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  1. NTU Theses and Dissertations Repository
  2. 生物資源暨農學院
  3. 生物環境系統工程學系
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/29248
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DC 欄位值語言
dc.contributor.advisor謝正義(Cheng-I Hsieh)
dc.contributor.authorMei-Chun Laien
dc.contributor.author賴玫君zh_TW
dc.date.accessioned2021-06-13T01:03:20Z-
dc.date.available2008-07-30
dc.date.copyright2007-07-30
dc.date.issued2007
dc.date.submitted2007-07-25
dc.identifier.citationAndreas, E. L., R. J. Hill, J. R. Gosz, D. I. Moore, W. D. Otto, and A. D. Sarma: 1998, ‘Statistics of surface layer turbulence over terrain with meter-scale heterogeneity’, Boundary-Layer Meteorol., 86, 379-408.
Castellvi, F. and A. Martinez-Cob: 2005, ‘Estimation sensible heat flux using surface renewal analysis and the flux variance method: a case study over olive trees at Sastago (NE of Spain)’, Water Resour. Res., 41, W09422.
Detto, M. and G. G. Katul: 2007, ‘Simplified expressions for adjusting higher-order turbulent statistics obtained from open path gas analyzers’, Boundary-Layer Meteorol., 122, 205-216.
de Bruin, H. A. R., W. Kohsiek, and B. J. J. M. Van Den Hurk: 1993, ‘A Verification of some methods to determine the fluxes of momentum, sensible heat, and water vapor using standard deviation and structure parameter of scalar meteorological quantities’, Boundary-Layer Meteorol., 63, 231-257.
Gao, Z., L. Bian, Z. Chen, M. Sparraw, and J. Zhang: 2005, ‘Turbulent variance characteristics of temperature and humidity over a non-uniform land surface for an agriculture ecosystem in China’, Adv. in Atmos. Sci. 23, 365-374.

Hsieh, C.-I, G. G. Katul, J. Sigmon, and K. R. Knoerr: 1996, ‘Estimation of momentum and heat fluxes using dissipation and flux-variance methods in the unstable surface layer’, Water Resour. Res., 32, 2453-2462.
Jaksic, V., G. Kiely, J. Albertson, R. Oren, G. Katul, P. Leahy, and K. A. Byrne: 2006, ‘Net ecosystem exchange of grassland in contrasting wet and dry years’, Agri. For. Meteorol., 139, 323-334.
Katul, G. G., M. Goltz, C. Hsieh, Y. Cheng, F. Mowry, and J. Sigmon: 1995, ‘Estimation of surface heat and momentum fluxes using the flux-variance method above uniform and non-uniform terrain’, Boundary-Layer Meteorol., 74, 237-260.
Lloyd, C. R., A. D. Culf, A. J. Dolman, and J. H. Gash: 1991, ‘Estimates of sensible heat flux from observations of temperature fluctuations’, Boundary-Layer Meteorol., 57, 311-322.
Michiaki S. and K. Noriaki: 2003, ‘Surface and mixed-layer variance methods to estimate regional sensible heat flux at the surface’, Boundary-Layer Meteorol., 106, 117-145.
Ohtaki, E.: 1985, ‘On the similarity in atmospheric fluctuations of carbon dioxide, water vapor and temperature over vegetated fields’, Boundary-Layer Meteorol., 32, 25-37.

Padro, J.: 1993, ‘An investigation of flux-variance methods and universal functions applied to three land-use types in unstable conditions’, Boundary-Layer Meteorol., 66, 413-425.
Tillman, J. E.: 1972, ‘The indirect determination of stability, heat and momentum fluxes in the atmosphere boundary layer from simple scalar variables during dry unstable conditions’, J. Appl. Meteorol., 44, 13-31.
Weaver, H. L.: 1990, ‘Temperature and humidity flux-variance relarions determined by one-dimensional eddy correlations’, Boundary-Layer Meteorol., 53, 77-91.
Webb, E. K., G. I. Perman, and R. Leuning: 1980, ‘Correction of flux measurements for density effects due to heat and water transfer’, Quart. J. Roy. Meteorol. Soc, 106, 85-100.
Wesely, M. L.: 1988, ‘Use of variance techniques to measure dry air-surface exchange rates’, Boundary-Layer Meteorol., 44, 13-31.
Wesson, K. H., G. G. Katul, and C. T. Lai: 2001, ‘Sensible heat flux estimation by flux variance and half-order time derivative methods’, Water Resour. Res. 37, 2333-2343.
Williams, C. A., T. M. Scanlon and J. D. Albertson: 2007, ‘Influence of surface heterogeneity on scalar dissimilarity in the roughness sublayer’, Boundary-Layer Meteorol., 122, 149-165.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/29248-
dc.description.abstract使用通量變化法(flux-variance method)估計地表通量只需單點之濃度資料,因此近年來此法廣為使用。本研究針對三種不同的地表類型:草地、水稻田、以及森林,評估通量變化法在其可感熱、潛熱以及二氧化碳通量推估上的應用,並與渦流相關法(eddy-covariance method)的實際量測值做比較。研究發現,可感熱通量及潛熱通量的推估均有不錯之準確性。然二氧化碳通量則因為受到複雜的二氧化碳源與匯分布影響,而造成預測結果不佳;此外,若能由量測到之可感熱通量去推估潛熱及二氧化碳通量,將可提高約15%之準確度。比較結果顯示,在通量推估計算前,若能先由渦流相關法的量測資料中找出最適合之相似係數再進行預測,將得到較準確的結果。zh_TW
dc.description.abstractThis study predicted sensible heat (H), latent heat (LE), and CO2 fluxes (FCO2) by the Flux-Variance Method (FVM) and examined the performance of this method by eddy-correlation measured flux data at three different surface types: grassland, paddy rice field, and forest. The H and LE estimations were in good agreement with the measurements over the three ecosystems. However, the CO2 flux predictions were not good; this is attributed to the complicated CO2 sources and sinks distribution. Nevertheless, the prediction accuracy of LE and FCO2 could be improved by around 15 percent if the predictions were obtained with the measured sensible heat flux. Based on our results, we suggest that it is necessary to determine the adequate similarity constants for varied scalars and sites (ecosystems) before applying FVM for predicting surface fluxes.en
dc.description.provenanceMade available in DSpace on 2021-06-13T01:03:20Z (GMT). No. of bitstreams: 1
ntu-96-R94622006-1.pdf: 1226519 bytes, checksum: 3dc6c7d950edc2266e4b083382208796 (MD5)
Previous issue date: 2007
en
dc.description.tableofcontentsTable of Contents
Acknowledgment ….……………………………………………………………... i
Chinese Abstract ......…………………………………………………………….. ii
English Abstract ……………………………………………………………….... iii
List of Tables …………………………………………………………………….. iv
List of Figures ……………………………………………………………………. v
Chapter 1 Introduction …….……………………………………………….. 1
Chapter 2 Theory …………..………………………………………………….. 2
Chapter 3 Experiment ……...……………………………………………….. 4
3.1 Grassland Experiment …...………………….…………………………. 4
3.2 Paddy Rice Field Experiment …………………………………………. 5
3.3 Forest Experiment ……………………………….……………………. 5
3.4 Data processing ………………………………….……………………. 6
Chapter 4 Results and Discussion ……….…...……………………………… 6
4.1 Flux Variance Relationship for Temperature, Humidity and CO2 ..... 6
4.2 Sensible Heat, Latent Heat, and CO2 Fluxes Comparisons ..……...… 8
4.3 Variation of Sensible Heat, Water Vapor, and CO2 Fluxes with Time…. 10
Chapter 5 Conclusions ………………………………………………….……. 11
Appendixes ……………………………………………………………………….. 13
References ………………………………………………………………….…… 16
dc.language.isoen
dc.title以通量變化法估計地表之可感熱、潛熱、以及二氧化碳通量zh_TW
dc.titleEstimation of Sensible Heat, Latent Heat, and CO2 Fluxes Using Flux-Variance Methoden
dc.typeThesis
dc.date.schoolyear95-2
dc.description.degree碩士
dc.contributor.oralexamcommittee張倉榮,陳明志,朱佳仁
dc.subject.keyword通量變化法,渦度相關法,可感熱通量,潛熱通量,二氧化碳通量,相似係數,zh_TW
dc.subject.keywordflux-variance method,sensible heat,latent heat,CO2 flux,similarity constant.,en
dc.relation.page18
dc.rights.note有償授權
dc.date.accepted2007-07-25
dc.contributor.author-college生物資源暨農學院zh_TW
dc.contributor.author-dept生物環境系統工程學研究所zh_TW
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