1장 열역학 이론 및 냉방 기술 동향 ························································1
2장 열유동 해석 기초이론 및 방법론 ····················································65
I. 에너지 절약형 시스템 냉난방 기술 ·························································67
1. 서언 ·······················································································································67
2. VRF 히트펌프 시스템의 정의 ········································································68
3. 열원에 따른 히트펌프 시스템의 분류 및 기술동향 ···································71
4. 친 환경 조명 LED와 PLS ··············································································82
5. BMS (Building Management Solution) ···················································89
6. L빌딩 리모델링 사례 ························································································94
3장 지역냉방과 아이스슬러리 적용가능성 ··········································103
1. 서론 ·············································································································105
2. 수평관에서의 허용압력 ···········································································106
3. 수평관 동결시의 압력측정 실험 ···························································106
4. 결론 ·············································································································112
4장 난방 및 덕트 배관망 해석 기술 ··················································115
I. 열유동과 배관망 해석 ··············································································117
1. 유동 방정식 ······································································································117
2. 내부 유동 ··········································································································121
3. 외부 유동 ··········································································································129
II. 온수난방 시스템 분배기 ·········································································135
1. 보일러 온수난방 시스템 ················································································135
2. 성능시험 장치 및 방법 ··················································································137
3. 온수난방 분배기 특성시험 ············································································141
4. 보일러 운전 조건에서의 부하변동 시험 ····················································144
5. 캐비테이션의 발생 평가 ················································································145
III. 입상 덕트 환기 시스템 ·········································································148
1. 초고층 공동주택의 환기시스템 ····································································148
2. 해석 모델 및 계산 조건 ················································································149
3. 외기 조건에 따른 환기 성능 평가 ······························································153
4. 작동 조건에 따른 영향 ··················································································157
5장 태양광열광 신선 외기 난방 기술 ··················································159
I. 서론 ··············································································································161
II. 태양열-전기(PVT Hybrid) 시스템 특성 ·········································163
1. 시스템 개요 ······································································································163
2. PV(Photovoltaic) 시스템 특징 ··································································164
3. Solarwall 시스템 특성 ··················································································169
III. 태양열-전기 시스템 평가 ····································································185
1. 시스템 개요 ······································································································185
2. PV-Solarwall 시스템의 작동원리 ·····························································185
3. PV-Solarwall 시스템 실험장치 구현 ·······················································186
IV. 실험결과 및 분석 ···················································································193
1. 실험결과 비교 ··································································································193
Ⅴ. 결론 ············································································································196
6장 지열 냉난방 시스템 최적 설계 기술 ········································197
I. 지열 보급 정책 ··························································································199
1. 에너지 정책의 기본 방향 ··············································································199
2. 신·재생에너지 정책 ······················································································201
3. 신·재생에너지 보급 및 지원제도 ······························································203
II. 지열 냉난방 시스템 개요 ·······································································207
1. 지열에너지 이용 기술 ····················································································207
2. 지열 냉난방 시스템 ························································································210
3. 지열원 열펌프 시스템 작동 원리 ································································212
4. 지열원 열펌프 시스템의 종류 및 특징 ······················································215
III. 지열 냉난방 시스템 최적 설계 ···························································219
1. 설계 개요 ··········································································································219
2. 시공 개요 ··········································································································225
IV. 최신 기술 동향 ·······················································································227
참고 문헌 ·········································································································233"
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