Exhaust system of the optical power plant process designand test Complied with the LEED Green Building Code
碩士 === 國立交通大學 === 工學院產業安全與防災學程 === 104 === The capacity of the high-tech industry to achieve higher standards of production yield, energy use is often over-designed, not the optimal production conditions at the beginning of the test plant, resulting in a lot of energy waste. Contains process displac...
Main Authors: | , |
---|---|
Other Authors: | |
Format: | Others |
Language: | zh-TW |
Published: |
2016
|
Online Access: | http://ndltd.ncl.edu.tw/handle/01772601220948885672 |
id |
ndltd-TW-104NCTU5707008 |
---|---|
record_format |
oai_dc |
spelling |
ndltd-TW-104NCTU57070082017-09-06T04:22:11Z http://ndltd.ncl.edu.tw/handle/01772601220948885672 Exhaust system of the optical power plant process designand test Complied with the LEED Green Building Code 遵循LEED綠建築規範進行光電廠製程Exhaust系統設計與測試研究 TAI,SHUANG-HSIA 戴双喜 碩士 國立交通大學 工學院產業安全與防災學程 104 The capacity of the high-tech industry to achieve higher standards of production yield, energy use is often over-designed, not the optimal production conditions at the beginning of the test plant, resulting in a lot of energy waste. Contains process displacement machine, in fact, the production only need to meet the optimum displacement, but most of the production machine garnered done this test, how fulfilled optimal (minimum) amount of exhaust; thus achieving low pollution production? This requires consideration and one by one from the overall design, testing should permit, in order to reduce energy consumption, in line with the corporate image and energy performance. Plant science and technology and the demand for the use of quality energy and water and electricity have a relatively high standard, this study is the current US Green Building LEED standard, analyzed in some air-conditioning system energy to explore and test, and photovoltaic panels plant row gas turbine power operation, focusing on green building codes in accordance with LEED major projects related tests, hoping to plant science and technology for the construction of green buildings "energy efficiency" and "electricity" aspect of the evaluation index and tool recommendations. By photovoltaic panels and workshops and literature data collection, analysis and substantive discussion on science and technology at all levels of new construction plant "energy efficiency indicators" and "power resource targets" and other tests to measure whether achieve "green technology energy-saving plant electrical standards, "and the test mode within individual factor in making recommendations. Second, the aggregate related energy saving technologies, in order to achieve concrete implementation of energy saving benefits. Chen, Chiun-Hsun Shu, Yi-Liang 陳 俊 勳 徐 一 量 2016 學位論文 ; thesis 117 zh-TW |
collection |
NDLTD |
language |
zh-TW |
format |
Others
|
sources |
NDLTD |
description |
碩士 === 國立交通大學 === 工學院產業安全與防災學程 === 104 === The capacity of the high-tech industry to achieve higher standards of production yield, energy use is often over-designed, not the optimal production conditions at the beginning of the test plant, resulting in a lot of energy waste. Contains process displacement machine, in fact, the production only need to meet the optimum displacement, but most of the production machine garnered done this test, how fulfilled optimal (minimum) amount of exhaust; thus achieving low pollution production? This requires consideration and one by one from the overall design, testing should permit, in order to reduce energy consumption, in line with the corporate image and energy performance.
Plant science and technology and the demand for the use of quality energy and water and electricity have a relatively high standard, this study is the current US Green Building LEED standard, analyzed in some air-conditioning system energy to explore and test, and photovoltaic panels plant row gas turbine power operation, focusing on green building codes in accordance with LEED major projects related tests, hoping to plant science and technology for the construction of green buildings "energy efficiency" and "electricity" aspect of the evaluation index and tool recommendations.
By photovoltaic panels and workshops and literature data collection, analysis and substantive discussion on science and technology at all levels of new construction plant "energy efficiency indicators" and "power resource targets" and other tests to measure whether achieve "green technology energy-saving plant electrical standards, "and the test mode within individual factor in making recommendations. Second, the aggregate related energy saving technologies, in order to achieve concrete implementation of energy saving benefits.
|
author2 |
Chen, Chiun-Hsun |
author_facet |
Chen, Chiun-Hsun TAI,SHUANG-HSIA 戴双喜 |
author |
TAI,SHUANG-HSIA 戴双喜 |
spellingShingle |
TAI,SHUANG-HSIA 戴双喜 Exhaust system of the optical power plant process designand test Complied with the LEED Green Building Code |
author_sort |
TAI,SHUANG-HSIA |
title |
Exhaust system of the optical power plant process designand test Complied with the LEED Green Building Code |
title_short |
Exhaust system of the optical power plant process designand test Complied with the LEED Green Building Code |
title_full |
Exhaust system of the optical power plant process designand test Complied with the LEED Green Building Code |
title_fullStr |
Exhaust system of the optical power plant process designand test Complied with the LEED Green Building Code |
title_full_unstemmed |
Exhaust system of the optical power plant process designand test Complied with the LEED Green Building Code |
title_sort |
exhaust system of the optical power plant process designand test complied with the leed green building code |
publishDate |
2016 |
url |
http://ndltd.ncl.edu.tw/handle/01772601220948885672 |
work_keys_str_mv |
AT taishuanghsia exhaustsystemoftheopticalpowerplantprocessdesignandtestcompliedwiththeleedgreenbuildingcode AT dàishuāngxǐ exhaustsystemoftheopticalpowerplantprocessdesignandtestcompliedwiththeleedgreenbuildingcode AT taishuanghsia zūnxúnleedlǜjiànzhúguīfànjìnxíngguāngdiànchǎngzhìchéngexhaustxìtǒngshèjìyǔcèshìyánjiū AT dàishuāngxǐ zūnxúnleedlǜjiànzhúguīfànjìnxíngguāngdiànchǎngzhìchéngexhaustxìtǒngshèjìyǔcèshìyánjiū |
_version_ |
1718527466515988480 |