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태양에너지 저온활용의 효율성 제고를 위한 연구 : 자연채광 및 흡착식 해수담수화

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Abstract
Thermal applications of solar energy are categorized by low, medium and high temperature. The present study has explored two major applications of solar energy widely researched and practiced these days. Of these, one deals with the utilization of solar energy for lighting in buildings, which is responsible for a great portion of electricity consumption, especially, for office and public buildings. Rapid improvements in lighting technology harnessing solar energy (daylight) have greatly contributed to radically reduce its consumption levels ? and thereby reduce CO2 emissions and cost. The other case considered here for solar utilization is so-called solar desalination using adsorbents (silica gels). This technology utilizes a silica gel adsorbent (desiccant) as a medium between an evaporator and a condenser to reject and facilitate latent heat of vaporization. Vapour is adsorbed and desorbed between evaporation and condensation phases.

1. Daylighting simulation
A lighting upgrade is an obvious step toward improving a building's energy consumption, which could be easily assessed by using computer simulations. The present study has carried out a series of computer simulations for a lightless space as well as an actual classroom (in Jeju National University) when sun pipe systems are installed. They were first modeled by ECOTECT before RADIANCE was called in to conduct lighting analysis. Simulations were performed for equinoxes and solstices when the sun is at its highest altitude, i.e. at noon (12 PM). A lightless space and classroom of the same dimensions revealed the effectiveness of sun pipe systems to improve indoor lighting conditions throughout the year.

2. Development of adsorption desalination system utilizing silica-gel
Some major components of an adsorption desalination system were designed and fabricated to assess its desalination efficiency when packs of silica-gel were used at different operating conditions. The amount of fresh water yield was studied and compared for different temperatures and different operation time of evaporator and reactor. Also tested were different types of silica gel, A-type silica gel, Blue silica gel and Mycom silica gel, where A-type silica gel showed the best performance in producing fresh water. To achieve higher efficiency, it deems the system has to be further explored for operational optimization including some drastic improvement in the desorption rate of silica gel.
Author(s)
김영민
Issued Date
2011
Type
Dissertation
URI
http://dcoll.jejunu.ac.kr/jsp/common/DcLoOrgPer.jsp?sItemId=000000005398
Alternative Author(s)
Kim, Yeong Min
Affiliation
제주대학교
Department
대학원 에너지공학과
Advisor
천원기
Table Of Contents
LIST OF FIGURES ⅲ
LIST OF TABLES ⅵ
SUMMARY ⅶ


Ⅰ. 서 론 1

1. 광 파이프를 이용한 자연채광 시뮬레이션 1
2. 실리카겔(Silica gel)을 이용한 흡착식 해수담수화의 연구 3

Ⅱ. 이론적 배경 5

1. 자연채광 시뮬레이션 5
1.1 광에너지의 단위 5
1.2 자연채광 시스템(Daylighting System) 7
1.3 시뮬레이션 프로그램 11

2. 흡착식 해수담수화 시스템 14
2.1 해수 담수화의 유형별 특징 20
2.2. 흡착제의 종류 및 특성 28

Ⅲ. 광 파이프 시뮬레이션 30

1. 모델링 및 시뮬레이션 30
1.1 모델링 30
1.2 시뮬레이션 32
2. 결과 분석 및 고찰 34
2.1 광 파이프 시스템의 기본 성능 시뮬레이션 34
2.2 광 파이프 시뮬레이션 조도 비교 38

3. 소결론 43

Ⅳ. 흡착식 해수담수화 시스템의 개발 45

1. 실험장치 구성 45
1.1 해수담수화 설비의 구성 45
1.2 냉공조 시스템(Chiller)의 구성 51
1.3 계측 장비 구성 53

2. 실험방법 57
2.1 기본원리 57
2.2 예비실험 58
2.3 예비실험결과 60

3. 실험결과 및 고찰 64
3.1 실리카겔(Silica gel)의 타입별 효율 64

4. 소결론 72

Ⅴ. 결 론 73

참 고 문 헌 74

감사의 글
Degree
Master
Publisher
제주대학교 대학원
Citation
김영민. (2011). 태양에너지 저온활용의 효율성 제고를 위한 연구 : 자연채광 및 흡착식 해수담수화
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Faculty of Applied Energy System > Energy and Chemical Engineering
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