics of IEA's advanced daylighting systems are comparatively analyzed. As results, innovative daylighting systems are designed to redirect sunlight or skylight to areas which it is required without glare. These systems use optical devices that initiate reflection or refraction of sunlight and skylight. And they can be designed to actively track the sun or passively control the direction of sunlight and skylight. The comprehensive overview of innovative daylighting systems presented in this study helps designer to understand the advantages of daylighting in building and choose a suitable system for building in the earliest stage of the design process.

Artificial Lighting Energy Saving by Daylighting in Office Building (사무소건물에서 자연채광에 의한 조명에너지 절약의 평가)

  • 임병찬
    • Korean Journal of Air-Conditioning and Refrigeration Engineering
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    • v.16 no.6
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    • pp.608-613
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    • 2004
  • Artificial lighting accounts for a significant portion of the energy use in office buildings. Therefore, daylighting is considered one of the fundamental design features of energy-efficient buildings. However, complex daylighting simulation tools are not suitable for most designers to help in the decision-making process. This paper provides the results of a simulation analysis to determine the potential energy savings of daylighting effects reducing electrical energy consumption for office building. A whole building simulation tool is used to determine the effects of daylighting on lighting electricity use as well as total electricity use for typical office buildings. It was determined that daylighting does not provide significant additional lighting energy savings when glass transmittance is increased over 0.7 A simplified method is developed based on the analysis results to estimate the annual electrical energy savings attributed to daylighting.

A Comparative Evaluation of Daylighting Performance Software : Lumen-Micro, Adeline and Lightscape (채광성능 평가용 시뮬레이션 프로그램의 비교분석)

  • Kim, J.T.;Chung, Y.G.;Moon, G.H.
    • Journal of the Korean Solar Energy Society
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    • v.23 no.1
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    • pp.48-56
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    • 2003
  • Three of the leading computer daylighting simulation programs are compared with physical modeling techniques as a means of predicting daylighting performance of interior spaces. Lumen-Micro, Adeline and Lightscape are compared with physical model experiments under clear sky conditions. The comparative evaluations are conducted on analysis of daylight illuminance ratio(%) depending on model types. The estimated average errors are analyzed on 9.4% in Lumen-Micro, 6.3% in Adeline and 3.4% in Lightscape. Therefore, it is proved that three programs are useful for evaluating daylighting performance in our clear sky condition.

Study on Comparative Analysis of Daylight Evaluation Tools for Building Environment (건물 주광환경 평가도구의 비교분석에 관한 연구)

  • Park, K.E.;Kim, J.T.
    • Journal of the Korean Solar Energy Society
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    • v.22 no.4
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    • pp.26-34
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    • 2002
  • Daylighting in building is very important as it has an effect on work performance as well as on their visual health. It is also regarded as a good energy conservation measure in saving energy used for lighting. There are many daylighting evaluation tools such as empirical equations, tables, nomograms, diagrams, protractors, computer simulation, scale models. This study conducted initial daylight measurements to analyze luminous environment in classrooms of elementary school and comparative analysis on three daylighting evaluation tools, such as daylight factor calculation formula, the graphic method with BRE Protractor and computer simulation with Adeline 3.0. It is found that the computer simulation tool produced the closest result to actual measurements of luminous environment in elementary school classroom, and the other simplified tools made appropriate results so that they can be used in the early stage of daylighting design process.

A study on the utilization status and technical development of solar tracking daylighting systems (추적식 자연채광시스템 현황 및 기술 개발에 관한 연구)

  • Kim, Won Sik;Jeong, Hae Jun;Chun, Wongee;Han, Hyun Joo;Lim, Sang Hoon
    • Journal of Energy Engineering
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    • v.25 no.4
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    • pp.62-73
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    • 2016
  • Daylighting systems offer substantial advantages over conventional ones in illuminating the building interior. Especially, considering that lighting accounts for about 28% of total energy consumption in buildings, the use of daylighting systems deem very important in lessening the dependency on artificial lighting. This work has carried out a survey and analysis to explore the characteristics and current status of various daylighting systems with solar tracking features recently introduced in Korea.

The Daylight and Energy Performance Evaluation of Multi-purpose Solar Window System Using Simulaton Program (시뮬레이션에 의한 다기능 복합 솔라윈도우 시스템의 채광과 에너지성능평가)

  • Jeong, Yeol-Wha;Lee, Seun-Myung
    • Journal of the Korean Solar Energy Society
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    • v.31 no.6
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    • pp.103-110
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    • 2011
  • The aim of this study was to analysis the Heating/cooling performance and Daylighting performance of Solar Window System built in apartments. the solar window is the idea to integrate daylight as a third form of solar energy into a PV/Solar Collector system. The process of this study is as follows: 1)Solar Window system was designed through the investigation of previous paper and work. 2)The simulation program(Lightscape3.2) was used in daylighting performance analysis. the reference model of simulation was made up to analysis daylighting performance on Solar Window system. 3)The simulation program(ESP-r, Therm5.0, Window6.0) was used in energy performance analysis. the reference model of simulation was made up to analysis energy and daylighting performance on Solar Window system. 4)The Size of Simulation model for daylighting and heating/cooling energy analysis was $148.5m^2$ 5)The lighting performance analysis was carried out with various variants, such as the size and installed area of Solar Window system. 6)Energy performance simulation was carried out with various variants, such as Integrated U-value of Solar Window system according to its position, installed angle and insulation thickness. Consequently, When Solar Window system is equipped with balcony window of Apartment, Annual heating and cooling energy of reference model was cut down at the average of $4.1kWh/m^2$ or 4.2%.

A case study on design and construction of daylighting system of office building (사무용 건축물의 자연채광 설계 및 시공사례 연구)

  • Kim, Ilho;Choi, Yongjun;Park, Kyoungwoo;Lee, Sungjin
    • 한국신재생에너지학회:학술대회논문집
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    • 2010.11a
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    • pp.59.2-59.2
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    • 2010
  • Throughout history, daylight has been a primary source of lighting in buildings, supplemented originally with burned fuels and more recently with electrical energy. Before daylight was supplemented or replaced with electric light in the late 19th-century, consideration of good daylight strategies was essential. As we entered the mid-20th-century, electric light supplanted daylight in buildings in many cases. Fortunately, during the last quarter of the 20th-century and early years of this century, architects and designers have recognized the importance and value of introducing natural light into buildings. There are many simple strategies that can enhance daylighting and reduce the need for electric lights. Good quality daylight is always welcome, but remember that the electric lights must be dimmed or shut off in order for daylighting to save energy. We designed and built mirror systems and vertical daylighting devices to improve daylight condition of office buildings in bad condition because urban density is getting higher. This case study aims to analysis the principles and characteristics of mirror systems and vertical daylighting devices and selected the method that can improve constructability. The results of this study are going to use the back data to set-up the design standards. Hereafter we're going to progress the performance test and product the design manual to improve applicability of daylighting systems at design phase.

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Validity Evaluation of Scale Model Experiments in Architectural Daylighting Performance (자연채광 성능평가에 있어서 축소모형실험 방법론의 유용성 검증에 관한 연구)

  • Kim, J.T.;Chung, Y.G.;Jeong, I.Y.;Hwang, M.K.
    • Journal of the Korean Solar Energy Society
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    • v.22 no.2
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    • pp.61-69
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    • 2002
  • Daylighting is a powerful vehicle of architectural expression and provides buildings a living quality due to constantly changing properties in intensity and color. As an environmental system, daylighting should be subjected to the same level of rigorous analysis and review that any environmental system receives. For example, increasing cooling loads and causing visual displeasure are easily occurred owing to the excessive sunlight through windows. Therefore, daylighting performance attributes and physical characteristics must be described qualitatively and quantitatively in early design process. In various architectural daylighting performance evaluation methods, the scale model experiment can be applied due to it's simplicity and usefulness. So, this study aims to evaluate the validation of scale model experiments in architectural daylighting performance. For the purpose, two scale model experiments under clear sky are conducted. And, the validation of the experiments are evaluated by computer simulations.

An analysis on the energy and daylighting efficiencies of rehabilitated Linde-Robinson Laboratory : Solar Telescope Daylighting with Coelostat (복원된 Linde-Robinson Laboratory의 에너지 및 채광시스템 효율 분석 : Coelostat Solar Telescope Daylighting)

  • Han, Hyun Joo;Selkowitz, Stephen;Oh, Seung Jin;Chun, Wongee
    • Journal of the Korean Solar Energy Society
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    • v.34 no.5
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    • pp.53-63
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    • 2014
  • Caltech's Linde-Robinson Laboratory was originally built in 1932 featuring a Spanish mission-style design, whose function was to facilitate a solar observatory with a coelostat solar telescope dome and a solar shaft extending from the roof to more than 36.58m below the ground. The building has now been transformed into a cutting-edge center for research and instruction in global environmental science that retains its original character while setting new standards in energy efficiency and green design. It is the first LEED Platinum lab in the USA for renovation of a historical research building, consuming only one-sixth of the energy that the lab's comparable laboratories do. This work introduces various energy and environmental strategies hired for its sustainable rehabilitation and, especially, examines the functional validity of solar telescope daylighting by a coelostat. Observations were made on the llumination of underground floors, where illuminances of 40~50 lx were measured.

Comparative Analysis on the Mock-ups' Configuration and Monitoring Protocol System of Advanced Daylighting Systems for Daylighting Experiment - Focused on IEA SHC Task21- (첨단채광시스템 실험용 Mock-Up 모형의 형상 및 모니터링 프로토콜 시스템에 관한 비교분석 - IEA SHC Task21을 중심으로-)

  • Jeong, In-Young;Choi, Sang-Hyun;Kim, Jeong-Tai
    • KIEAE Journal
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    • v.4 no.1
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    • pp.11-20
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    • 2004
  • Innovative daylighting systems in buildings in various climatic zones around the world have been developed under the IEA SHC Task21. The performance assessment were obtained by monitoring the most systems using full-scale test model rooms or actual buildings under real sky conditions. This study aims to analyze the configuration and monitoring system of the nine Mock-up models of the IEA SHC Task21 comparatively. For the purpose, the geometry of the test rooms (length, width, height, window area, glazed area and occupied), reflectance of walls, floor and ceiling, transmittance of glazing (transmittance for hemispherical irradiation, normal irradiation and U-value) were compared. And equipment for measurement (manufacturer, range, calibration, maximum calibration error, cosine response error, fatigue error), and data acquisition system (manufacturer, type, number of differential analogue input channels, A/D converter resolution in bits, data acquisition software) were also analyzed comparatively. Some findings of these experimental methodology of standard monitoring have been proven to be a valuable one for future assessment of advanced daylighting systems in our country.