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Research plan for the exploratory fisheries for Dissostichus spp. in Subarea 48.6 in 2014/15
to estimate appropriate catch limit, we propose to continue the current research operation for at ... , respectively) associated with the small catch limit. Regarding relatively high CPUE in the area, we propose to ... increase the catch limit from current 50 tonnes to 100 tonnes under the exploitation rate of 3 % in order ... against the catch limit of the original research block; and ii) when a vessel attempting to survey cannot ...
Meeting Document : WG-SAM-14/01 : Автор(ы): Delegation of Japan
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Scientific requirements for an orderly development of the krill fishery
precautionary catch limit for krill in Statistical Division 58.4.2 of 1.49 million tonnes (up from 450 000 ... supported the large increase in the precautionary catch limit, such a large increase required the inclusion ... establish a catch limit before fishing is prosecuted in these areas. (ii) Establish small-scale management ... what might be just enough to take the catch limit for a given area until the system for managing the ...
Meeting Document : WG-EMM-07/23 : Автор(ы): A. Constable, G. Slocum and S. Nicol (Australia)
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Summary of the toothfish fishery and tagging program in the Amundsen Sea region (SSRUs 882C–H) to 2018/19
-year Chapman estimates and allowing a maximum of 20% in the catch limit for 88.2H and research block ... 882_2 are: 882H: 240 t catch and allowing a maximum of 20% change in the catch limit from 200 t ... . Research block 882_2: 288 t catch and allowing a maximum of 20% change in the catch limit from 240 t. We ... that catch limits in the ASR be calculated following the trend analysis rules developed by WG-FSA for ...
Meeting Document : WG-FSA-2019/12 : Автор(ы): J. Devine and S. Parker
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Revised research plan for the exploratory longline fishery for Dissostichus spp. in 2014/15 in Division 58.4.3a
coming years in order to achieve a robust stock assessment that would provide advice on a catch limit ... effort, it is suggested to define a new survey design and to maintain the total catch limit of 32 tons ... assessment next year. It is suggested also to define a catch limit with an appropriate local exploitation ... biomass are highly biased, because catch data used in the calculation derived from a small location at ...
Meeting Document : WG-FSA-14/05 : Автор(ы): Delegation of France
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Revised research plan for the exploratory longline fishery for Dissostichus spp. in 2015/16 in Division 58.4.3a
limit for Dissostichus spp. is 32 tonnes and the total reported catch up in 2013/2014 was 32 tonnes ... achieve a robust stock assessment that would provide advice on a catch limit according to CCAMLR decision ... , which was similar to the 386 tonnes, the catch limit should remain unchanged at 32 tonnes for 2015/16 to ... block by two vessels using longlines: Shinsei Maru No. 3 (Japan) and the Saint André (France). The catch ...
Meeting Document : WG-SAM-15/11 : Автор(ы): Delegation of France
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Revised research plan for the exploratory longline fishery for Dissostichus spp. in 2015/16 in Division 58.4.3a
limit for Dissostichus spp. is 32 tonnes and the total reported catch up in 2013/2014 was 32 tonnes ... achieve a robust stock assessment that would provide advice on a catch limit according to CCAMLR decision ... , which was similar to the 386 tonnes, the catch limit should remain unchanged at 32 tonnes for 2015/16 to ... block by two vessels using longlines: Shinsei Maru No. 3 (Japan) and the Saint André (France). The catch ...
Meeting Document : WG-FSA-15/78 : Автор(ы): A. Rélot-Stirnemann (France)
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Research plan for the exploratory longline fishery for Dissostichus spp. in 2016/17 in Division 58.4.3a by France and Japan
limit for Dissostichus spp. is 32 tonnes and the total reported catch up in 2014/2015 was 15 tonnes. A ... assessment that would provide advice on a catch limit according to CCAMLR decision rules. This paper aims to ... . The catch limit should remain unchanged at 32 tonnes for 2016/17 to maximize the expectation of tag ... block by two vessels using longlines: Shinsei Maru No. 3 (Japan) and the Saint André (France). The catch ...
Meeting Document : WG-FSA-16/55 : Автор(ы): Delegation of France and Japan
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Research plan for exploratory fishing for toothfish (Dissostichus spp.) in 2016/17 in Division 58.4.2 by France
precautionary catch limit for the exploratory fishery for Dissostichus spp. was 35 tonnes in SSRU E. Only the ... to collect sufficient data to provide an advice on a catch limit according to CCAMLR decision rules ... absence of an assessment using the CCAMLR decision rules, the catch limit should remain unchanged at 35 ... Korean-flagged vessel undertook research fishing activity with a total reported catch of 11 tonnes. For ...
Meeting Document : WG-SAM-16/02 : Автор(ы): Delegation of France
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Proposal of extension of research block 48.6_2 to complete planned research and examine the habitat model and the stock structure
sufficient utilization of the catch limit, which enable us to complete planned research, evaluate the habitat ... with lower fish densities, and it has not taken approximately 50-70% of the annual catch limit (CL=170 ... tonnes) since the current research block was set in 2013. Thus, unutilized portions of catch limit were ... model and elucidate stock structure. The distribution of densities (catch per haul in 20-minute grid) of ...
Meeting Document : WG-SAM-16/08 : Автор(ы): T. Namba, T. Ichii and K. Taki
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INDICATIVE ESTIMATES OF BIOMASS AND YIELD OF WHITSON’S GRENADIER (M. WHITSONI) ON THE CONTINENTAL SLOPE OF THE ROSS SEA IN SUBAREAS 88.1 AND 88.2
being equal to 16% of the catch limit of Dissostichusspp. in these subareas. The 16% was based on the ... ratio of the by-catch limit for macrourids to the catch limit for Dissostichus spp. in Division 58.5.2 ... Abstract: Catch limits currently in place for macrourids in Subareas 88.1 and 88.2 are defined as ... in 2002/03 (CCAMLR-XXI, para 11.53). The bycatch limit for macrourids in Division 58.5.2 had in turn ...
Meeting Document : WG-FSA-08/32 : Автор(ы): S.M. Hanchet, D. Fu and A. Dunn (New Zealand)
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