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Effect of Temperature on Anchovy Catch and Laver Production in the Eastern Part of the South Sea of Korea

멸치와 김 생산량 변동에 미치는 수온의 영향

  • Lee, Chung-Il (Research Center for Ocean Industrial and Development, Pukyong National University) ;
  • Kim, Hyun-Ju (Interdisciplinary Program of Ocean Industrial Engineering Graduate School, Pukyong National University)
  • 이충일 (부경대학교 해양산업개발연구소) ;
  • 김현주 (부경대학교대학원 해양산업공학협동과정)
  • Published : 2007.08.31

Abstract

Effect of seawater temperature (temperature) on the production of anchovy, Engraulis japonica and laver, Porphyra tenera Kjellman, were investigated in the eastern part of South Sea of Korea (ESS). Bimonthly temperature data (Feb., Apr., Jun., Aug., Oct., Dec.) from 1980 to 2002 were collected from Korean Oceanographic Data Center (KODC) and monthly anchovy catch and laver production from 1980 to 2002 were used from published sources by the Ministry of Maritime Affairs & Fisheries, Korea. Effects of temperature on the two organisms were examined in four cases. In case of lower anchovy catch and higher laver production (1993), temperature during main spawning season of anchovy was about $0.2-0.6^{\circ}C$ lower than normal condition, and temperature during seed collecting season of laver in Namhaedo, Kojedo went down below $22.0^{\circ}C$. In case of higher anchovy catch and higher laver production (1995), optimum temperature for catch was formed in main fishing ground, temperature for seed collection was lower than $22.0^{\circ}C$, In case of lower anchovy catch and lower laver production (1996), temperature for spawning and catch was about $0.6-1.6^{\circ}C$ lower than normal condition, and temperature during seed collection in nursery was about $0.5-1.0^{\circ}C$ higher than optimum temperature for seed collection. In case of higher anchovy catch and lower laver production (1998), temperature during main fishing and spawning season was about $1.0-1.8^{\circ}C$ higher than normal condition, and temperature during laver seed collection in nursery was $1.5^{\circ}C$ higher than optimum temperature for seed collection.

Keywords

References

  1. Kim J. Y., 1992, Early life history and recruitment of anchovy, engraulis japonica, in the southern waters of Korea, Ph. D. Dissertation, Dept. of Marine Biology, National Fisheries University of Pusan, Busan
  2. 김진영, 1983, 한국 남해 및 서해 연안 해역에 있어서 멸치 난자어의 분포, 석사학위논문, 부산수산대학교, 부산
  3. 강제원, 고남표, 1977, 해조양식, 태화출판사, 294pp
  4. 농림수산부, 1961-1996, 농림수산통계 연보
  5. 국립수산진흥원, 1998, 1998년 남해 추게 멸치 어황 전망, 국립수산진흥원 해어황정보지
  6. 수산업협동조합중앙회, 1997, 주요수산물편람
  7. 한국해양연구소, 1997, 남해대륙붕 물질순환과 생지화학 환경연구, 연구보고서, 442pp
  8. Kim J. Y., Choi Y. M., 1988, Vertical distribution of Anchovy, Engraulis japonica eggs and larva, J. Kor. Fish Soc., 21(3), 139-144
  9. Park J. H., Lee J. H., 1991, In relation to the formation of fishing ground and the fluctuation of fishing condition of Anchovy, Engranlis japonica, catched by Anchovy drag net, Bull. Korean Fish. Tech. Soc., 27(4), 238-246
  10. Choo H. S., Kim D. S., 1998, The Effect of Variations in the Tsushima Warm Currents on the Egg and Larval Transport of Anchovy in the Southern Sea of Korea, J. Kor. Fish Soc., 31(2), 226-244
  11. 임주열, 옥인숙, 1977, 한국 근해에 있어서 멸치난 치자어의 출현분포에 관한 연구. 국립수산진흥원 연구보고, 16, 73-85
  12. 국립수산진흥원, 1985, 연근해 주요어종의 생태와 어장, 자원조사 자료집, 8, 79-85
  13. 이기탁, 1988, 낙동강 하구의 김 생산과 환경요인과의 관계, 석사학위논문, 부산수산대학교, 부산
  14. Hong J. S., Song C. B., Kim N. K., Kim J. M., Huh H. T., 1987, Oceanographic Conditions in Relation to Laver Production in Kwangyang Bay, Korea, J. Kor. Fish Soc., 20(3), 237-247
  15. 이수택, 1992, 김 양식 생산에 미치는 기상 요인에 대하여-부산.경남 지방을 중심으로- . 부산수산대학교 최고경영관리자 논문집, 8, 190-298
  16. Chang S. D., Chin P., Park K. Y., 1983, Effects of Temperature, Salinity, and Silt and Clay on the Rate of Photosynthesis of laver, Porphyra yezoensis, J. Kor. Fish Soc., 16(4), 335-340
  17. 정상화, 1986, 한.일의 김 양식장의 환경특성과 생산에 관한 비교연구, 국립수산진홍원 연구보고, 37, 31-78
  18. 국립수산진홍원, 1980-2002, 해양조사연보
  19. 국립수산진흥원, 1986-2002, 어황조사연보
  20. 해양수산부, 1997-2002, 해양수산통계 연보
  21. 이병기, 1974, 충무근해에 있어서의 멸치의 연직분포에 관하여. 부산수산대학교 연구보고, 14(1), 209-217
  22. 수산업협동조합중앙회, 1997, 주요수산물편람
  23. 김진영, 김용문, 1986, 멸치의 초기 성장에 관한 연구, 국립수산진흥원 연구보고, 37, 151-156
  24. Ricker W. E., 1954, Stock and recruitment, J. Fish. Res. Board Can., 11(5), 559-623 https://doi.org/10.1139/f54-039
  25. Nakata H., 1991, Coastal processes related to the transport, survival and recruitment of fish lavae, Bull. on Costal Oceanography, 28(2), 195-220
  26. 장선덕, 홍성윤, 박청길, 진평, 이병기, 이택열, 강용주, 공영, 1980, 멸치 자원의 회유에 관한 연구, 부산수산대학교 연구보고, 12, 1-38
  27. Marshall S. L., Parker S., S., 1982, Pattern in-dendification in the microstructure of sockeye salmon (Oncorhynchus nerka) otolith, Can. J. Fish. Auat. Sci., 39, 542-547 https://doi.org/10.1139/f82-077
  28. 한국수산신보사, 1992, 김 양식 현황과 정책 방향, 수산양식, 78-81
  29. 한국수산신보사, 1996, 해조류: 해황에 따라 생산량 좌우, 수산양식, 112-113

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