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Analysis of Life Cycle Costs and Ene...
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Arizona State University.
Analysis of Life Cycle Costs and Energy Savings of Electrochromic Glazing for an Office Building.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Analysis of Life Cycle Costs and Energy Savings of Electrochromic Glazing for an Office Building.
作者:
Munshi, Kavish Prakash.
面頁冊數:
79 p.
附註:
Source: Masters Abstracts International, Volume: 50-05, page: 3249.
附註:
Adviser: Harvey Bryan.
Contained By:
Masters Abstracts International50-05.
標題:
Engineering, Architectural.
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=1509182
ISBN:
9781267297556
Analysis of Life Cycle Costs and Energy Savings of Electrochromic Glazing for an Office Building.
Munshi, Kavish Prakash.
Analysis of Life Cycle Costs and Energy Savings of Electrochromic Glazing for an Office Building.
- 79 p.
Source: Masters Abstracts International, Volume: 50-05, page: 3249.
Thesis (M.S.D.)--Arizona State University, 2012.
Building Envelope includes walls, roofs and openings, which react to the outdoor environmental condition. Today, with the increasing use of glass in building envelope, the energy usage of the buildings is increasing, especially in the offices and commercial buildings. Use of right glass type and control triggers helps to optimize the energy use, by tradeoff between optical and thermal properties. The part of the research looks at the different control triggers and its range that governs the use of electrochromic glass to regulate the energy usage in building. All different control trigger that can be possibly used for regulating the clear and tint state of glass were analyzed with most appropriate range. Its range was triggered such that 80% time of the glass is trigger between the ranges. The other building parameters like window wall ratio and orientations were also investigated. The other half of the research study looks into the feasibility of using the Electrochromic windows, as it is ought to be the main factor governing the market usage of Electrochromic windows and to investigate the possible ways to make it feasible. Different LCC parameters were studied to make it market feasible product. This study shows that installing this technology with most appropriate trigger range can reduce annual building energy consumption from 6--8% but still cost of the technology is 3 times the ASHRAE glass, which results in 70--90 years of payback. This study concludes that south orientation saves up to 3--5% of energy and 4--6% of cooling tons while north orientation gives negligible saving using EC glass. LCC parameters show that there is relative change in increasing the net saving for different parameters but none except 50% of the present glass cost is the possible option where significant change is observed.
ISBN: 9781267297556Subjects--Topical Terms:
660155
Engineering, Architectural.
Analysis of Life Cycle Costs and Energy Savings of Electrochromic Glazing for an Office Building.
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Building Envelope includes walls, roofs and openings, which react to the outdoor environmental condition. Today, with the increasing use of glass in building envelope, the energy usage of the buildings is increasing, especially in the offices and commercial buildings. Use of right glass type and control triggers helps to optimize the energy use, by tradeoff between optical and thermal properties. The part of the research looks at the different control triggers and its range that governs the use of electrochromic glass to regulate the energy usage in building. All different control trigger that can be possibly used for regulating the clear and tint state of glass were analyzed with most appropriate range. Its range was triggered such that 80% time of the glass is trigger between the ranges. The other building parameters like window wall ratio and orientations were also investigated. The other half of the research study looks into the feasibility of using the Electrochromic windows, as it is ought to be the main factor governing the market usage of Electrochromic windows and to investigate the possible ways to make it feasible. Different LCC parameters were studied to make it market feasible product. This study shows that installing this technology with most appropriate trigger range can reduce annual building energy consumption from 6--8% but still cost of the technology is 3 times the ASHRAE glass, which results in 70--90 years of payback. This study concludes that south orientation saves up to 3--5% of energy and 4--6% of cooling tons while north orientation gives negligible saving using EC glass. LCC parameters show that there is relative change in increasing the net saving for different parameters but none except 50% of the present glass cost is the possible option where significant change is observed.
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http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=1509182
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