题名

水源熱泵系統應用於典藏文物空調箱之節能驗證研究

并列篇名

A Study of Energy-saving Validation for Water Source Heat Pump Applied on the Air-Handling Unit of Preserving Heritage

DOI

10.3966/101632122017030099012

作者

蔣鎮宇(Chen-Yu Chiang);楊儒(Ru Yang);楊冠雄(Kuan-Hsiung Yang)

关键词

一般空調箱 ; 恆溫恆濕 ; 水源熱泵系統 ; 全尺度實驗 ; 節能減碳 ; 顯熱比 ; Air Handling Unit ; Constant-temperature and Constant-humidity ; Water Source Heat Pump ; Full-scale Experiment ; Energy-savings and Emission-reduction ; Sensible Heat Ratio

期刊名称

建築學報

卷期/出版年月

99_S期(2017 / 03 / 31)

页次

73 - 86

内容语文

繁體中文

中文摘要

文物典藏室使用的一般空調箱於恆溫恆濕的環境條件下,傳統上,以設置儲冰式空調系統、鍋爐及電熱系統,分別獨立供應空氣調節過程所需之冷熱需求,造成整體耗能可觀。本研究提出水源熱泵系統與之整合應用,經以全尺度實測驗證系統運轉數據統計分析,獲得加熱方面之節能減碳效益達50%以上之良好成效。若將冷卻除濕部分納入,則得到總體節能率為46%,且因有水源熱泵系統提供預冷盤管之設計,經重新調配顯熱比後,獲得提升5%之除濕能力。本研究進一步分析其最佳化操作策略,以調升除濕盤管出風溫度參數為優先,可獲致節省28%之運轉電力消耗。當空調部份負載情況下,可搭配提高預冷盤管冰水供應溫度之操作,以增加整體節能效果。本研究成果建議作為館方之節能運轉操作策略參考,並為展覽類建築使用之恆溫恆濕空調箱提供一設計應用對策。

英文摘要

Conventionally, a museum storeroom using an air-handling unit have been provided, under a constant-temperature and constant-humidity condition, by ice storage AC systems, boilers and an electrical heating system to meet its cooling and heating needs in the air-conditioning process, which gives rise to lots of power consumption. A helpful approach to this problem is an outdoor AHU integrated with a water-source heat pump system, validating the energy savings of exceeding 50% in the heating aspect by means of a statistic analysis of the full scale experimental validation. Furthermore, the overall effect would reach 46% if it took cooling and dehumidification into account. Because a water-source heat pump system has a precooling design in relation to AHU, it can obtain an improvement of 5% in dehumidifying capability after readjusting the sensible heat ratio. This study analyzes the optimal operational strategy further. Through raising air temperature parameters of the dehumidifying coil as a priority, it can save power consumption by 28%. While operating at partial load, it can simultaneously raise the chilled water supply temperature at the precooling coil, in order to increase the overall energy-saving effect. A reference for energy-saving operation strategy of the Museum is suggested by the results of this study, and also provides a design application for AHU for use in exhibition building.

主题分类 工程學 > 土木與建築工程
参考文献
  1. 經濟部能源局(2012)。節電技術手冊之服務業能源大用戶節電目標規範。引用於 2015 年 1 月 1 日,取自 http://www.ecct.org.tw/OnePercent/page6.htm。Bureau of Energy, Ministry of Economic Affairs (2012). The Energy Saving Handbook Of A Higher Power Demand User-End In The Service Industry For A Target Specification Of Saving Electricity. Retrieved Jan. 1, 2015 from http://www.ecct.org.tw/OnePercent/page6.htm.
  2. 財團法人台灣綠色生產力基金會(2007)。熱水加熱系統汰換為熱泵系統之節能績效量測與驗證方法。引用於 2015 年 8 月 1 日,取自http://www.tgpf.org.tw/event/file/。Taiwan Green Productivity Foundation (2007). Hot Water Heating System Is Replaced By Heat Pump System For The Performance Measurement And Verification Method. Retrieved Aug. 1, 2015 from http://www.tgpf.org.tw/event/file/.
  3. ASHRAE(2002).ASHRAE guideline 14-2002: Measurement of Energy and Demand Savings.Atlanta, GA, USA:ASHRAE.
  4. ASHRAE(2011).AHRI Standard 550/590: Performance Rating of Water-chilling and Heat pump Water-heating Packeges Using the Vapor Compression Cycle.Arlington, USA:Air-conditioning, Heating, and Refrigeration Institute.
  5. ASHRAE(2001).ASHRAE Fundamentals Handbook: Psychrometrics.Atlanta, USA:ASHRAE.
  6. ASHRAE(Ed.)(2003).ASHRAE Handbook: Heating, Ventilating, and Air-Conditioning Applications.GA, USA:ASHRAE.
  7. ASHRAE(Ed.)(1990).ASHRAE Transactions.Atlanta, GA, USA:ASHRAE.
  8. Kramer, R. P.,Maas, M. P. E.,Martens, M. H. J.(2015).Energy conservation in museums using different setpoint strategies: A case study for a state-of-the-art museum using building simulations.Journal of Applied Energy,158,446-458.
  9. Stoecker, W. F.,Jones, J. W.(1982).Refrigeration and Air Conditioning.New York, USA:McGraw-Hill.
  10. 范嘉緯(2005)。高雄市=Kaohsiung,國立中山大學機械與機電工程研究所=Department of Mechanical Engineering, National Sun Yat-Sen University。
  11. 陳良銅(2001)。台北市=Taipei,國立台北科技大學冷凍與低溫科技研究所=Institute of Refrigeration and Low-temperature Technology, National Taipei University of Technology。
  12. 陳良銅、王文博(2001)。電子產業雙冰水溫度系統節能分析。冷凍與空調雜誌,7,78-90。