Skip navigation

DSpace

機構典藏 DSpace 系統致力於保存各式數位資料(如:文字、圖片、PDF)並使其易於取用。

點此認識 DSpace
DSpace logo
English
中文
  • 瀏覽論文
    • 校院系所
    • 出版年
    • 作者
    • 標題
    • 關鍵字
  • 搜尋 TDR
  • 授權 Q&A
    • 我的頁面
    • 接受 E-mail 通知
    • 編輯個人資料
  1. NTU Theses and Dissertations Repository
  2. 理學院
  3. 海洋研究所
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/40909
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor許建宗(Chien-Chung Hsu)
dc.contributor.authorYun-Jung Hsiehen
dc.contributor.author謝昀融zh_TW
dc.date.accessioned2021-06-14T17:06:16Z-
dc.date.available2012-08-19
dc.date.copyright2011-08-19
dc.date.issued2011
dc.date.submitted2011-08-11
dc.identifier.citationAlverson, D.L. and Carney, M.J. (1975) A graphic review of the growth and decay of population cohort. J. Con. Int. Explor. Mer.36, 133-143
Anon., (2010) Report of the Twelfth Session of the IOTC Working Party on Tropical Tunas. IOTC, 82.
Anon., (2011) Collection of resolutions and recommendations by the indian ocean tuna commission. IOTC, 247.
Arrizabalaga, X.M. (2002) The use of multifan to estimate growth parameters of yellowfin tuna (thunnus albacares) in the indian ocean. IOTC Proceedings no. 5, 346-360.
Beverton, R.J.H., Holt, S.J. (1957) On the dynamics of exploited fish populations. Fishery Investigations, London, 533.
Chen, Y. (2003) Quality of fisheries data and uncertainty in stock assessment. Scientia Marina 67, 75-87.
Chen, Y., Liggins, G.W., West, R.J. (1998) A yield-per-recruit model for sequential fisheries and its application in evaluating the management strategy of changing incidental inshore fishing mortality. Aquatic Sciences - Research Across Boundaries 60, 130-144.
Chiang , W.C., Chen, Y., Sun, C.L., et al. (2009) Analysis of sex-specific spawning biomass per recruit of the sailfish (Istiophorus platypterus) in the waters off eastern Taiwan. Fish. Bull. 107, 265-277.
Collette, B.B., Nauen, C.E. (1983) FAO Species Catalogue. v.2. Scombrids of the world. An annotated and illustrated catalogue of tunas, mackerels, bonitos and related species known to date. FAO Fish. Synop.125 2, 137.
Cubillos, L.A. (2003) An approach to estimate the natural mortality rate in fish stock. Naga, WorldFish Center Quarterly 26, 17-19.
Goodyear, C.P. (1989) Spawning stock biomass per recruit: the biological basis for a fisheries management tool. ICCAT/SCRS/89/82 Coll. Vol. Sci. Pap30(2), 487-497.
Goodyear, C.P. (1993) Spawning stock biomass per recruit in fisheries management:foundation and current use. Can. Spec. Publ. Fish. Aquat. Sci. 120, 67-81.
Govindraj, M.E., John, P., Unnikrishnan, N., Thomas, J., Somvanshi, V.S. (2000) Oceanic Tuna resources in the northwest region of India EEZ. Bull.Fish.Surv.India 27, 20.
Itano, D.G. (2000) The Reproductive Biology of Yellowfin Tuna (Thunnus albacares ) in Hawaiian Waters and the Western Tropical Pacific Ocean : Project Summary. PFRP, JIMAR, UH, HI. JIMAR Contribution 00-328, 69.
John, M.E., Reddy, K.S.N. (1989) Some considerations on the population dynamics of yellowfin tuna, Thunnus albacares (Bonnaterre, 1788) in Indian Seas. FSI Special Publication 2, 33-54.
John, M.E., Sudarsan, D. (1993) Fishery Biology of Yellowfin tuna occurring in oceanic fishing in Indian Seas. In : Sudarsan, D. and M.E.John (Eds). Tuna Research in India, 39-61.
Kaymaram, F. (1998) Length-Frequency analysis of yellowfin tuna (Thunnus albacare) in the oman sea. IOTC proceedings 7th, 216-218.
Kaymaram, F., Emadi, H., Kiabi, B. (2000) Population parameters and feeding habits of yellowfin tuna (Thunnus albacares) in the Oman Sea. IOTC Proceedings no. 3, 283-285.
Lai, H.L., Gunderson, D.R. (1987) Effects of ageing errors on estimates of growth, mortality and yield per recruit for walleye pollock (Theragra chalcogramma). Fisheries Research 5, 287-302.


Lehodey, P., Leroy, B. (1998) Age and growth of yellowfin tuna (Thunnus albacares) from the western and central Pacific Ocean, as indicated by daily growth increments and tagging data. Working Paper No. 12, 11th Standing Committee on Tuna and Billfish.
Lessa, R., Duarte-Neto, P. (2004) Age and growth of yellowfin tuna (Thunnus albacares) in the western equatorial Atlantic, using dorsal fin spines. Fisheries Research 69, 157-170.
Morita, Y. (1973) Conversion factors for estimating live weight from gilled-and-gutted weight of bigeye and yellowfin tunas. Bull.Far Seas Fish.Res.Lab., (9), 109–21.
Nishida, T. (2010) IO YFT stock assessment by ASPIC (revised version 3). IOTC-2010-WPTT-34.
Pauly, D. (1983) Length-converted catch curves: a powerful tool for fisheries research in the tropics (PartⅠ). ICLARM Fishbyte. 1(2), 9-13.
Pillai, P.P., Said Koya, K.P., Pillai, N.G.K., Jayaprakash, A.A. (1993) Fishery and biology of yellowfin tuna occurring in the coastal fishery in Indian seas. Fishery Survey of India, Bombay, 23-38.
Quinn, T.J., Deriso, R.B. (1999) Quantitative Fish Dynamics, Vol., Oxford University Press, Inc.
Romena , N.A. (2000) Factors affecting distribution of adult yellowfin tuna ( Thunnus albacares ) and its reproductive ecology in the Indian Ocean based on Japanese tuna longline fisheries and survey information. Master, Vrije Universiteit Brussel, 87 pages.
Schaefer, K.M. (2001) Reproductive biology of tunas. In: Fish Physiology. Vol. Volume 19. (Eds. B. Barbara, E. Stevens), Academic Press, pp. 225-270.
Shuford, R.L., Dean, J.M., Stéquert, B., Morize, E. (2007) Age and growth of yellowfin tuna in the Atlantic Ocean. Collect. Vol. Sci. Pap. ICCAT 60(1), 330-341.

Silas, E.G., Pillai, P.P., Jayaprakash, A.A., Pillai, M.A. (1985) Observations on the fishery and certain aspects of the biology of yellowfin tuna, Thunnus albacares (Bonnaterre) taken by longline gear in the EEZ of India. CMFRI Bulletin 36, 176-183.
Somvanshi, V.S. (2002) Review of biological aspects of yellowfin tuna (Thunnus albacares) from the indian ocean. IOTC Proceedings no. 5, 420-426.
Sparre, P., Venema, S.C. (1993) Introduction to Tropical Fish Stock Assessment - Part 1: Manual. FAO FISHERIES TECHNICAL PAPER 306/1 Rev. 2, 407.
Stequert, B., Panfili, J., Dean, J.M. (1996) Age and growth of yellowfin tuna,Thunnus albacares, from the western Indian Ocean, based on otolith microstructure. Fishery Bulletin 94, 124-134.
Taylor, C.C. (1958) Cod growth and temperature. J. Cons. Int. Explor. Mer 23, 366-370.
Ward, R.D., Elliott, N.G., Innes, B.H., Smolenski, A.J., Grewe, P.M. (1997) Global population structure of yellowfin tuna, Thunnus albacares,inferred from allozyme and mitochondrial DNA variation. Fishery Bulletin 95, 566-575.
Wolff,M. (1989 ) A proposed method for standardization of the selection of class intervals for length frequency analysis. Fishbyte 7, 5.
Zhu, G., Xu, L., Zhou, Y., Song, L. (2008) Reproductive biology of yellowfin tuna T. albacares in the west-central Indian Ocean. Journal of Ocean University of China (English Edition) 7, 327-332.
Zudaire, I., Murua, H., Grande, M., et al. (2010) Reproductive biology of yellowfin tuna (Thunnus albacares) in the Western and Central Indian Ocean. IOTC-2010- WPTT-48.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/40909-
dc.description.abstract黃鰭鮪(Thunnus albacares)廣泛分布在全球熱帶和亞熱帶海域,是大洋洄游性魚類。黃鰭鮪是鮪類漁業的主要漁獲種類。根據印度洋鮪類委員會(Indian Ocean Tuna Commission,IOTC)資源評估結果顯示印度洋黃鰭鮪的資源量可能已經過度開發。 資源評估所用的資料來源通常是商業性漁獲的資料,有時資料會有不確定性。本研究只利用直接量測的黃鰭鮪體長資料並不參考其他漁業資訊,分析印度洋黃鰭鮪的單位加入生產量和單位加入產卵群生物量,以評估當時的漁業和資源利用情況,並和其他商業性漁獲的資料所估計的結果作比較,以了解此資料和商業性漁獲的資料的差異。樣本船資料為2006年和2007年兩年在印度洋的台灣延繩釣漁船上測量獲得,商業性漁獲資料為中華民國對外漁業合作發展協會提供。利用 Kaymaram(2000)研究發表的成長方程式代入估計其他參數和模式中。利用體長頻度資料轉換漁獲曲線估計之全死亡率為1.98(/年)至2.64(/年),Cubillos(2003)的估計式估計之自然死亡率為0.75(/年),漁獲死亡率為1.21(/年)至1.89(/年),估算選擇率繪製logistic曲線圖,而t50%為1.83至2.19(歲)。將目前初捕年齡設為0.68(歲),繪製單位加入生產量曲線圖發現2006年和2007年的漁獲死亡率都超過了Fmax和F0.1,而生殖潛能比例在這兩年也都低於20%,表示同時有成長型和加入型過漁的現象,在未來需要降低漁獲死亡率並持續監控印度洋黃鰭鮪的資源利用情形,以達永續發展的目標。根據資料的觀察和參數的估計上都可發現對外漁協的體長資料其體長分布有偏高的趨勢,使得一些參數的估計上可能就有誤差,所以在未來資源評估能像本研究一樣取得測量記錄較有代表性的資料能得到較好的結果。zh_TW
dc.description.abstractThunnus albacares known as yellowfin tuna is a species of tuna found in pelagic waters of tropical and subtropical oceans worldwide. There are important yellowfin tuna fisheries throughout tropical and subtropical seas.
The main source of information for some stock assessments are from commercial fisheries data, but the data may have some uncertainties. In this study we have unsampled and direct measurement of length data. We use this data to evaluate the stock status by yield and spawning stock biomass per recruit analyses. And compare the difference between this data and commercial catches data.
The growth parameters of Kaymaram(2000) were used for estimation of mortalities and per recruit analyses. The total mortalities ( Z ) were estimated as 1.98-2.64(/year) by the length-converted catch curves. The natural mortalities ( M ) were estimated as 0.75(/year) with the Cubillos’s(2003) equation. The fishing mortalities ( F ) were estimated as 1.21-1.89(/year). t50% was estimated as 1.83-2.19. Given tc as 0.68, according to the yield per recruit curves, the current fishing mortality was beyond F0.1 and Fmax , and spawning potential ratio was about 1%-3.4% suggesting that both growth and recruitment overfishing occurred in this stock. Therefore, the management policy should decrease fishing effort in order to keep the level of sustainable fisheries resource.
According to data and parameter estimation can find that Overseas Fisheries Development Council’s length data has high trend of the distribution. So estimation of some parameters, such as mortality and selectivity, there may be some errors.
en
dc.description.provenanceMade available in DSpace on 2021-06-14T17:06:16Z (GMT). No. of bitstreams: 1
ntu-100-R98241207-1.pdf: 997360 bytes, checksum: 8cf88737486ecab75b120d212033a64d (MD5)
Previous issue date: 2011
en
dc.description.tableofcontents中文摘要 I
Abstract II
目錄 III
表目錄 V
圖目錄 VI
一、 前言 1
二、 材料與方法 4
2.1 資料來源、分析 4
2.2 體長體重關係 5
2.3 成長參數 6
2.4 死亡率 7
2.4.1 全死亡率的估算 ( Z ) 7
2.4.2 自然死亡率的估計 ( ) 8
2.4.3 漁獲死亡率的估計( ) 9
2.5 漁具選擇率 10
2.6 單位加入生產量和單位加入產卵群生物量 11
三、 結果 15
3.1 資料來源 15
3.2 體長體重關係式 15
3.3 死亡率 16
3.3.1 全死亡率估計( ) 16
3.3.2 自然死亡率估計( ) 17
3.3.3 漁獲死亡率( ) 17
3.4 漁具選擇率 17
3.5 單位加入生產量和單位加入產卵群生物量 18
四、 討論 20
4.1 資料來源 20
4.2 體長體重關係式 21
4.3 成長參數 21
4.4 死亡率 22
4.5 漁具選擇率 23
4.6 單位加入生產量和單位加入產卵群生物量 23
4.7 樣本船資料和商業性漁獲資料比較 25
參考文獻 26
附表 30
附圖 37
dc.language.isozh-TW
dc.title印度洋黃鰭鮪之體長別單位加入生產量和單位加入產卵群生物量評估分析zh_TW
dc.titleLength-based yield and spawning stock biomass per recruit analyses of yellowfin tuna (Thunnus albacares) in the Indian Oceanen
dc.typeThesis
dc.date.schoolyear99-2
dc.description.degree碩士
dc.contributor.oralexamcommittee劉錫江(Hsi-Chiang Liu),李英周(Ying-Chou Lee),陳志遠(Chiee-Young Chen),葉裕民(Yu-Min Yeh)
dc.subject.keyword黃鰭鮪,體長頻度資料,商業性漁獲資料,單位加入生產量,單位加入產卵群生物量,zh_TW
dc.subject.keywordyellowfin tuna,length frequency data,commercial fisheries data,yield per recruit,spawning stock biomass per recruit,en
dc.relation.page51
dc.rights.note有償授權
dc.date.accepted2011-08-12
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-100-1.pdf
  目前未授權公開取用
973.98 kBAdobe PDF
顯示文件簡單紀錄


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。

社群連結
聯絡資訊
10617臺北市大安區羅斯福路四段1號
No.1 Sec.4, Roosevelt Rd., Taipei, Taiwan, R.O.C. 106
Tel: (02)33662353
Email: ntuetds@ntu.edu.tw
意見箱
相關連結
館藏目錄
國內圖書館整合查詢 MetaCat
臺大學術典藏 NTU Scholars
臺大圖書館數位典藏館
本站聲明
© NTU Library All Rights Reserved