請用此 Handle URI 來引用此文件:
http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/34705
完整後設資料紀錄
DC 欄位 | 值 | 語言 |
---|---|---|
dc.contributor.advisor | 黃哲崇(Zhe-Chong Huang) | |
dc.contributor.author | Chuan-Zheng Song | en |
dc.contributor.author | 宋傳正 | zh_TW |
dc.date.accessioned | 2021-06-13T06:23:44Z | - |
dc.date.available | 2007-02-06 | |
dc.date.copyright | 2006-02-06 | |
dc.date.issued | 2006 | |
dc.date.submitted | 2006-01-23 | |
dc.identifier.citation | Colebrook, J. M. (1982) Continuous plankton recorder: seasonal Variations in the distribution and abundance of plankton in the North Atlantic ocean and the North Sea. Joural Plankton Research,4:435-462.
Chao, M. H., M. A. Lee and K. T. Lee (2002) Using two-frequency method to measure volume backscattering strength for estimating equivalent spherical radius of zooplankton in I-Lan Bay, Taiwan. Journal of the Fisheries Society of Taiwan,29 (4):249-257. Griffiths, B. and A. Tsuda (1984) Seansonal dynamics of planktonic food chain in the Oyashio region. Hydrobiology,365:524-589. Grifford, D. J. and M. J. Dagg (1991) The micro-mesozooplankton link : consumption of planktonic protozoa by the calanoid copepods Murukawa. Marine Microbial Food Webs., 5:161-177. Hsieh, C. H., C. S. Chen and T. S. Chiu (2005) Composition and abundance of copepods and ichthyoplankton in Taiwan Strait (western North Pacific) are influenced by seasonal monsoons. Marine Freshwater Research,56 (2): 153-161. Ikeda,T. and S. Motoda (1978) Estimated zooplankton production and their ammonia excretion in the Kuroshio and adjacent seas. Fishery Bulletin, 76(2):15-25. Ikeda,T. (1985) Metabolic rates of epipelagic marine zooplankton as a body mass and temperature.Mar. Biology,85:1-11. Lo, W. T., C. T. Shih and J. S. Hwang (2004) Copepod assemblages and diel vertical migration in the East China Sea, north of Taiwan. Crustaceana, 77: 955-971. McAllister, C. D. (1972) Estimates of the transfer of primary production to secondary production at ocean station. Biological Oceanography of the North Pacific Ocean,575-579. Morioka, Y. (1981) Zooplankton production in the Toyama Bay in March-May 1978. Bull. Jap. Sea Nat. Fishery Reseach,32:57-64. Pia, R. (2003) A behavioral cascade: Top-predator induced behavioral shifts in planktivorous fish and zooplankton. Limnology & Oceanographics, 48(5):1956-1964. Strickler, J. R. (1983) Modes of cell capture in calanoid copepods. Limnology & Oceanographics,28(1):116-123. Smetacek, T. (1991) Revised life history analysis for large grazing copepods in the subarctic Pacific Ocean. Progress in the Oceanography,47:575-589 Shinada, A., T. Ikeda., S. Ban and A.Tsuda (2001) Seansonal dynamics of planktonic food chain in the Oyashio region, western subarctic Pacific. Journal Plankton Reseach,23:1237-1247. Uye, S. (1986) Length-Weight relationships of important zooplankton from the inland sea of Japan. Journal Oceanography Society Japan,33:149-158. Williams, S. T. and k. F. Robins (1982) Studies on the chemical composition of the major zooplankton groups in the Sargasso Sea. Limnology & Oceanographics, 11:520-528. Williams, J.B. (1984) Relationships of important zooplankton from the inland sea of Japan. Journal Oceanography Society Japan,45:217-232. Willams R, D. Conway and H. G.Hung (1994) The role of copepods in the planktonic ecosystems of mixed and stratified waters of the European shelf seas, Hydrobiology,521-230. 山路 勇 (1995) 日本海洋日本浮游動物圖鑑。保育社。 王世宏 (2001) 高屏海域毛顎類之時空分布及其與環境因子之相關性研究。國立中山大學海洋資源學系研究所碩士論文。7-34頁。 林有明 (1982) 布袋牡蠣養殖區動物性浮游生物之生態研究。國立中山大學海洋生物研究所碩士論文。34-67頁 邱仕彰 (1999) 台南地區草蝦養殖池的橈腳類組成與生產量估計。國立台灣大學海洋研究所碩士論文。6-64頁 邱伊君 (2002) 台灣西北部竹圍沿岸海域浮游動物群聚。國立台灣大學海洋研究所碩士論文。4-68頁 洪和田 (2003) 蟹類與其最終貝類宿主公代在台灣海域地區之地理分布、族群動態及蟹貝共生關係之探討。國立中興大學生命科學院碩士論文。16-83頁 黃哲崇 (1988) 澎湖內灣橈角動物現存量及生產量之研究。國立台灣大學海洋學刊第二十期。53-63頁。 黃哲崇 (1994) 海洋生物採集網具操作實務。教育部海洋科技發展計畫專輯。11-12頁。 黃將修 (2001) 北部核能電廠及核能四廠附近海域之生態調查九十年期末報告-動物性浮游生物。台灣電力股份有限公司。台北。1-66頁。 黃俊翰 (2002) 大鵬灣初級生產者對牡蠣架拆除之反應。國立中興大學生命科學系碩士論文。22-43頁。 曾于芳 (2002) 南灣珊瑚礁海域初級生產力時空變異與經驗模式之研究。國立臺灣大學海洋研究所碩士論文。45-84頁。 張文炳 (1992) 橈腳類短腳異劍水蚤之生理生態學研究。國立台灣大學海洋研究所博士論文。5-88頁。 張怡麗 (2001) 台灣北部核能二廠溫排水對沿岸附生藻類的影響,兼論對浮游動物的影響。國立中興大學生命科學所碩士論文。4-12頁。 張婉如 (2002) 臺灣東北部海域橈足類種類組成及其分布特性之研究。國立海洋大學環境生物與漁業科學學系研究所碩士論文。32-55頁。 鄭金釧 (1998) 西部北太平洋台灣東北海域浮游橈足類與浮游魚類之分布相關。國立台灣大學動物學研究所碩士論文。28-51頁。 鄭執中 (1988) 台灣海峽中、北部海洋綜合調查研究報告。海洋與湖沼 20(4):308~313頁。 鍾家祿 (2001) 屏東大鵬灣內浮游橈足類群聚之時空分布及攝食速率之研究。國立中山大學海洋資源研究所碩士論文。16-78頁。 謝志豪 (2001) 台灣海峽北部橈腳類與仔稚魚群集組成受水文因子之影響。國立台灣大學動物學研究所碩士論文。45-71頁。 韓仕龍 (1996) 二人溪口附近海域浮游動物組成與生產估算。國立台灣大學海洋研究所碩士論文。8-95頁。 簡宏義 (2003) 台灣基隆碧沙港區及其附近海域橈足類時空分布與攝食效應之研究。國立海洋大學海洋生物研究所碩士論文。15-42頁。 | |
dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/34705 | - |
dc.description.abstract | 摘要
本報告自2001年至2004年期間,每季針對浮游動物的個體量、生物量、種類組成進行調查,以及總浮游動物、橈足類與哲水蚤生產量的估算,並對浮游動物、環境因子與生物因子間的相關性進行分析,以增進對該海域生態環境的了解。 總浮游動物個體量介於12,165~4,176,400ind./1000m3之間,各測站的平均含量方面,以測站8與測站4最高。個體量四季變動以夏季最高,春季與秋季次之,冬季為最低含量。2004年的平均個體量最高,2001年及2002年次之,2003為最低。主要類別平均個體量方面,以橈足類、尾蟲類和毛顎類的含量較高,而以春夏兩季的浮游動物含量明顯高於秋冬兩季。春、夏、秋和冬季皆以橈足類和尾蟲類為主。浮游動物生物量介於2.29~823.95g/1000m3,季節間的差異明顯。調查海域11個類別浮游動物乾重(Y)與濕重(X)之關係式四季分為:春季Y=0.116X-0.121、夏季Y=0.119X+0.043、秋季Y=0.118X+0.037與冬季Y=0.106X+0.031。 鹽寮海域調查期間總浮游動物平均二級生產量(mgC/m3/day)介於0.02~0.84,平均為0.31,其中橈足類介於0.01~0.70,平均為0.21,佔總浮游動物二級生產量的61.7%,哲水蚤介於0.01~0.67平均為0.18,佔橈足類二級生產量的85.7%,佔浮游動物二級生產量的58.0%。將二級生產量與水溫、浮游植物細胞數與初級生產力做相關係數分析。最高為水溫的0.89,最低為初級生產量的-0.26。主成分分析(PCA)將九種類別分群,第一群為溫度、哲水蚤、毛顎類與總浮游動物,第二群為尾蟲類與劍水蚤,第三群為幼生類、浮游植物與水母類,顯示鹽寮海域浮游動物群聚中的類別百分比較相近的種類,個體量的變動可能較具有關聯性。依據四個年度的季節,將浮游動物八個主要類別百分比,進行聚類分析(CA)。春季時,顯示哲水蚤百分比(29.80%~57.46%)較高為較獨立之類別,變動情形較大。夏季、秋季與冬季時,八個類別百分比(0.00~61.23%)年間的變動較大,較難找出變動的相關性。鹽寮海域浮游動物於夏季含量最高,但屬主要類別的哲水蚤與尾蟲類屬單一聚類(Ⅰ群)的出現率不高,結果顯示浮游動物於夏季的高含量,並非完全來自於哲水蚤與尾蟲類的貢獻,而是經由多數其他類別的相互貢獻。 | zh_TW |
dc.description.abstract | Summary
This report made up investigation to the individual amount , living beings amount , kind of the zooplankton each season from 2001 to 2004, and the estimation of total zooplankton , oar feet and wise water flea's amount of production, and analyse about the dependence among the zooplankton , environmental factor and biological factor, in order to promote the knowledge of this sea area ecological environment. The total zooplankton's individual amount lies between 12,165,176,400ind./1000m3, examine average content that stand each, in order to is it stand 8 with is it stand 4 most high to examine to examine. Individual amount's change in four seasons is the highest with summer, it is the minimum content in winter to take second place in spring and autumn. The average individual amount of 2004 is the tallest, took second place in 2001 and 2002, 2003 was for being lowest. Main classification average individual amount respect is with oar foot, tail worm and mao content of jaw type relatively high, and is obviously higher than two seasons of autumn and winter with the content of zooplankton of two seasons in spring and summer. Spring , summer , autumn and winter all rely mainly on oar feet and tail worms. Zooplankton's living beings amount lie between 2.2923.95g/1000m3, the difference among season is obvious. Investigate that the universe of 11 pieces of classification zooplankton of sea area is divided into wet and heavy (X ) relational expression four seasons heavily (Y ): Spring Y =0.116X-0.121 , summer Y =0.119X +0.043 , autumn Y =0.118X +0.037 and winter Y =0.106X+0.031. Total average second amount of production (mgC/m3/day ) of zooplankton lies between 0.02.84 during the investigation of sea area of small house of salt, it is 0.31 on average , among them oar feet lie between 0.01.70, 0.21 on average, accounting for total 61.7% of second amount of production of zooplankton, it is 0.18 on average that the wise water flea lies between 0.01.67, accounts for foot 85.7% of second amount of production of oar, accounts for 58.0% of second amount of production of zooplankton . Count and make with elementary productivity the analysis of coefficient correlation of second amount of production and the temperature , phytoplankton cell. It is 0.89 of the temperatures to be the highest, it is the elementary amount of production- 0.26 to be the lowest. Main composition is it hive off nine classification to analyse, first temperature, wise water flea, maos of jaw type and total zooplankton, the second group is tail worms and sword water flea, the third group, for young growing type , phytoplankton and jellyfish, show one hundred points of more close kinds of the classification in the zooplankton's clustering of sea area of small house of salt, perhaps the change of individual quantity is related. Basis season for four year, 8 pieces of main classification percentage of zooplankton, carry on cluster's analysis (CA ). In spring , show that the wise water flea's percentage (57.46% for 29.80% springs ) is higher for more independent classification , the change situation is relatively great. In summer , autumn and winter, the change in the period of eight pieces of classification percentage (0.001.23% ) is relatively great, it is more difficult to find out the dependence of the change. Salt small house the sea area the zooplankton the getting higher most,but belong to there aren't water flea and the tail worms not wise of classification not main , the result shows zooplankton's high content to summer, does not totally come from the wise water flea and contribution of tail worms, but the mutual contribution via most other classifications . | en |
dc.description.provenance | Made available in DSpace on 2021-06-13T06:23:44Z (GMT). No. of bitstreams: 1 ntu-95-R91241215-1.pdf: 1291951 bytes, checksum: b6e4096a6fe08c1059d57916f7488180 (MD5) Previous issue date: 2006 | en |
dc.description.tableofcontents | 目錄 ……………………………………………………………………Ⅱ
摘要 ……………………………………………………………………Ⅲ 目錄 頁數 第一章 前言…………………………………………………………………………1 第二章 材料與方法…………………………………………………………………3 一. 標本採集 ………………………………………………………………………3 二. 分析方法 ………………………………………………………………………4 1. 測定分析 …………………………………………………………………4 a. 單位體積個體量 ……………………………………………………4 b. 體重測定 ……………………………………………………………5 2. 生產量分析 ………………………………………………………………6 3. 統計分析 …………………………………………………………………7 a. 歧異度指數 …………………………………………………………7 b. 相關分析 ……………………………………………………………7 c. 主成分分析 …………………………………………………………7 d. 相似性聚類分析 ……………………………………………………8 第三章 結果…………………………………………………………………………9 1.水文環境……………………………………………………………………9 2.單位個體量、單位生物量與平均個體乾濕重……………………………9 3.二級生產量 ………………………………………………………………14 4.統計分析 …………………………………………………………………16 (1) 歧異度指數 ………………………………………………16 (2) 相關分析 …………………………………………………16 (3) 主成分分析 ………………………………………………17 (4) 聚類分析 …………………………………………………18 5.綜合結論 …………………………………………………………………22 第四章 討論 ………………………………………………………………………25 第五章 參考文獻 …………………………………………………………………30 表 ……………………………………………………………………………………33 圖 ……………………………………………………………………………………47 附表 …………………………………………………………………………………62 | |
dc.language.iso | zh-TW | |
dc.title | 鹽寮海域浮游動物生產與群聚分析 | zh_TW |
dc.title | Zooplankton production and communities in Yan-Liao Bay, the north-eastern coast of Taiwan. | en |
dc.type | Thesis | |
dc.date.schoolyear | 94-1 | |
dc.description.degree | 碩士 | |
dc.contributor.oralexamcommittee | 黃將修(Jiang-Xiu Huang),張文炳(Wen-Bing Zhang) | |
dc.subject.keyword | 浮游動物,二級生產量,群聚組成, | zh_TW |
dc.subject.keyword | zooplankton,production,communities, | en |
dc.relation.page | 94 | |
dc.rights.note | 有償授權 | |
dc.date.accepted | 2006-01-24 | |
dc.contributor.author-college | 理學院 | zh_TW |
dc.contributor.author-dept | 海洋研究所 | zh_TW |
顯示於系所單位: | 海洋研究所 |
文件中的檔案:
檔案 | 大小 | 格式 | |
---|---|---|---|
ntu-95-1.pdf 目前未授權公開取用 | 1.26 MB | Adobe PDF |
系統中的文件,除了特別指名其著作權條款之外,均受到著作權保護,並且保留所有的權利。