PUKYONG

바닥 복사 난방 시스템이 적용된 공동주택의 벽체-슬래브 접합부 선형 열관류율 분석

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Alternative Title
Analysis of Wall-Slab Joints Linear Thermal Transmittance in Apartment Building with Radiant Floor Heating System
Abstract
The purpose of this paper is to study an energy analysis method considering linear thermal bridge at wall-slab joints in apartment building with radiant floor heating system. In order to analyze linear thermal bridge of wall-slab joints, linear thermal transmittance was used to represent heat loss at thermal bridges. Linear thermal transmittances were calculated from the heat flow through the wall and the equation defined by ISO 10211. The heat flow was simulated by heat transfer program ‘PHYSIBEL TRISCO v13.0w’.
The simulation was conducted for the side walls and the expanded balcony front walls in typical residential buildings. For each case, the impact of insulation methods(internal and external insulation systems) and hot water temperatures on the linear thermal transmittances were investigated. As a reference, linear thermal transmittances of structures without radiant floor heating system were calculated. An evaluation standard is used with linear thermal transmittances obtained by ISO 14683. In addition, the annual heating energy consumption with adjusted linear thermal transmittances were simulated by building energy simulation program ‘DesignBuilder v5.5’.
The results of this study are as follows; at the side walls, the linear thermal transmittances with radiant floor heating system were 15% to 38% higher than the linear thermal transmittances without radiant floor heating system. At the front walls, the linear thermal transmittances with radiant floor heating system were 10% to 17% higher than the linear thermal transmittances without radiant floor heating system.
Regarding annual heating energy consumption, the adjusted linear thermal transmittance was 1.1% to 3.5% higher energy consumption than that is calculated with the default value of ISO 14683.
This research covered linear thermal transmittances under steady states. Further studies need to cover linear thermal transmittances at dynamic states with weather data.
Author(s)
김민성
Issued Date
2019
Awarded Date
2019. 2
Type
Dissertation
Keyword
선형 열관류율 열교 벽체-슬래브 접합부 바닥 복사 난방 시스템
Publisher
부경대학교
URI
https://repository.pknu.ac.kr:8443/handle/2021.oak/23266
http://pknu.dcollection.net/common/orgView/200000183630
Alternative Author(s)
Minseong Kim
Affiliation
부경대학교 대학원
Department
대학원 건축공학과
Advisor
이규남
Table Of Contents
Ⅰ 서 론 1
1. 연구의 배경 및 목적 1
2. 연구의 방법 및 범위 3

Ⅱ 열교 및 선형 열관류율 이론 5
1. 열교 개요 5
2. 선형 열관류율 정의 8
3. 주요 부위의 선형 열관류율 기본 값 10
4. 실측 데이터를 활용한 선형 열관류율 분석 12

Ⅲ 바닥 복사 난방 시스템의 열교 영향도 분석 방법 16
1. 시뮬레이션 모델 건물 개요 16
2. 시뮬레이션 모델 해석 조건 22

Ⅳ 시뮬레이션 해석 결과 25
1. 측벽의 선형 열관류율 해석 결과 25
2. 전면벽의 선형 열관류율 해석 결과 33
3. 선형 열관류율 고찰 및 활용 방안 43

Ⅴ 선형 열관류율을 활용한 에너지 해석 45
1. 선형 열관류율의 에너지 해석 적용 방법 45
2. 바닥 복사 난방 시스템 적용 건물의 열교 개선 방안 49
가. 저온수 난방 시스템 49
나. 창호 프레임의 위치 조절 50
3. 에너지 해석 개선 방안 53

Ⅵ 결 론 54

참고문헌 56
Degree
Master
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대학원 > 건축공학과
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