• Title/Summary/Keyword: 외피시스템

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Development of Automatic Measurement System for Density of Watermelons (수박 밀도 자동 계측시스템 개발)

  • 최규홍;이강진;손재룡;김기영;최동수
    • Proceedings of the Korean Society for Agricultural Machinery Conference
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    • 2003.07a
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    • pp.317-326
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    • 2003
  • 원예산물은 출하과정에서 외관과 내부품질에 따라 분류되고, 그 결과에 따라 상품성과 가격이 결정된다. 수박의 경우에도 품질이나 가격은 크기, 무게, 외피모양, 타격할 때 나는 반사음, 촉감 등에 따라 결정되는데, 주로 경매사 또는 감별사의 경험이나 표본검사에 의존하고 있다. 최근 과실류에 비해 크고 껍질이 두꺼운 수박, 메론 등의 내부품질을 비파괴ㆍ실시간으로 판정하기 위한 연구가 국내외에서 활발히 수행중이다. 특히 X-선, 음파, 근적외선 등을 이용하여 숙도, 공동, 당도, 밀도 등을 신속히 검출하기 위한 연구가 대부분을 차지하고 있다. (중략)

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CNC Twisted Tube Method for 3D Coordinate Control Technology for Freeform Structure -Focused on The ARC in DaeGu- (비정형구조의 3차원 좌표제어를 위한 CNC Twisted Tube 공법 적용 -대구 대표물문화관(The ARC)를 중심으로-)

  • Ryu, Han-Guk;Kim, Sung-Jin
    • Journal of the Korea Institute of Building Construction
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    • v.13 no.5
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    • pp.434-440
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    • 2013
  • Generally, the envelope of a freeform building is composed of a structure made with rectangular or C-shaped steel pipe, and steel or aluminum panel finishes on the structure. However, these construction methods increase material loss and cost and time. There are also numerous cases of misunderstanding of design and difficulties in construction, which frequently cause construction errors. Such construction errors decrease construction productivity, resulting in poor construction quality and the need for rework, as well as cost and time overruns. To solve the problem, this study proposes a 3D coordinate control technology for freeform structure implemented through a CNC(Computerized Numerical Control) Twisted tube method, and by extension, develops a BIM-based envelope construction method for freeform building.

The Characteristics of the winter season window and indoor temperature due to the indoor plant (동계 이중외피와 내부식재에 의한 실내 온도 특성에 관한 연구)

  • Yun, Young-Il;Cho, Ju-Young
    • KIEAE Journal
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    • v.15 no.5
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    • pp.107-112
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    • 2015
  • Purpose: This study desires to investigate an effect of indoor temperature, humidity, and illuminance targeting a planting system of double-skin facade and cavity space adjacent to the outside within a certain period of winter. Through this, the study suggests a basic material about an energy conservation effect of double window system using planting to reduce heating load of a building in winter, so desires to contribute to indoor thermal comfort effect and illuminance correction study of double window and indoor plant. Method: Considering effects such as day and night climatic elements and air conditions in winter, illuminance measurement was conducted through a double-skin facade of space, a subject of the measurement, on the basis of practical residence time of a resident, and this study analyzed characteristics of indoor illuminance about this. The study measured and compared a change of insolation, dry-bulb temperature, and relative humidity at each indoor-outdoor measuring point, so measured and compared characteristics of an indoor temperature effect by elements of double-skin facade and indoor plant. Result: Through this study, the researcher could determine that indoor plant within double window in winter not only blocks solar radiation but also photosynthesizes, so is somewhat disadvantageous to winter thermal comfort reducing heating load. In addition, solar radiation going through interior plays a role to bring down somewhat high humidity to about 50% of reasonable humidity, so plays a direct role of maintenance of comfortable indoor space. Although there are effects such as blocking of solar radiation and temperature reduction, this has a positive influence on humidity control and proper illuminance distribution. The researcher could determine that illuminance, temperature, and humidity by solar radiation penetration for the whole measuring time play a role to supplement indoor environment mutually.

Evaluation of Building Envelope Performance of a Dry Exterior Insulation System Using Truss Insulation Frame (트러스 단열 프레임을 이용한 건식 외단열 시스템의 외피 종합 성능 평가)

  • Song, Jin-Hee;Lee, Dong-Yun;Shin, Dong-Il;Jun, Hyun-Do;Park, Cheol-Yong;Kim, Sang-Kyun
    • Journal of the Architectural Institute of Korea Structure & Construction
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    • v.35 no.6
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    • pp.153-164
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    • 2019
  • The presence of thermal bridges in a building envelope cause additional heat loss which increases the heating energy. Given that a higher building insulation performance is required in these cases, the heat loss via thermal bridges is a high proportion of the total heat energy consumption of a building. For the dry exterior insulation system that uses mullions and transoms to fix insulation and exterior materials such as stone and metal sheet, the occurrence of thermal bridges at mullions and transoms is one of the main reasons for heat loss. In this study, a dry exterior insulation system using the truss insulation frame (TIF) was proposed as an alternative to metal mullions. To evaluate the building envelope performance, structural, air-leakage, water-leakage, fire-resistance, thermal, and condensation risk tests were conducted. In addition, the annual energy consumption associated with heating and cooling was calculated, including the linear thermal transmittance of the thermal bridges. As a result, the dry exterior insulation system using TIF achieved the allowable value for all tests. It was also determined that the annual heating load of a building was reduced by 36.7 % when the TIF dry exterior insulation system was used, relative to the dry exterior insulation system using steel pipes without additional insulations.

Building System Analysis and Integration: Case Study on Richards Medical Research Building (건물시스템의 분석과 통합 방법에 관한 연구: 리차즈 의학 연구소 건물의 사례분석을 중심으로)

  • Choi, Joon-Sung;Im, Jae-Ho
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.12 no.3
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    • pp.1444-1451
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    • 2011
  • The purpose of this paper is to provide an understanding of building systems and to propose methods of building system analysis and integration. Building components are classified into four major systems; structure, mechanical, envelope, and interior system. There are 11 combinations between major systems. Three integration modes(physical, visual, and functional integration) and 12 integration strategies are proposed. A case study of Richards Medical Research Buildings designed by Louis I. Kahn was conducted from the perspective of building system analysis and integration.

제도 & 시행 - 나라장터, "지문인식 전자입찰" 제도 시행

  • 대한설비건설협회
    • 월간 기계설비
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    • s.237
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    • pp.59-61
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    • 2010
  • 정부의 국가종합전자조달 시스템인 '나라장터'가 $\Delta$동일PC입찰 $\Delta$인증서 양도 대여 $\Delta$입찰 대리인 복수등록 등의 불법 부정 입찰을 줄이기 위해 4월부터 "지문인식 전자입찰"제도를 시행한다. 조달청은 나라장터를 개장하면서 IT강국답게 PC입찰을 결정했고, 인감을 대체할 수 있는 공인인증서를 도입해 운영단계에서 불법 전자입찰을 근절코자 노력을 기울여 왔다. 하지만 온라인상의 부정적인 방법이 날로 지능화되면서 입찰질서를 어지럽히게 되자, 실제 입찰자의 신원을 최적으로 확인할 수 있는 지문인식기술을 도입하게 됐다. 이번에 개발된 지문인식입찰시스템은 지문의 외피가 아닌 진피를 인식하기 때문에 실리콘이나 OHP필름 등을 통한 지문위조를 원천적으로 봉쇄할 수 있게 됐다. 따라서 이런 최신 지문인식 기술을 이용해 온라인상에서 입찰자의 신원을 확인한 후 사전에 등록된 입찰자의 신원과 동일한 경우에만 입찰서 제출이 가능하다. 조달업체의 입찰자(대표 또는 대리인)는 4월 이전에 국내 5개 공인인증기관을 통해 지문보안토큰을 구매하고 주민등록증과 지문보안토큰을 지참해 조달청 고객지원센터를 찾아 신원을 확인한 뒤 지문정보를 등록해야 하며, 지문 정보는 최대 3명까지 보안토큰에 등록돼야 입찰할 수 있게 됐다. "지문인식 전자입찰"제도는 단계적으로 확대돼 7월에는 나라장터뿐 아니라 모든 발주기관에 적용될 방침이다.

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Implementation and the Energy Efficiency of the Kinetic Shading System (가동형 차양 시스템의 구성과 에너지 효율)

  • Han, Seung-Hoon
    • KIEAE Journal
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    • v.14 no.5
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    • pp.67-73
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    • 2014
  • This study aims at examining kinetic efficient shading systems and their implementation methods. These days, the importance of the shading devices are getting more significant due to the energy problem. Cordially, suitable shade designs are required as an important element for the exterior envelope of the building. This study employs the optimal shading design as an efficient shading method with the kinetic system that can be converted actively by the altitude of the sun. The proposed kinetic shading system works not only as a lightshelf in case the altitude of the sun is high but also as a vertical louver when the sun is getting lower in order to block the direct sunlight. This study has analyzed the thermal performance and shading coefficient of the kinetic shading system in comparison to existing fixed shading devices using the Ecotect. The results, in sum, conclude that the suggested kinetic shading system could decrease direct sunlights 26.2% more than the existing shading methods.

Daylighting Performance of Office Space Applied with Electrochromic Façade System (전기변색 외피시스템 적용 업무공간의 채광 성능 분석)

  • Kim, Jae-Hyang;Han, Seung-Hoon
    • Land and Housing Review
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    • v.13 no.1
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    • pp.131-140
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    • 2022
  • A smart window is a new building material that can realize energy savings in a building. Smart windows can freely adjust Visible Light Transmittance (VLT) and solar gain coefficient (g-value) according to the situation. Smart windows include such technologies as Electrochromic (EC), Suspended Particle Device (SPD), and Polymer Dispersed Liquid Crystal (PDLC). Recent research on building energy savings through the VLT and g-value control functions of smart windows is being actively conducted and meaningful results are being drawn. However, since most of the research is focused on energy savings, research on the indoor environment is somewhat lacking. A building is a space where people live and the comfort of life should be prioritized before energy savings. Therefore, in this study, analysis on the daylight performance of an office space was carried out. Through green building standards such as LEED, BREEAM, CASBEE, and G-SEED, the daylight performance was reviewed according to VLT value changes of the smart window. In addition, a study was conducted on the VLT range of the electrochromic façade that can maintain a comfortable indoor environment. The smart window used electrochromic control with a wide range of VLT. The study showed that the minimum VLT of a smart window that can satisfy G-SEED is 25% or more. In addition, it was found that the VLT change of the electrochromic smart window did not significantly affect the uniformity of the room. When the LEED standard was applied, the minimum VLT value of the electrochromic smart window that must be maintained according to each orientation of the building was derived.

Experimental Study on Natural Ventilation Performance of Double Facade System in Heating Period (난방기 중 이중외피 시스템의 자연환기 성능분석에 관한 실험적 연구)

  • Lee, Keon-Ho;Kim, Hyeon-Soo;Ko, Yung-Woo;Son, Young-Joo
    • KIEAE Journal
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    • v.6 no.2
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    • pp.43-50
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    • 2006
  • A Double Facade System(DFS) is well known as an innovative solution of ecological facade in the west european countries. There are more than 200 various realized DFS in Germany. At the same time, the korean engineers have researched to find out the physical advantages of DFS in the moderate korean climate, which has a very humid summer with high temperature and a dry winter with low temperature. For example, the monthly mean temperature in Korea comes up to 28K, while that in Germany comes up to only 19K. That is, why a other solution of DFS is needed in Korea. This study has experimented the physical performance of the natural ventilation in the heating period. The preheating function of the cold air by DFS can improve no doubt the performance of the natural ventilation at the cold season as well as spring and autumn. The physical difference between single and double facade on natural ventilation has been tested at the newly constructed laboratory, which can turn $360^{\circ}$ to confirm the characteristic of a facade with the various directions. The results show the natural ventilation of the DFS has definitely much more comfortable than that of the single facade system. The air velocity of the inflow as well as the air temperature in the DFS provide a more stable condition than in the SFS. The theoretical limit(air velocity max 0.2m/s, air temperature min. $18^{\circ}C$, temperature difference between 100mm and 1700mm height max. 3K) on the indoor comfortableness doesn't go over in the DFS. On the other hand, the SFS showed an unstable condition with an excess of comfortableness limit on air velocity as well as temperature. In view of the researching results so far achieved, the research came to a conclusion, that the DFS can provide a more comfortable indoor condition by the preheating in the heating period than a SFS, and the period of natural ventilation in winter time could be definitely increased at the DFS.