|
|
循环水养殖中水动力特性对鱼类影响的研究进展 |
王江竹1,2, 宛立1, 任效忠1,2, 史宪莹1, 张倩1,2, 薛博茹1,2 |
1.大连海洋大学,辽宁 大连 116023; 2.设施渔业教育部重点实验室,辽宁 大连 116023 |
|
A Review of Research Progress on Effect of Hydrodynamic Characteristics on Fish in Recirculating Water Culture |
WANG Jiangzhu1,2, WAN Li1, REN Xiaozhong1,2, SHI Xianying1, ZHANG Qian1,2, XUE Boru1,2 |
1.Dalian Ocean University, Dalian 116023, China; 2.Key Laboratory of Environment Controlled Aquaculture (KLECA), Ministry of Education, Dalian 116023, China |
引用本文: |
王江竹, 宛立, 任效忠, 史宪莹, 张倩, 薛博茹. 循环水养殖中水动力特性对鱼类影响的研究进展[J]. 水产科学, 2020, 39(3): 458-464.
WANG Jiangzhu, WAN Li, REN Xiaozhong, SHI Xianying, ZHANG Qian, XUE Boru. A Review of Research Progress on Effect of Hydrodynamic Characteristics on Fish in Recirculating Water Culture. Fisheries Science, 2020, 39(3): 458-464.
|
|
|
|
链接本文: |
http://www.shchkx.com/CN/10.16378/j.cnki.1003-1111.2020.03.021 或 http://www.shchkx.com/CN/Y2020/V39/I3/458 |
[1]Food and Agriculture Organization of the United Nations. The state of world fisheries and aquaculture 2014[R]. Rome:FAO,2014. [2]陈伟荣.这七个水产养殖新模式,才是未来发展的方向[EB/OL].(2017-06-29)[2019-09-06]. http://www.shuichan.cc/news_view-328355.html. [3]刘国祥.对我国水产生态养殖发展几个问题的探讨[J].天津农学院学报,2011,18(2):44-48. [4]刘鹰,杨红生,张福绥.封闭循环水工厂化养鱼系统的基础设计[J].水产科学,2004,23(12):36-38. [5]Timmons M B, Ebeling J M.The role for recirculating aquaculture systems[J]. AES News,2007,10(1):2-9. [6]Terjesen B F, Summerfelt S T, Nerland S, et al. Design, dimensioning, and performance of a research facility for studies on the requirements of fish in RAS environments[J]. Aquacultural Engineering,2013,54:49-63. [7]祝楠.刺参循环水养殖系统(RAS)的设计与试验研究[D].哈尔滨:哈尔滨工业大学,2016. [8]王真真,赵振良.大菱鲆循环水工厂化养殖系统及其应用研究[J].水产科学,2013,32(6):333-337. [9]雷霁霖.中国海水养殖大产业架构的战略思考[J].中国水产科学,2010,17(3):600-609. [10]刘晃.循环水养殖系统的水处理技术[J].渔业现代化,2005(1):30-32. [11]王平,陈丽娇.中国工厂化海水养殖业现状、问题及发展思路[J].农业展望,2017,13(9):76-79. [12]邵蓬.工厂化循环水健康养殖技术[M].北京:海洋出版社,2018:34-36. [13]王峰,雷霁霖,高淳仁,等.国内外工厂化循环水养殖研究进展[J].中国水产科学,2013,20(5):1100-1111. [14]刘鹰,刘宝良.我国海水工业化养殖面临的机遇和挑战[J].渔业现代化,2012,39(6):1-9. [15]王波,雷霁霖,张榭令,等.工厂化养殖的大菱鲆生长特性[J].水产学报,2003,27(4):358-363. [16]张宇雷,吴凡,王振华,等.超高密度全封闭循环水养殖系统设计及运行效果分析[J].农业工程学报,2012,28(15):151-156. [17]曹广斌,蒋树义,韩世成,等.冷水性鱼类循环水养殖系统设计及养殖虹鳟试验研究[J].水产学杂志,2010,23(3):44-48. [18]管崇武,杨菁,宋红桥,等.鲟鱼工厂化循环水养殖系统设计及运行效果[J].渔业现代化,2017,44(4):30-36. [19]韩式成,张野,曹广斌,等.封闭循环水养殖哲罗鱼试验[J].水产学杂志,2017,30(1):1-5. [20]王峰.半滑舌鳎循环水养殖系统优化与养殖效果研究[D].青岛:中国海洋大学,2013. [21]齐巨龙,赖铭勇,王茂元,等.鳗鲡循环水高密度养殖试验研究[J].上海海洋大学学报,2012,21(2):212-217. [22]赵骏凯,张健东,陈刚,等.循环水系统养殖杂交石斑鱼的运行效果[J].广东海洋大学学报,2019,39(2):118-125. [23]宋红桥.高体革鯻工厂化循环水养殖试验研究[J].渔业现代化,2010,37(5):4-8. [24]宋协法,李强,彭磊,等.半滑舌鳎封闭式循环水养殖系统的设计与应用[J].中国海洋大学学报:自然科学版,2012,42(10):26-32. [25]杨丽丽,沈凌越.室内设施化循环水生态养殖鳜鱼[J].科学养鱼,2018(4):47. [26]骆志强,王韩信,李燕,等.循环水系统中养殖蓝鳃太阳鱼试验[J].水产科技情报,2016,43(5):266-268. [27]李林春,陈方平,阎希柱,等.节能型循环水养殖系统的构建与生产成本分析[J].渔业现代化,2012,39(5):11-15. [28]Gorle J M R, Terjesen B F, Summerfelt S T. Hydrodynamics of octagonal culture tanks with Cornell-type dual-drain system[J]. Computers and Electronics in Agriculture,2018,151:354-364. [29]Oca J, Masalo I. Flow pattern in aquaculture circular tanks: influence of flow rate, water depth, and water inlet & outlet features[J]. Aquacultural Engineering,2013,52:65-72. [30]Skybakmoen S. Impact of water hydraulics on water quality in fish rearing units[M]. Berlin:Springer-Verlag,1989:17-21. [31]Venegas P A, Narváez A L, Arriagada A E, et al. Hydrodynamic effects of use of eductors (Jet-Mixing Eductor) for water inlet on circular tank fish culture[J]. Aquacultural Engineering,2014,59:13-22. [32]Jack D L, Robert G P, Harry H C. Evaluation of circular tanks for salmonid production[J]. The Progressive Fish-Culturist,1973,35(3):122-131. [33]顾川川,张宇雷.国内外工厂化养殖鱼池流态研究进展概述[J].渔业现代化,2013,40(6):10-15. [34]Oca J, Masaló I, Reig L. Comparative analysis of flow patterns in aquaculture rectangular tanks with different water inlet characteristics[J]. Aquacultural Engineering,2004,31(3/4):221-236. [35]Masaló I, Oca J. Hydrodynamics in a multivortex aquaculture tank: effect of baffles and water inlet characteristics[J]. Aquacultural Engineering,2014,58:69-76. [36]何大仁,蔡厚才.鱼类行为学[M].厦门:厦门大学出版社,1998:112-118. [37]宋波澜,林小涛,王伟军,等.不同流速下红鳍银鲫趋流行为与耗氧率的变化[J].动物学报,2008,54(4):686-694. [38]李丹.流速对杂交鲟和罗非鱼幼鱼游泳行为及活动代谢的影响[D].广州:暨南大学,2009. [39]Wilga C D, Lauder G V. Functional morphology of the pectoral fins in bamboo sharks, Chiloscyllium plagiosum: benthic vs. pelagic station-holding[J]. Journal of Morphology,2010,249(3):195-209. [40]Gerstner C L, Webb P W. The station-holding performance of the plaice,Pleuronectes platessa, on artificial substratum ripples[J]. Canadian Journal of Zoology,1998,76(2):260-268. [41]张硕,陈勇.黑鲪幼鱼趋流性的初步研究[J].上海海洋大学学报,2005,14(3):282-287. [42]钟金鑫,张倩,李小荣,等.不同流速对鱇鱼良白鱼游泳行为的影响[J].生态学杂志,2013,32(3):655-660. [43]李大鹏.光照、水流和养殖密度对史氏鲟稚鱼摄食、行为和生长的影响[J].水产学报,2004,28(1):54-61. [44]Kulczykowska E, Francisco J S V. Neurohormonal regulation of feed intake and response to nutrients in fish: aspects of feeding rhythm and stress [J]. Aquaculture Research,2010,41(5):654-667. [45]李雪晴.循环水养殖系统中水流速度及多营养级复合养殖的实验研究[D].青岛:青岛理工大学,2018. [46]黄宁宇,程起群,高露娇,等.流速、温度对西伯利亚鲟幼鱼生长的影响[J].水产学报,2007,31(1):31-37. [47]刘稳,诸葛亦斯,欧阳丽,等.水动力学条件对鱼类生长影响的试验研究[J].水科学进展,2009,20(6):812-817. [48]James M E, Michael B T, Jeremy A J, et al. Mixed-cell raceway: engineering design criteria, construction, and hydraulic characterization[J]. North American Journal of Aquaculture,2005,67(3):193-201. [49]王得祥.水流紊动对鱼类影响实验研究[D].南京:河海大学,2007. [50]Killgore K J, Maynord S T, Chan M D, et al. Evaluation of propeller-induced mortality on early life stages of selected fish species[J]. North American Journal of Fisheries Management,2001,21(4):947-955. [51]Morgan R P, Ulanowicz R E, Rasix V J, et al. Effects of shear on eggs and larvae of striped bass, Morone saxatilis, and white perch,M. americana[J]. Transactions of the American Fisheries Society,1976,105(1):149-154. [52]Turnpenny A W, Davis M H, Fleming J M, et al. Experimental studies relating to the passage of fish and shrimps through tidal power turbines[R].Amherst: ScholarWorks@UMass Amherst,1992. [53]马德林,曲克明,姜辉,等.国外工厂化循环水养殖池底排污及排水系统综述[J].渔业现代化,2007,4(4):19-21. [54]李宏伟,张清靖,刘青,等.循环水养殖系统中悬浮颗粒物去除工艺研究概况[J].水产科学,2015,34(8):527-532. [55]Timmons M B, Summerfelt S T, Vinci B J. Review of circular tank technology and management[J]. Aquacultural Engineering,1998,18(1):51-69. [56]Schram E, Verdegem M C J, Widjaja R T O B H, et al. Impact of increased flow rate on specific growth rate of juvenile turbot (Scophthalmus maximus, Rafinesque 1810) [J]. Aquaculture,2009,292(1/2):46-52. [57]田喆,张延青,刘鹰,等.不同水循环率对大菱鲆生长和水质的影响研究[J].渔业现代化,2010,37(6):1-5. [58]Davidson J,Summerfelt S. Solids flushing, mixing, and water velocity profiles within large (10 and 150 m3) circular ‘Cornell-type’ dual-drain tanks[J]. Aquacultural Engineering,2004,32(1):245-271. [59]孙龙启,刘慧.国内外循环水养殖专利分析及启示[J].中国工程科学,2016,18(3):115-120. [60]中国水产科学研究院渔业机械仪器研究所.节能型循环水养殖系统及其循环水养殖方法:中国,2018110628513[P].2018-09-12. [61]武汉中科水生环境工程股份有限公司.一种自净式循环水养殖系统:中国,2015101905585[P].2017-04-19. [62]河海大学.一种水产养殖场水循环系统及其控制方法:中国,2018114322564[P].2018-11-28. |
|
|
|