Arst, H., & Arst, K. I. U. (2003). Optical properties and remote sensing of multicomponental water bodies: Springer Science & Business Media.
Bricaud, A., Morel, A., & Prieur, L. (1981). Absorption by dissolved organic matter of the sea (yellow substance) in the UV and visible domains. Limnology and Oceanography, 26(1), 43-53. doi:10.4319/lo.1981.26.1.0043
Bukata, R. P., Jerome, J. H., Kondratyev, K. Y., & Pozdnyakov, D. V. (1995). Optical properties and Remote Sensing of Inland and Coastal Waters. Boca Raton: CRC Press.
Cole, T. M., & Wells, S. A. (2011). CE-QUAL-W2: A Two-Dimensional, Laterally Averaged, Hydrodynamic and Water Quality Model, Version 3.71 User Manual.
Davies-colley, R. J., & Vant, W. N. (1988). Estimation of optical-properties of water from Secchi disk depths. Water Resources Bulletin, 24(6), 1329-1335.
Duntley, S. Q. (1952). The visibility of submerged objects. Retrieved from San Diego:
Fleenor, W. E. (2001). Effects and control of plunging inflows on reservoir hydrodynamics and downstream releases. (Ph.D. dissertation), Univ. of Calif.,Davis,
Gallegos, C. L., Werdell, P. J., & McClain, C. R. (2011). Long-term changes in light scattering in Chesapeake Bay inferred from Secchi depth, light attenuation, and remote sensing measurements. Journal of Geophysical Research-Oceans, 116. doi:10.1029/2011jc007160
Gordon, H., & Morel, A. (1983). Remote assessment of ocean color for interpretation of satellite visible imagery: A review.
Gordon, H. R. (1989). Can the Lambert‐Beer law be applied to the diffuse attenuation coefficient of ocean water? Limnology and Oceanography, 34(8), 1389-1409.
Hakvoort, H., De Haan, J., Jordans, R., Vos, R., Peters, S., & Rijkeboer, M. (2002). Towards airborne remote sensing of water quality. ISPRS Journal of Photogrammetry and Remote Sensing, 57(3), 171-183.
Hamilton, D. P., & Schladow, S. C. (1997). Prediction of water quality in lakes and reservoirs. Part I — Model description. Ecol. Modell, 96, 91-110. doi:doi:10.1016/S0304‐3800(96)00062‐2
Imberger , J., & Patterson, J. C. (1989). Physical limnology. Adv. Appl. Mech., 27, 303-475. doi:10.1016/S0065‐2156(08)70199‐6
Jerlov, N. G. (1976). Marine optics, 14.
Kirk, J. T. O. (1982). Prediction of optical water quality. Australian Academy of Science: Canberra, Australia, 26-30.
Kirk, J. T. O. (1988). Optical water quality - what does it mean and how should we measur it? J Water Pollut Con F, 60.
Kishino, M., Booth, C. R., & Okami, N. (1984). Underwater radiant energy absorbed by phytoplankton, detritus, dissolved organic matter, and pure water. Limnology and Oceanography, 29(2), 340-349.
Kopelevich, O. V. (1983). Small-Parameter Model of Optical Properties of Seawater, Chapter 8 in Ocean Optics, vol 1: Physical Ocean Optics: Moscow: Nauka Pub.
Lee, Z. (1994). Visible-Infrared Remote-sensing Model. University of South Florida,
Lee, Z., Shang, S., Qi, L., Yan, J., & Lin, G. (2016). A semi-analytical scheme to estimate Secchi-disk depth from Landsat-8 measurements. Remote Sensing of Environment, 177, 101-106. doi:10.1016/j.rse.2016.02.033
Lindenschmidt, K. E., & Hamblin, P. F. (1997). Hypolimnetic aeration in Lake Tegel Berlin. Water Res., 31(7), 1619-1628. doi:doi:10.1016/S0043‐1354(96)00407‐1
Mobley, C. D. (1994). Light and water: radiative transfer in natural waters: Academic press.
Morel, A. (1974). Optical properties of pure water and pure sea water. Optical aspects of oceanography, 1, 1-24.
Mueller, J. L., Fargion, G. S., McClain, C. R., Pegau, S., Zanefeld, J., Mitchell, B. G., . . . Stramska, M. (2003). Ocean optics protocols for satellite ocean color sensor validation, revision 4. Retrieved from
Perez‐Losada, J. (2001). A deterministic model for lake clarity: Application
to management of Lake Tahoe, California‐Nevada. (Ph.D. dissertation), Univ. of Calif., Davis
Pope, R. M., & Fry, E. S. (1997). Absorption spectrum (380–700 nm) of pure water. II. Integrating cavity measurements. Applied optics, 36(33), 8710-8723.
Preisendorfer, R. W. (1961). Application of radiative transfer theory to light measurements in the sea. Union Geod. Geophys. Inst. Monogr., 10, 11-30.
Preisendorfer, R. W. (1986). Secchi disk science - Visual optics of natural waters. Limnology and Oceanography, 31(5), 909-926. doi:10.4319/lo.1986.31.5.0909
Prieur, L., & Sathyendranath, S. (1981). An optical classification of coastal and oceanic waters based on the specific spectral absorption curves of phytoplankton pigments, dissolved organic matter, and other particulate materials1. Limnology and Oceanography, 26(4), 671-689.
Roesler, C. S., Perry, M. J., & Carder, K. L. (1989). Modeling in situ phytoplankton absorption from total absorption spectra in productive inland marine waters. Limnology and Oceanography, 34(8), 1510-1523.
Sahoo, G. B., Schladow, S. G., & Reuter, J. E. (2010). Effect of sediment and nutrient loading on Lake Tahoe optical conditions and restoration opportunities using a newly developed lake clarity model. Water Resources Research, 46(10). doi:Artn W10505
10.1029/2009wr008447
Smith, R. C., & Baker, K. S. (1981). Optical properties of the clearest natural waters (200–800 nm). Applied optics, 20(2), 177-184.
Swift, T. J., Perez-Losada, J., Schladow, S. G., Reuter, J. E., Jassby, A. D., & Goldman, C. R. (2006). Water clarity modeling in Lake Tahoe: Linking suspended matter characteristics to Secchi depth. Aquatic Sciences, 68(1), 1-15. doi:10.1007/s00027-005-0798-x
Tyler, J. E. (1960). Radiance distribution as a function of depth in an underwater environment. Bull. Scripps Inst. Oceanogr., 7, 363-411.
Yacobi, Y. Z., Alberts, J. J., TakÁCs, M., & McElvaine, M. (2003). Absorption spectroscopy of colored dissolved organic carbon in Georgia (USA) rivers: the impact of molecular size distribution. Journal of Limnology, 62(1). doi:10.4081/jlimnol.2003.41
王廷哲. (1999). 德基水庫與集水區整合水質模式之應用. (碩士), 國立中興大學, 台中市.何嘉浚, & 林鎮洋. (2012). 呈層複合土壤 (Multi-soil Layering )水質淨化系統應用於河川或水庫集水區. 行政院環保署.
余岱璟. (2002). 石門水庫水質模擬與水理探討. (碩士), 國立中央大學, 桃園縣.李建忠. (1996). HSPF應用於瑪家水庫優養潛勢分析之研究. (碩士), 國立成功大學, 台南市.李鴻源, 黃良雄, 郭振泰, 許銘熙, & 楊錦川. (1990-1992). 水質保護綱要計畫-非點源污染防治計畫研究. Retrieved from 行政院環保署:
狄學賢. (2016). 結合水體生光性質與半解析光學理論模式模擬日月潭透明度. (碩士), 國立成功大學, 台南市.林鑫怡. (2007). 曾文溪感潮河段水理與傳輸現象之模擬. (碩士), 國立臺南大學, 台南市.唐太山. (2001). 曾文水庫二維水理水質之模擬與風險分析. (碩士), 國立臺灣大學, 台北市.高正忠, & 廖述良. (1994a). 非點源總量管制評估模之建立與應用及群體計畫導向(I). Retrieved from 行政院環境保護署:
高正忠, & 廖述良. (1994b). 非點源總量管制評估模式之建立與應用及群體計畫導向(I). Retrieved from
張智華, & 黃韋旻. (2015). 探討水質對日月潭水色與澄清度之影響. 工業污染防治, 134, 19-38.
章瑜蓓. (2004). 二維水質模式之參數校正. (碩士), 國立中央大學, 桃園縣.莊鎮維. (2012). 以CE-QUAL-W2模式模擬分析新山水庫優養化之原因. (碩士), 國立臺灣大學, 台北市.郭振泰, 龍梧生, 楊州斌, & 羅浩文. (1998,1999,2000). 翡翠水庫水質模擬與應用(一)、(二)、(三). 翡翠水庫管理局委託: 台灣大學土木工程學研究所執行.
陳鴻傑. (2003). 曾文水庫集水區污染物傳輸及水庫水質模擬. (碩士), 國立臺灣大學, 台北市.黃佳慧. (2005). 以HSPF營養鹽模組討論農業對水庫非點源污染負荷的貢獻. (碩士), 國立成功大學, 台南市.黃韋旻. (2015). 以比濃度固有光學性質建立水庫水色及透明度模式之研究. (碩士), 國立成功大學, 台南市.黃韋旻, 吳祐欣, & 張智華. (2015). 以生光性質與輻射傳輸評估高沉積物負荷水庫優養化與透明度之關連性:以南化水庫為例. Paper presented at the 2015環境資訊與規劃管理研討會, 中壢,台灣.
黃鈺真. (2001). HSPF模式應用於曾文水庫集水區非點源污染負荷之推估. (碩士), 國立成功大學, 台南市.黃慶祥. (2006). 水庫水質與光學性質模式之建立及其應用. (碩士), 國立成功大學, 台南市.經濟部水利署. (2006). 阿公店水庫水門操作.
劉正千, 張智華, 許華宇, 譚子健, & 溫清光. (2007). 應用 ISIS 高頻譜光學遙測影像於曾文水庫之水質監測. 科儀新知, 161, 29-42.
劉紀宏. (1999). 水庫入流污染物負荷量推估方法之研究. (碩士論文), 國立臺灣大學,謝文雄. (2003). 水庫水位激烈變化下之水理水質模擬. (碩士), 國立中央大學, 桃園縣.鍾佳玲. (2014). 利用CE-QUAL-W2模式模擬分析氣候變遷對於新山水庫水質衝擊. (碩士), 國立成功大學, 台南市.