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  1. NTU Theses and Dissertations Repository
  2. 理學院
  3. 地質科學系
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/47975
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor劉聰桂
dc.contributor.authorShiu-Yuan Tsengen
dc.contributor.author曾秀緣zh_TW
dc.date.accessioned2021-06-15T06:43:46Z-
dc.date.available2012-08-19
dc.date.copyright2011-08-23
dc.date.issued2011
dc.date.submitted2011-08-19
dc.identifier.citation中文部分
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曹受金、曹福祥、祁承經、徐慶軍,2010。氣候變化對樹輪異常結構的影響及應用研究進展。生態環境學報,第19卷,第2期,第494-498頁。
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詹明勳,王亞男,王松永,2004。Soft X-ray 影像分析法應用於天然林台灣櫸、樟樹及烏心石樹輪寬度及密度分析之研究。中華林學季刊,第37卷,第4期,第379-392頁。
詹明勳,王松永,王亞男,林金樹,2005。台灣北部棲蘭山地區氣候與干擾因子對天然生紅檜、扁柏、台灣杉、巒大杉樹輪影響之研究。氣候變遷、衝擊、因應與永續發展研究進展論文集,第349-360頁。
詹琬婷,2004。由樹輪分析探討棲蘭山台灣扁柏更新機制。國立台灣大學森林學研究所碩士論文,共83頁。
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英文部分
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Campelo, F., Nabais, C., Freitas, H. and Gutierrez, Emilia., 2006. Climatic significance of tree-ring width and intra-annual density fluctuations in Pinus pinea from a dry Mediterranean area in Portugal. Annals of Forest Science, 64(2), 229-238.
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Holmes, R. L., 1994. Dendrochronology Program Library User’s Manual. Laboratory of Tree-Ring Research, University of Arizona, Tucson.
Holmes, R. L., Adams, R. K. and Fritts, H.C., 1986. Tree-Ring chronologies of Western North America: California, Eastern Oregon and Northern Great Basin with procedures used in the chronology development word including users manuals for computer programs COFECHA and ATSTAN.Laboratory of Tree-Ring Research, University of Arizona, Tucson, 182.
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Masiokas, M. and R. Villalba, 2004. Climatic significance of intra-annual bands in the wood of Nothofagus pumilio in southern Patagonia. Tree, 18(6), 696-704.
Nobori, Y., 1989. Shin-Nenrin Kaiseki Progarm (Tree Ring analysis Program) var.2.1.Oij co. Institute of forestry Improvement. Kuriyama, Hokkaido.
Parker, M.L. and Jozsa, L.A.,1973. X-ray scanning machine for tree-ring and density analysis. Wood and Fiber, 5(3), 192-197.
Schulman E., 1939. Classification of false annual rings in west Texas pine. Tree-ring Bull. 6, 11-13.
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dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/47975-
dc.description.abstract樹輪氣候學研究,除了可以樹輪寬度與密度了解古氣候外,樹木異常結構-偽輪 (false ring)亦可反映氣候異常事件或森林生態受干擾。
本研究以中、高海拔台灣扁柏 (Chamaecyparis obtusa var. formosana) 易有偽輪的特性,瞭解棲蘭山地區的氣候變化。透過軟X射線方法量測8棵12根樹芯樹輪寬度與密度,經由交互定年得到樹輪參數年表及每年偽輪出現的比例。
由5種參數年表:全輪寬度、早材寬度、晚材寬度、最小密度及最大密度,經與氣候因子相關分析,大致顯示樹輪寬度對於溫度反應佳,樹輪密度對於降雨量敏感。偽輪位置出現於早材生長期間的比例多於出現於晚材。偽輪位於早材的年份氣候常呈現5月異常高溫、多雨或7月異常高溫。而偽輪出現在晚材位置的年份,10月多呈現異常低溫。台灣扁柏出現偽輪的年份,7-8月颱風侵襲較其它月份高。初步研究結果表示,台灣扁柏偽輪可作為重建古氣候上的有用參數。
zh_TW
dc.description.abstractThe width and density of tree-ring is not only affect by climate, but the pathological structure, such as false ring, also reflect the change of climate.
Ring growth and the presence of false rings were studied in Chamaecyparis obtusa var. formosana growing in the Mt. Chilan area. Five tree-ring parameters, including total ring width (RW), earlywood width (EW), latewood width (LW), maximum density (MaxD), minimum density (minD), were obtained by soft x-ray image-analysis method. The five tree ring chronologies and false ring proportion from 1960 to 2009 A.D. have been established by soft x-ray image-analysis method, cross dating and ARSTAN program.
The correlations between the above five parameters and climate data from Ilan station indicate monthly mean temperature is more sensitive to tree-ring width than monthly precipitation. Most false rings were found in the earlywood. The year of coourence of false ring contrast to climate data of April-October at the same year, the results show: (1) The appearances of false ring in the earlywood are relative to the anomaly of high temperature or precipitation in May, or an abnormal high temperature in July. (2) The false rings in the latewood appear under an abnormal low temperature in October. (3) The false rings are most likely related to the typhoon events of July and August.
Overall, false ring is an unique feature in tree ring and can be applied successfully in dendroclimatic studies.
en
dc.description.provenanceMade available in DSpace on 2021-06-15T06:43:46Z (GMT). No. of bitstreams: 1
ntu-100-R96224208-1.pdf: 7885125 bytes, checksum: e1b00a7146b39005b45743bdb70a39b8 (MD5)
Previous issue date: 2011
en
dc.description.tableofcontents摘 要 I
ABSTRACT II
圖目錄 V
表目錄 VII
第一章 緒 論 - 1 -
1.1前言 - 1 -
1.2研究背景 - 1 -
1.3研究動機與目的 - 10 -
第二章 研究區域與材料 - 11 -
2.1採樣區域描述 - 11 -
2.2採樣樹種特性 - 12 -
第三章 研究方法 - 18 -
3.1樣本採集 - 19 -
3.2樣本前處理 - 19 -
3.3軟X 射線影像分析法 - 20 -
3.4交互定年 - 22 -
3.5樹輪參數年表建立 - 25 -
3.6樹輪與氣候關係 - 26 -
3.7偽輪出現的比例與異常氣候的關係 - 26 -
第四章 結果與討論 - 28 -
4.1樣本的耗損 - 28 -
4.2交互定年及量測結果 - 29 -
4.3樹輪參數年表建立 - 29 -
4.4樹輪與氣候因子相關分析 - 31 -
4.5氣候變化對棲蘭山區台灣扁柏的全輪寬度影響 - 36 -
4.6偽輪分析 - 37 -
4.7偽輪與氣候的意義 - 49 -
第五章 結論 - 54 -
參考文獻 - 55 -
附錄一、COFECHA檢驗結果 - 59 -
附錄二、棲蘭山區台灣扁柏各樹輪參數年表統計值 - 60 -
附錄三、各參數年表序列之共同區間分析 - 65 -
附錄四、部分樹芯序列偽輪出現年份的照片 - 70 -
dc.language.isozh-TW
dc.title宜蘭縣棲蘭山區台灣扁柏近50年偽輪的氣候意義初探zh_TW
dc.titlePreliminary Study of Climatic Implications of False Rings in Chamaecyparis obtusa var. formosana during the Last 50 years from Mt. Chilan area, Ilanen
dc.typeThesis
dc.date.schoolyear99-2
dc.description.degree碩士
dc.contributor.coadvisor詹明勳
dc.contributor.oralexamcommittee#VALUE!
dc.subject.keyword偽輪,樹輪,軟X射線影像分析法,zh_TW
dc.subject.keywordfalse rings,tree ring,x-ray image-analysis method,en
dc.relation.page78
dc.rights.note有償授權
dc.date.accepted2011-08-20
dc.contributor.author-college理學院zh_TW
dc.contributor.author-dept地質科學研究所zh_TW
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