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研究生: 侯彥宇
Hou, Yan-Yu
論文名稱: 於台灣中低海拔森林檢驗葉面積指數間接量測法的測量表現
Assessing the leaf area index indirect measurement equipment performance in low and mid altitude forest in Taiwan
指導教授: 林登秋
Lin, Teng-Chiu
學位類別: 碩士
Master
系所名稱: 生命科學系
Department of Life Science
論文出版年: 2018
畢業學年度: 106
語文別: 中文
論文頁數: 58
中文關鍵詞: 葉面積指數半球面影像植冠分析儀亞熱帶森林
英文關鍵詞: leaf area index(LAI), hemispherical photography, plant canopy analyzer, subtropical forest
DOI URL: http://doi.org/10.6345/THE.NTNU.SLS.008.2018.D01
論文種類: 學術論文
相關次數: 點閱:44下載:6
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  • 葉面積指數是重要的生態參數,葉面積多寡影響生態系的初級生產力、能量的流轉與水循環等重要生態過程。因此,測量與描述生態系的葉面積指數及其時空變動,有助於了解生態系的特性、結構、功能、抵抗力與回復力。
    量測葉面積指數的方法可分為直接量測法與間接量測法。直接量測法較為準確但操作費時而不易在大空間範圍施作;間接量測法乃透過偵測光的削減、林冠孔隙率等方式估算葉面積,操作較為快速簡便,但其運算過程中有許多假定與現實有一定落差,因此需以直接量測法校正或驗證。已有許多研究於溫帶檢驗葉面積指數間接量測法中的植冠分析儀與半球面影像的測量表現,多數前人研究指出兩者容易低估葉面積,但測量結果與實際值間具有強烈線性關係。然而少有研究於熱帶與亞熱帶進行。因此這兩種儀器於台灣的森林環境的誤差情形仍有待探討。
    本研究於奧萬大設置落葉陷阱檢驗植冠分析儀與半球面影像的準確性,並於蓮華池試驗中心之檳榔林、肖楠林、香杉林、天然闊葉林檢驗兩種儀器是否能反映葉面積於生長季增加之趨勢。
    研究結果顯示台灣中低海拔、枝幹較密集、冠層較密閉的森林中,兩種儀器皆會低估葉面積,但植冠分析儀的低估情形較不嚴重且較半球面影像更能反應葉面積於時間上的變化。但冠層較開闊時,半球面影像可能有更好的表現,但會高估葉面積。除上述測量表現外,兩種儀器實際使用、分析時可能面臨不同的問題或限制,如天氣、放置位置、分析者等,這些也應納入考量來選擇最適合的儀器。

    Leaf area index (LAI) is an important ecological parameter. Leaf area affects various important ecological processes, such as primary productivity, energy flow, and water cycle. Therefore, measuring LAI and its dynamics help our understanding of the features, structure, function, recovery, and resistance of ecosystems.
    Direct and indirect methods are widely used to measure LAI. Direct methods are accurate but are time consuming and spatially limited. With some inherent assumptions, indirect methods estimate LAI through light transmittance or gap fractions and can be operated at broad scales. However, the deviation from the assumptions varies among tree species or ecosystems. Thus, it is important to test the validity of indirect methods.
    Numerous studies have tested the validity of plant canopy analyzer (PCA) and hemispherical photography in estimating LAI. However, most of the studies were conducted in temperate region, which has very different forest composition from those in the subtropics. Thus, it remains unclear if the results of these studies can be directly applied to subtropical Taiwan.
    This study use direct method - litter trap to estimate the LAI and compare it to the estimates made by PCA and hemispherical photography and thereby test their accuracy. How the two types of equipment perform at different leaf area levels area are also important in the applications. Thus we measure leaf area index in four different forests from March to July, the growing season, in Taiwan to examine the viability of the two types of equipment by checking the trend of increase in leaf area estimated by PCA and hemispherical photography.
    The result shows that in areas with high leaf area such as low and mid altitude forest in Taiwan, both types of equipment tend to underestimate LAI. However, compare to hemispherical photography, PCA is more accurate and can better capture the temporal changes in LAI. In contrast, in areas with low leaf area, the performance of hemispherical photography is better, although it overestimated LAI.
    In addition to the patterns described above, the performance of PCA and hemispherical photography is although affected by weather, the location of positioning of the equipment and the personal bias of analyzers. Researchers should be aware of the limitation of both types of equipment in their application.

    摘要 I 目錄 V 圖次 VII 表次 VIII 壹、背景及目的 1 貳、研究方法與材料 5 一、儀器介紹 5 1.植冠分析儀(Plant Canopy Analyzer, PCA) 5 2.半球面影像(Hemispherical Photographs) 7 二、研究地點介紹 9 三、實驗方法 11 1.奧萬大-準確性檢驗 11 2.蓮華池-趨勢檢驗 16 四、數據處理與分析 18 參、實驗結果 20 一、準確性檢測 20 二、葉面積趨勢變化檢測 25 肆、討論 29 一、準確度檢驗 29 1.落葉陷阱 29 2.調整分析範圍前 31 3.調整分析範圍後 33 4.準確性小結 35 二、趨勢檢驗 37 1.檳榔林 37 2.肖楠林 38 3.香杉林 39 4.闊葉林 41 5.不同森林間的比較 44 6.趨勢檢驗小結 46 三、儀器的限制 50 伍、結論與建議 51 陸、引用文獻 53

    王素芬、林婉婷、張仲德、林登秋 (2012) 蓮華池試驗林梅雨降雨型態變遷與植生變動之分析。地理學報 (66):67-86.
    邱志明、蘇聲欣、唐盛林、傅昭憲 (2014) 肖楠人工林之疏伐與林下闊葉樹栽植之效益評估。 中華林學季刊 47(2):137-153.
    吳貞純、童秋霞 (2005) 國家森林遊樂區生態旅遊活動之設計與評估。
    洪富文、夏禹九、唐凱軍 (1986) 蓮華池次生暖溫帶山地雨林地上部生物量及葉面積之估算。臺灣省林業試驗所報告 第465號.
    黃正良、廖學誠、金恆鑣、陳明杰、李福明 (2007) 2001 年桃芝颱風蓮華池人工林及天然林集水區溪流水化學之比較。臺灣大學生物資源暨農學院實驗林研究報告 21(1):53-63.
    黃進睦、陳麗琴、陳溢宏 (2012) 蓮華池巒大杉人工造林地二次疏伐之林分生長研究。 林業研究專訊 19(5):54-58.
    陳青香、林登秋、黃正良 (2007) 台灣中部蓮華池試驗林天然闊葉林與人工杉木林葉面積指數變動及其對初級生產力估算之影響。臺灣林業科學 22(4):423-439.
    陸象豫、黃良鑫、傅鶴翹. (1999). 檳榔園水文特性之研究. 臺灣林業科學, 14(2), 211-221.
    盧惠生、胡蘇澄、林壯沛 (1996) 蓮華池坡地檳榔園土壤入滲模式之研究。 臺灣林業科學 11(4):409-420.
    Brenner AJ, Cueto Romero M, Garcia Haro J, Gilabert MA,Incoll LD, Martinez Fernandez J & Younis MT (1995) A comparison of direct and indirect methods for measuring leaf and surface areas of individual bushes. Plant, Cell & Environment 18(11) : 1332-1340.
    Bréda NJ (2003) Ground‐based measurements of leaf area index: a review of methods, instruments and current controversies. Journal of Experimental Botany 54(392): 2403-2417.
    Campbell GS (1986) Extinction coefficients for radiation in plant canopies calculated using an ellipsoidal inclination angle distribution. Agricultural and Forest Meteorology 36(4) : 317-321.
    Chason JW, Baldocchi DD & Huston MA (1991) A comparison of direct and indirect methods for estimating forest canopy leaf area. Agricultural and Forest Meteorology 57(1-3) : 107-128.
    Chen JM, Rich PM, Gower ST, Norman JM & Plummer S (1997)Leaf area index of boreal forests: Theory,techniques, and measurements. Journal of Geophysical Research: Atmospheres 102(D24) : 29429-29443.
    Cheng JD, Lin JP, Lu SY, Huang LS & Wu HL (2008)Hydrological characteristics of betel nut plantations on slopelands in central Taiwan/Caractéristiques hydrologiques de plantations de noix de bétel sur des versants du centre Taïwan. Hydrological Sciences Journal 53(6) : 1208-1220.
    Cutini A, Matteucci G & Mugnozza GS (1998) Estimation of leaf area index with the Li-Cor LAI 2000 in deciduous forests. Forest Ecology and Management 105(1) : 55-65.
    Delta-T (2000) HemiView canopy analysis software: user’s manual. Vers. 2.0. Cam-bridge, UK: Delta-T Devices.85 p.
    Dufrêne E & Bréda N (1995) Estimation of deciduous forest leaf area index using direct and indirect methods.Oecologia 104(2) : 156-162.
    Eriksson H, Eklundh L, Hall K & Lindroth A (2005)Estimating LAI in deciduous forest stands.Agricultural and Forest Meteorology 129(1) : 27-37.
    Fassnacht KS, Gower ST, Norman JM & McMurtric RE (1994) A comparison of optical and direct methods for
    estimating foliage surface area index in forests.Agricultural and Forest Meteorology 71(1-2) : 183-207.
    Jonckheere I, Fleck S, Nackaerts K, Muys B, Coppin P,Weiss M & Baret F (2004) Review of methods for in situ leaf area index determination: Part I. Theories,sensors and hemispherical photography. Agricultural and Forest Meteorology 121(1) : 19-35.
    Küßner R & Mosandl R (2000) Comparison of direct and indirect estimation of leaf area index in mature Norway spruce stands of eastern Germany. Canadian Journal of Forest Research 30(3) : 440-447.
    Levy PE & Jarvis PG (1999) Direct and indirect measurements of LAI in millet and fallow vegetation in HAPEX-Sahel. Agricultural and Forest Meteorology97(3) : 199-212.
    LI-COR (1992) LAI-2000 plant canopy analyzer operating manual. Lincoln, NE : Li-Cor. 90p.
    Lugo AE (2008) Visible and invisible effects of hurricanes on forest ecosystems: an international review. Austral Ecology 33(4) : 368-398.
    Martens SN, Ustin SL & Rousseau RA (1993) Estimation of tree canopy leaf area index by gap fraction analysis.Forest Ecology and Management 61(1) : 91-108.
    McShane MC, Carlile DW & Hinds WT (1983) The effect of collector size on forest litter-fall collection and analysis. Canadian Journal of Forest Research 13(6) :1037-1042.
    Olivas PC, Oberbauer SF, Clark DB, Clark DA, Ryan MG,O’Brien JJ & Ordonez H (2013) Comparison of direct and indirect methods for assessing leaf area index across a tropical rain forest landscape. Agricultural and Forest Meteorology 177 : 110-116.
    Planchais I & Pontailler JY (1999) Validity of leaf areas and angles estimated in a beech forest from analysis of gap frequencies, using hemispherical photographs and a plant canopy analyzer. Annals of Forest Science56(1) : 1-10.
    Robison SA & McCarthy BC (1999) Potential factors affecting the estimation of light availability using hemispherical photography in oak forest understories.
    Journal of the Torrey Botanical Society 344-349.
    Röver A & Koch HJ (1995) Indirect determination of leaf area index of sugar beet canopies in comparison to direct measurement. Journal of Agronomy and Crop Science 174(3) : 189-195.
    Rhoads AG, Hamburg SP, Fahey TJ, Siccama TG & Kobe R(2004) Comparing direct and indirect methods of assessing canopy structure in a northern hardwood forest. Canadian Journal of Forest Research 34(3) :4-591.
    Sampson DA & Allen HL (1995) Direct and indirect estimates of leaf area index (LAI) for lodgepole and loblolly pine stands. Trees-Structure and Function9(3) : 119-122.
    Schaefer MT, Farmer E, Soto-Berelov M, Woodgate W & Jones S (2015) Overview of ground based techniques for estimating LAI. AusCover Good Practice Guidelines: A Technical Handbook Supporting Calibration and Validation Activities of Remotely Sensed Data Products.TERN AusCover : 88-118.
    Sonnentag O, Talbot J, Chen JM & Roulet NT (2007) Using direct and indirect measurements of leaf area index to characterize the shrub canopy in an ombrotrophic peatland. Agricultural and Forest Meteorology 144(3): 200-212.
    Welles JM (1990) Some indirect methods of estimating canopy structure. Remote Sensing Reviews 5(1) : 31-43.
    Welles JM & Cohen S (1996) Canopy structure measurement by gap fraction analysis using commercial instrumentation. Journal of Experimental Botany 47(9): 1335-1342.
    Wilson JW (1960) Inclined point quadrats. New Phytologist59(1) : 1-7.
    Whitford KR, Colquhoun IJ, Lang ARG & Harper BM (1995)Measuring leaf area index in a sparse eucalypt forest: a comparison of estimates from direct measurement, hemispherical photography, sunlight transmittance and allometric regression. Agricultural and Forest Meteorology 74(3) : 237-249.

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