• 제목/요약/키워드: Bioeconomic

검색결과 29건 처리시간 0.016초

기후변화가 대형선망 고등어 어업의 최적탄소배출량에 미치는 영향분석 (A Study on the Optimal Emission of CO2 due to Climate Change : An Application for Large Purse Seine)

  • 최종두
    • Ocean and Polar Research
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    • 제39권3호
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    • pp.195-203
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    • 2017
  • The purpose of this paper is to estimate the optimal $CO_2$ emission in the maximum economic yield (MEY), maximum sustainable yield (MSY), and open access (OA) using a bioeconomic model. The results are as follows; in the case of $E_{MEY}$, $E_{MSY}$, and $E_{OA}$ levels, $CO_2$ emissions are estimated at $150,704,746CO_2/kg$, $352,211,193CO_2/kg$, and $301,409,492CO_2/kg$ respectively. We show that the $E_{MEY}$ is more efficient than the other levels. That is, the level of $E_{MEY}$ signifies the optimal economic fishing usage as the most economically efficient usage for large purse seine fishery catching mackerel species. The emission of $CO_2$ in $E_{MEY}$ is the lowest level. Also, the impacts of climate changes such as ocean temperature increase, ocean acidification, and the combined impact thereof show that the biomass of mackerel decreases.

수산자원량 추정을 위한 생물경제 모델의 적합성평가 (Determining Appropriate Bioeconomic Models for Stock Assessment of Aquatic Resources)

  • 표희동
    • 수산경영론집
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    • 제33권2호
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    • pp.75-98
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    • 2002
  • As a contribution to developing fishery stock assessment, optimum sustainable yield and its international standards such as MSY, MEY, and dynamic MEY for six recommended fisheries are developed using bio-economic models. For selecting the appropriate model, five models - Schaefer, Schnute, Walters and Hilborn, Fox, and CY&P models are tested in effort and catch data of six species. Surprisingly all the models except the CY&P model failed to satisfy statistical standards such as goodness-of-fitness and reliability. Generally, the CY&P model holds good fitness and statistically significant level for all of six fisheries. However, the CY&P model for squid, where the intrinsic growth rate is high, could not explain MSY, MEY, and dynamic MEY appropriately. This study makes a contribution to develop the modified model for the intrinsic growth rate of 1. The reformulated model represents the results reasonably even though the estimated equation has not good fitness. Although most of the CY&P models appear to have good fits and validated results for some cases, these models also seem to be quite sensitive to parameters which means a more stable model should be developed and data should carefully be handled. In particular biological and technical interactions such as multispecies, predator prey relationship, age structure and mortality should be taken into account. In addition, economic factors and fishing efforts such as price, cost, technical change and a reasonable function of fishing input should simultaneously be considered.

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어선감척사업에 따른 주요 연안어업의 자원회복 및 경제적 효과 분석 (Analysis on Economic Effect and Resource Recovery of Major Coastal Fisheries by Vessel Buy-back Program in Korea)

  • 조훈석;남종오
    • 수산경영론집
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    • 제50권1호
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    • pp.17-37
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    • 2019
  • The purpose of this study is to estimate the resource recovery effect and the economic effect of the fishermen by the fisheries vessel buy-back program. First, this study standardizes the fishing efforts of coastal gill net, coastal trap, and coastal composite fisheries using Gavaris general linear model. Second, the resource evaluation is performed by using vessel buy-back program data, and also the CYP model based on exponential growth function is applied. In order to derive the effect of the vessel buy-back program, the MSY with the vessel buy-back program is compared with the MSY without the vessel buy-back program. Finally, we compare and analyze producer surplus under the equilibrium of the MEY and the OA using bioeconomic model. In conclusion, the vessel buy-back program has shown an increase in resource growth and economic improvement for the remaining fishermen. The result shows that the remaining fishermen are able to obtain an increase in producer surplus of about 53% due to the vessel buy-back program under equilibrium levels of the open access and the maximum economic yield.

A BIOECONOMIC MODEL OF A RATIO-DEPENDENT PREDATOR-PREY SYSTEM AND OPTIMAL HARVESTING

  • Kar T.K.;Misra Swarnakamal;Mukhopadhyay B.
    • Journal of applied mathematics & informatics
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    • 제22권1_2호
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    • pp.387-401
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    • 2006
  • This paper deals with the problem of a ratio-dependent prey- predator model with combined harvesting. The existence of steady states and their stability are studied using eigenvalue analysis. Boundedness of the exploited system is examined. We derive conditions for persistence and global stability of the system. The possibility of existence of bionomic equilibria has been considered. The problem of optimal harvest policy is then solved by using Pontryagin's maximal principle.

지구환경질서에 따른 환경친화적 수산업 실현을 위한 제도적 이론체계에 관한 연구 (A Study on the Theoretical Framework Development for the Institutional Implementation of the Environmentally Sound Fisheries under the Grobal Environmental Regime)

  • 이상고
    • 수산경영론집
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    • 제30권2호
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    • pp.55-77
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    • 1999
  • As the population grows, the importance of the fishery industry continues to rise. It is therefore vital to support and promote sustainable fishery industry. However, the fishery production has been declining, mainly due to overdevelopment and depletion in fishery resources and stricter limits on development limits caused by growing concerns over the marine environment and ecology. Recently, international activities related to marine environmental and its ecosystems conservation, have been vigorously pursued. The United Nations Convention on The Law of The Sea has stipulated the protection and conservation of the marine environment, and the implementation of fishery resources development, made in harmony with the environment and fishery resources and based upon scientific findings and principles has become important. Accordingly, fishery industry must pay thorough attention to marine ecological and environmental problems and its international fisheries regime. Fisheries development can affect fishery resources, their environment and ecosystems. Adverse ecological effects resulting from fishery resources development practices in general include overdevelopment and incidental development of non target species, physical degradation of seabed habitants and degraduation of water quality. It has now become more important than ever to build up fishery resources development while achieving the conservation of biodiversity and the marine environment, as well as the restoration of destroyed ecosystems. To maintain fishery industry, it is necessary to develop bioeconomic fishery production system and industry policies for the ESSD(environmentally sound and sustainable development) given that maintenance of a favourable marine environment will ensure the fishery resources productivity. These bioeconomic system and policies are necessary to ensure the sustainability and viability of the fishery industry under ESSD fisheries concepts.

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어업관리 옵서버 제도의 효과에 대한 생물경제학적 분석 (Bioeconomic Analysis of Effectiveness of the Observe Program in Fisheries Management)

  • 이상고;김도훈
    • 수산경영론집
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    • 제33권1호
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    • pp.1-18
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    • 2002
  • The observer program is being utilized In various fishing areas and fisheries internationally and nationally due to the its expected effectiveness in fisheries management and the collection of bioeconomic data necessary in fisheries management policy. The timely gathered data by observers play substantially a major role in decision-making fisheries policy such as the change in management measures, the application of season closure and area closure and etc. The expected effectiveness of the observer program In fisheries management, generally mentioned, is that it would lead to the increase in stock size from which the level of harvest would consequently increases. This study is aimed to analyze this tentatively expected effectiveness of the observer program in fisheries management. The changes in stock size and the level of harvest over time are analyzed under the observer program assuming the fishermen bear the cost of the observer program by investigating the change in fisherman's fishing activity under the observer program and by combining this changed activity with the biological model. The level of fishing efforts of fishermen was decreased from the results of the increase in fishing cost caused by the observer cost and the decrease in catchable stock size restricted by observers. This reduced level of fishing efforts enables stock size to increase over time and therefore, the expected level of harvest increases as time goes on. Another benefit under the observer program is to reduce management costs from the fact that fishermen are responsible for the cost of the observer program and the avoidance cost of fisherman responding to the fisheries regulation could be eliminated from the surveillance of observer. Therefore, it may possible to accomplish the cost-efficient fisheries management policy.

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수산자원에 대한 수산보조금의 다면적 영향에 관한 경제이론적 고찰 (An Economic Theory Study for Mutivariate Impacts of Fisheries Subsidies on Fishery Resources)

  • 이상고;곽인섭
    • 수산해양교육연구
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    • 제16권1호
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    • pp.99-109
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    • 2004
  • This study analyzed the multivariate impacts of subsidies on the sustainability of fish stock using a dynamic bioeconomic modeling and fisheries resources economic approaches for understanding impacts of a subsidy on the sustainability of a fish stock. According to the results of analysis, the conclusion of former studies is true only there are imperfect control of fishing effort and enforcement under management rerime and under open access. However, if there are perfect control of effort and enforcement, the subsidies do not give any negative impacts on the sustainability of fish stock. Further, if even so-called bad subsidy is also provided necessarily in response to the condition of fishing industry and the characteristic of fishermen, it can give positive impacts on fishing income by which fishermen can improve their fishing condition.

MPA 효과에 대한 생물경제학적 분석 (A Bioeconomic Analysis on the Effectiveness of Marine Protected Area (MPA))

  • 김도훈
    • 자원ㆍ환경경제연구
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    • 제13권4호
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    • pp.657-684
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    • 2004
  • 본 연구는 MPA 효과를 분석한 생물경제학적 연구로서 어업자원분포와 어종이동 특성에 따른 MPA 설치 전 후의 자원량과 어획량 변화를 이론적으로 분석하였다. 특히 본 연구에서는 어업자원분포 모형 가운데 폐쇄모형, 발생지-유입지 모형, 밀도종속적 모형을 대상으로 하였다. 각 모형에 대한 MPA 효과 분석에 있어서는 어획활동에 따른 경제적 효과도 함께 고려했을 뿐 아니라 다른 어획노력량 통제수단과의 병용효과도 함께 살펴보았다. 모든 모형 하에서 MPA 설치에 따라 전체 자원량이 증가하는 것으로 나타났지만, 폐쇄모형과 발생지-유입지 모형 하의 유입지에 대한 MPA 효과분석 결과 총어획량은 감소하였다. 발생지-유입지 모형에서의 발생지 그리고 밀도종속적 모형 하에서의 MPA 효과분석에서는 어종의 이동률, 자원량 수준 등에 따라 어획량이 증감하는 것으로 평가되었다. 특히, 자원이동률이 클수록, 자원량 수준이 높을수록 어획량 증대효과가 있는 것으로 분석되었다. 또한 어업비용 증가로 인해 어획가능구역에서의 어획노력량 증대에는 한계가 있는 것으로 나타났다. 그리고 다른 어획노력량 통제수단과 병용되었을 경우 전체적인 자원량 수준이 보다 크게 높아질 수 있는 것으로 평가되었다.

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기름가자미 어업관리방안 평가를 위한 생물경제학적 분석 - 동해구외끌이중형저인망어업을 대상으로 - (A bioeconomic analysis on evaluation of management policies for Blackfin flounder Glyptocephalus stelleri - In the case of eastern sea danish fisheries -)

  • 최지훈;강희중;임정현;김도훈
    • 수산해양기술연구
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    • 제56권4호
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    • pp.347-360
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    • 2020
  • In this study, the Bayesian state-space model was used for the stock assessment of the Blackfin flounder. In addition, effective measures for the resource management were presentedwith the analysis on the effectiveness of fisheries management plans. According to the result of the analysis using the Bayesian state-space model, the main biometric value of Blackfin flounder was analyzed as 1,985 tons for maximum sustainable yield (MSY), 23,930 tons for carrying capacity (K), 0.000007765 for catchability coefficient (q) and 0.31 for intrinsic growth (r). Also the evaluation on the biological effect of TAC was done. The result showed that the Blackfin flounder biomass will be kept at 14,637 tons 20 years later given the present TAC volume of 1,761 tons. If the Blackfin flounder TAC volume is set to 1,600 tons, the amount of biomass will increase to 16,252 tons in the future. Lastly, the biological effectiveness of the policy to reduce fishing effort was assessed. The result showed that the Blackfin flounder biomass will be maintained at 13,776 tons if the current fishing efforts (currently hp) level is set and maintained. If the fishing effort is reduced by 20%, it will increase to 17,091 tons in the future. The analysis on the economic effect of TAC showed that NPV will be the lowest at 1,486,410 won in 2038, 20 years after the establishment of 2,500 tons of TAC volume. If the TAC volume is set at 2,000 tons, NPV was estimated to be the highest at 2,206,522,000 won. In addition, the analysis on the economic effect of the policy to reduce the amount of fishing effort found that NPV will be 2,235,592,000 won in 2038, 20 years after maintaining the current level of fishing effort. If the fishing effort is increased by 10%, NPV will be the highest at 2,257,575 won even thoughthe amount of biomass will be reduced.

생물경제모형을 이용한 참조기의 자원평가에 관한 연구 - 단일어종·다수어업 사례를 중심으로 (A Stock Assessment of Yellow Croaker using Bioeconomic Model: a Case of Single Species and Multiple Fisheries)

  • 심성현;남종오
    • Ocean and Polar Research
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    • 제37권2호
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    • pp.161-177
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    • 2015
  • This study analyzes the stock assessment of yellow croaker caught mainly by the Korean stow net and gill net fisheries focusing on single species and multiple fisheries. This study standardizes fishing efforts for the two fisheries using the general linear model and uses a surplus production model based on the exponential growth model. The Clarke Yoshimoto Pooley model estimates a maximum sustainable yield(MSY), an allowable biological catch(ABC), fishing efforts for MSY($E_{MSY}$) and for ABC($E_{ABC}$). The bio-economic model is used to estimate the maximum economic yield(MEY) and fishing efforts for MEY($E_{MSY}$). Also, the study employs an economic analysis to estimate the economic interaction between stow net and gill net fisheries. The economic analysis shows the profit accruing to the two fisheries from estimated ABC. Finally, the study compares TACs based on single species and single fishery to TAC based on single species and multiple fisheries. The study proposes that the TAC assessment is necessary for single species and multiple fisheries in order to preserve resources.