研究生: |
張育瑋 |
---|---|
論文名稱: |
氣候變遷下臺灣地區溫度變化對度日與電力供需之影響 |
指導教授: | 陳正達 |
學位類別: |
碩士 Master |
系所名稱: |
地球科學系 Department of Earth Sciences |
論文出版年: | 2013 |
畢業學年度: | 101 |
語文別: | 中文 |
論文頁數: | 94 |
中文關鍵詞: | 度日 、電力負載 、氣候變遷 、取暖度日 、降溫度日 |
論文種類: | 學術論文 |
相關次數: | 點閱:139 下載:74 |
分享至: |
查詢本校圖書館目錄 查詢臺灣博碩士論文知識加值系統 勘誤回報 |
全球氣候變遷,臺灣地區夏季的氣溫逐年升高,使得冷氣使用所需的耗能也越來越多,尖峰負載年年創新高。為防止大規模停電,造成嚴重的經濟損失,因此本研究探討臺灣地區氣溫與電力需求兩者之間的關係。
臺灣地區的電力需求呈現夏季多於冬季,平日多於假日的情形,溫度與電力負載呈現非線性關係,因此使用度日分析法使其氣溫與電力負載呈線性關係,以預測未來電力需求。
臺灣地區自1981年至2006年間的度日特徵顯示,取暖度日明顯受緯度影響,出現於11月至隔年4月;降溫度日受都市化影響,出現於5月至10月。整體上,臺灣地區因為緯度較低、氣候溫暖,高溫出現日數較低溫出現日數多,所以降溫需求遠大於取暖需求。
在未來變化預測上,使用CMIP3與CMIP5模式不同情境設定下的氣溫資料,做為推估未來溫度變化的依據。結果顯示,未來降溫度日將急速增加。假設電力負載只受溫度影響下,利用度日分析法所求得的迴歸方程預測未來可能的電力負載值,顯示電力負載於本世紀中葉及本世紀末皆呈現明顯增加的趨勢。
柳中明,「氣候變遷對電力需求的預期分析:文獻回顧」,台電工程月刊,第759期,第44-60頁,2011年。
經濟部能源局,「100-109年長期負載預測與電源開發規劃摘要報告」,第17頁,2011年。
劉紹臣,「台灣氣候變遷」,台電工程月刊,第759期,第1-8頁,2011年。
Amato, A. D., M. Ruth, P. Kirshen, and J. Horwitz, 2005:Regional energy demand response to climate change:Methodology and application to the Commonwealth of Massachusetts. Climatic Change, 71, pp.175-201.
Büyükalaca, O., H. Bulut, and T. Yılmaz, 2001:Analysis of variable-base heating and cooling degree-days for Turkey. Applied Energy, 69, 269–283.
Cancelo, J. R., and A. Espasa, 1996:Modelling and forecasting daily series of electity demand. Invest. Econ., 20, 359-376.
CEC, 2002:2002-2012 Electricity outlook report. California Energy Commission Rep. P700-01-004F, 174 pp.
Christenson, M., H. Manz, and D. Gyalistras, 2006:Climate warming impact on degree-days and building energy demand in Switzerland. Energy Conversion and Management, 47, 671-686.
CIBSE, 2006:Degree-days. Theory and Application., The Chartered Institute of Building Services Engineers , 1-52.
Downton M W, Stewart T R, Miller K A, 1988:Estimating Historical Heating and Cooling Needs. Per Capita Degree Days. Journal of Applied Meteorology, 27, 84-90.
Engle, R. F., C. Mustafa, and J. Rice, 1992:Modelling peak electricity demand. J. Forecasting, 11, 241-251.
Eto, J. H., 1998:On using degree-days to account for the effects of weather on annual energy use in office buildings. Energy Build., 12, 113-127.
Franco, Guido, and Alan H. Sanstad, 2008:Climate change and electricity demand in California. Climatic Change, 87, S139-S151.
Hor, Ching-Lai, Simon J. Watson, and Shanti Majithia, 2005:Analyzing the Impact of Weather Variables on Monthly Electricity Demand. IEEE Transactions on Power Systems, 20(4), 2078-2085.
IPCC 2007 Summary for Policymakers, Climate Chang 2007:The Physic Science Basis. Contribution of Working Group I to the Fourth Assessment Report of the Intergovernmental Panel on Climate Chang, Cambridge Univ. Press, Cambridge. [Online]. Available:http://www.ipcc.ch/pdf/assessment-report/ar4/wg1/ar4_wg1_full_report.pdf
IPCC, 2000:The IPCC Special Report on Emissions Scenarios (SRES). , Intergovernmental Panel on Climate Change.
Jones, C.A., and J.R. Kiniry, 1986:CERES-Maize. A simulation Model of Maize Growth and Development. Texas A&M University Press, College Station.
Kadioglu, M. and Z. Sen, 1999:Degree-day formulations and application in Turkey. Journal of Applied Meteorology, 38, 827-846
Kadioglu, M., Z. Sen, and L. Gültekin, 2001:Variations and trends in Turkish seasonal heating and cooling degree-days. Climatic Change, 49, 209-223.
Knutti, R. and J. Sedlacek, 2013:Robustness and uncertainties in the new CMIP5 climate model projections. Nature Climate Change, 3, pp370.
Lam, J. C., 1998:Climatic and economic influences on residential electricity consumption. Energ. Convers. Manage., 39, 623-629.
Li, X., and D. J. Sailor, 1995:Electricity use sensitivity to climate and climate change. World Res. Rev., 7, 334-346.
Matzarakis, A. and C. Blaafoutis, 2004:Heating Degree-days over Greece as an index of energy consumption, Int. J. Climatol, 24, 1817-1828.
Maurer, E. P., 2007:Uncertainty in hydrologic impacts of climate change in the Sierra Nevada, California under two emissions scenarios, Climatic Change, 82, 309-325.
Meinshausen, M. et al., 2011:The RCP greenhouse gas concentrations and their extensions from 1765 to 2300. Climatic Change, 109, 213-241.
Quayle, R. G. and H. F. Diaz, 1980:Heating degree day data applied to residential heating energy consumption. Journal of Applied Meteorology, 19, 241-246.
Sailor, D., 2001:Relating residential and commercial sector electricity loads to climate─Evaluating state level sensitivities on residential electricity consumption. Energy, 26, 645-657.
Strachey Lt-Gen. Sir Richard, 1878:Paper on the computation and quantity of heat in excess of a fixed base temperature received at any place during the course of the year to supply a standard comparison with the progress of vegetation. Quarterly Weather Report Appendix II.
Thom H. C., 1952:Seasonal degree day statistics for the United States. Monthly Weather Review, 80, 143-149.
Thom H. C., 1954:The relationship between heating degree-days and temperature. Monthly Weather Review, 82, 1-6.
Thom H. C., 1966:Normal degree-days above any base by the universal truncation coefficient. Monthly Weather Review, 94, 461-465.
Timmer, R. P. and P. J. Lamb, 2007:Relations between Temperature and Residential Natural Gas Consumption in the Central and Eastern United States. Journal of Applied Meteorology and Climatology, 46, 1993-2013.
Valor, Enric, Vicente Meneu, and Vicente Caselles, 2001:Daily Air Temperature and Electricity Load in Spain. Journal of Applied Meteorology, 40, 1413-1421.
Weiss, A. and C. J. Hays, 2005:Calculating daily mean air temperatures by different methods. Implications from a non-linear algorithm. Agricultural and Forest Meteorology, 128, 57-65.
Wood, A. W., L. R. Leung, V. Sridhar, and D. P. Lettenmaier, 2004:Hydrologic implications of dynamical and statistical approaches to downscaling climate model outputs. Clim. Change, 62, 189-216.
Yan, Y. Y., 1998:Climate and residential electricity consumption in Hong Kong. Energy, 23, 17-20.