• Title/Summary/Keyword: 기존온돌

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건축물 에너지절약 설계기준 개정에 따른 온돌시스템 기술개발 방향

  • 강재식;이승언
    • 월간 기계설비
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    • s.143
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    • pp.60-74
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    • 2002
  • 건축물의 에너지 이용을 효율화하기 위하여 단열기준 등을 기존보다 20% 이상 강화하는 것을 골자로 하는 건축물의 에너지절약 설계기준(건설교통부 고시 제2001-118호)이 지난해 6월 1일부터 시행되고 있다. 개정 기준의 가장 큰 특징은 단열기준의 적용 부위를 외기에 직접 면한 부위와 간접 면한 부위로 구분하고, 지역을 중부와 남부, 제주도로 구분$\cdot$설정하여 부하조건과 에너지 소비특성에 따라 건축물의 단열기준을 세분화한 것이다. 특히, 종래에는 최하층 바닥에만 적용하였던 거실 바닥(온돌)의 단열기준을 중간층까지 확대$\cdot$적용하였고, 여기에 온돌시스템의 열적 특성을 고려하여 단열기준의 적용 부위를 보다 구체적으로 설정하고 있다. 따라서 종래의 온돌시스템에서 채움층으로 일반적으로 사용하고 있는 현장 타설식 경량기포콘크리트의 열전도율이 0.13W/mK 내외임을 고려한다면 현행 습식온돌시스템의 열관류율은 $1.0W/m^{2}K$ 이상이 될 것으로 예상됨으로서 앞으로 온돌시스템의 배관층 하부에 $1.0m^{2}K/W$ 이상의 열전도저항을 지닌 단열층이 구성되어야만 개정기준에서 정하는 열관류율 $0.81W/m^{2}K$(기준층 기준)의 성능과 배관하부의 열전도저항값 적용비율을 만족할 수 있을 것으로 판단된다.

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An Experimental Study on Heat Transmission Characteristics of the Conventional and Prefabricated Ondol (기존온수온돌과 조립식 온수온돌의 전열특성에 관한 실험적 연구)

  • Min, J.H.;Lee, C.G.;Jang, M.S.
    • Korean Journal of Air-Conditioning and Refrigeration Engineering
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    • v.7 no.4
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    • pp.611-621
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    • 1995
  • The objectives of this study are to find out and to analyze the heat transmission characteristics of the conventional and prefabricated Ondol systems. To compare the thermal characteristics of these Ondol, a real sized Ondol model is set in a chamber. Hot water whose temperature is varied from $45^{\circ}C$ to $60^{\circ}C$ with $5^{\circ}C$ interval is supplied to each Ondol system. At that time the temperature distribution of floor surface, the amount of supplied heat, the heat radiation aspect and the heat loss from the floor to the underground are measured and analyzed simultaneously. As a result, even if the supplied hot water temperature to the prefabricated Ondol panel is lower by about $5^{\circ}C$ than that of the conventional Ondol panel, the net radiant effect is same. Heat radiation efficiency of the prefabricated Ondol panel is over 5% better than that of the conventional Ondol panel. It takes 12 hours for the conventional Ondol and 45 minutes for the prefabricated Ondol, respectively to reach steady state.

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유럽에서 본 바닥 난방 시스템

  • 페터 슈미트
    • 월간 기계설비
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    • s.2
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    • pp.140-148
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    • 1990
  • 우리 고유의 온돌 난방방식의 우수성이 입증됨에 따라 세계 각국에서 연구를 활발히 하고 있다. 서독, 스위스를 비롯한 북유럽에서는 온수온돌 반방방식이 크게 유행하고 있으며 특히 서독에서 최근에 짓는 고급주택에는 온수바닥난방이 필수적이라 할 만큼 선호하고 있는 것으로 알려졌다. 서독의 기존 주택 난방은 대부분 라디에터 방식으로 특히, 집합주택에서 바닥난방을 하는 경우는 드물다. 그러나 최근에는 온수 바닥난방이 집합주택에서도 채용되어지고 있어 머지않아 대중적인 난방방식으로 자리잡을 것으로 보여진다. 본자를 최근 독일에서 연구가 활발히 진행되고 있는 바닥난방에 관한 연구중 바닥난방 시스템을 게재한다.

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A Comparative Study on Thermal Efficiency Between the Present Floor and a Ceramic Floor (기존온돌과 세라믹구들의 열효율 비교 연구)

  • Kim, Young Man;Kim, Kyung Sung;Choi, Beom Suk;Ko, Jae Sik;Park, Seung Ku
    • Analytical Science and Technology
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    • v.12 no.2
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    • pp.166-170
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    • 1999
  • A ceramic floor with improved thermal conductivity and efficiency has been developed in this study. The new ceramic floor minimizes the shrinkage rate to below 0.07% and shows almost no cleavage. There is no need to repaire the ceramic floor because its bottom surface is flat. It especially shows an excellent perfomance in the test of a compressive strength ($300kg/cm^2$ based on 28 days), a flexural strength ($64kg/cm^2$ based on 28 days), and a convenient pressing. It is lighter than the present floor and it is expected to be applicable for a self-leveling ceramic motar in the residences and apartments. It shows an excellent character in the thermal conductivity and other physical properties compare to the present cement mortar.

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Experimental Study on Consumption of Energy and Heating Efficiency in Floor Water Heating System on Using Ondol Panel of Double Metal Rendering (이중금속융출형 온돌판넬을 이용한 바닥온수난방시스템의 난방성능과 에너지소비량에 관한 실험적 연구)

  • Bai, Dai-Kwon;Kim, Jin-Bong;Kim, Hwan-Sung
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.13 no.12
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    • pp.6167-6175
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    • 2012
  • This study is experimental analysis to verify heating efficiency of Ondol in floor heating panel developed. For this one, an experiment tests producing an each test speciment and measuring heating efficiency. The result of an experiment, supplying hot water temperature is $45^{\circ}C$ and the result of measuring on parts temperature of test speciment on supplying for 8 hours, mortar surface that is superstructure plumbing of heating system developed is $49.4^{\circ}C$, the gap of piping on center of mortar surface is $44.1^{\circ}C$ and airspace is proved $25.3^{\circ}C$. In floor structure of standards, mortar surface is $46.2^{\circ}C$, the gap of piping on center of mortar surface $37.7^{\circ}C$ and airspace is $24.7^{\circ}C$. On the other hand, energy consumption accumulating of development technology is identified, in case of hot-water supply on $45^{\circ}C$ as 4,646 kcal and in existing technology, as 4,814 kcal. developing technology is verified and lower than existing technology.

The Design and Performance Analysis of an Effective OWL Storage System Based on the DBMS (데이터베이스 시스템에 기반한 효율적인 OWL 저장시스템 설계 및 성능분석)

  • Cha, Seong-Hwan;Kim, Seong-Sik;Kim, TaeYoung
    • The Journal of Korean Association of Computer Education
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    • v.11 no.5
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    • pp.77-88
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    • 2008
  • Having observed the restriction of the current Web technology, the semantic Web has been developed, and it now has grown up with the core help of the W3C to a level where it recommends the OWL Web ontology language. Besides, in order to deduce the information out of OWL data, several inference systems have been developed such as Jena, Jess, and JTP. Unfortunately, however, quite few systems can effectively handle recently developed OWL data, and further, due to the limitation of file-based operation, the current inference systems cannot meet the requirements for handing huge OWL data. An efficient method for storing and searching ontology data is essential for ensuring stable information inference processes. In this study, firstly, we proposed a model based on the database management system to transform and store OWL data and to enable deduction process from the database. Secondly, we designed and implemented an effective OWL storing system based on our model. Finally, we compare our system with the previous inference systems through experimental performance analysis.

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