Journal of Agricultural Big Data ›› 2020, Vol. 2 ›› Issue (4): 29-37.doi: 10.19788/j.issn.2096-6369.200404
Previous Articles Next Articles
Muhan Xue1(), Huiyuan Liu1(
), Feng Lu1,2, Qingzhao Jiang1
Received:
2020-10-19
Online:
2020-12-26
Published:
2021-03-11
Contact:
Huiyuan Liu
E-mail:1036514981@qq.com;liuhy@cafs.ac.cn
CLC Number:
Muhan Xue, Huiyuan Liu, Feng Lu, Qingzhao Jiang. Research on Opening sharing and Application of Fishery Scientific Observation Data[J].Journal of Agricultural Big Data, 2020, 2(4): 29-37.
Table 1
Resource structure of fishery scientific observation data"
数据集分类 | 数据集内容 | 数据属性 | 指标类型 |
---|---|---|---|
渔业资源数据 | 物种描述数据 | 物种信息、凭证标本信息 | 常规指标 |
个体及种群数据 | 种名、分类地位、全长、种群大小、生长速率、物种组成、物种总数等 | 常规指标 | |
年龄结构 | 选择指标 | ||
遗传数据 | 染色体数目、核型、SSR、SNP等 | 常规指标 | |
非生物栖息环境数据 | 生境类型、位置和规模、理化环境等 | 常规指标 | |
生物环境数据 | 浮游植物、浮游动物、附着生物、底栖动物种类、潮间带生物、叶绿素a | 常规指标 | |
潮间带生物 | 选择指标 | ||
食物组成数据 | 肠容物种类、肠容物结构 | 常规指标 | |
共生微生物组成数据 | 体表微生物种类、肠道微生物种类、水体微生物种类 | 选择指标 | |
生态环境数据 | 水文气象数据 | 风速、风向、气温、天气状况 | 常规指标 |
流速、流量、水位 | 选择指标 | ||
水质环境数据 | 水温、盐度、透明度、悬浮物、pH等 | 常规指标 | |
汞、镉、铅、铬、铜、锌、砷、挥发性酚、石油类 | 选择指标 | ||
底质环境数据 | 类型、汞、镉、铅、铬、铜、锌、砷、石油类 | 常规指标 | |
粒度 | 选择指标 | ||
生态指标数据 | 叶绿素a、浮游动物、浮游植物、底栖生物 | 常规指标 | |
遥感环境数据 | 海表荧光高度、透光层深度等 | 常规指标 | |
种质资源数据 | 基本信息数据 | 种质库编号、物种名称、物种拉丁名、科名、属名、种名、引种号、系谱、种质类型、图像、选育单位、育成年份等 | 常规指标 |
遗传要素数据 | 倍性、生殖方式、遗传多态性 | 常规指标 | |
生物学特征数据 | 性别、年龄、体长、体重等 | 常规指标 | |
品质要素数据 | 肌肉灰分比例、皂甙含量、鲜干比、脂肪酸含量等 | 常规指标 | |
生产养殖数据 | 养殖环境数据 | 水环境、沉积环境、生物生态、生物体质量 | 选择指标 |
养殖结构数据 | 养殖类型、养殖品种、养殖密度、养殖方式、养殖产量、生物生长、成活率等 | 选择指标 | |
养殖生产数据 | 苗种、饲料、渔药、投入产出比等 | 选择指标 | |
现场连续监测数据 | 流速、流向、水温、盐度、溶解氧、pH、叶绿素a浓度 | 选择指标 | |
遥感数据 | 表层水温、盐度、叶绿素a浓度、初级生产力、悬浮物、水体透明度 | 选择指标 |
1 | 王立华,孙璐,孙英泽,等.渔业科学数据共享平台建设研究[J].中国海洋大学学报,2010, 40(S1): 201-206. |
Wang L H, Sun L,Sun Y Z, et al. Construction of Fishery Scientific Data Sharing Platform [J]. Periodical of Ocean University of China, 2010, 40(S1): 201-206. | |
2 | 鲁峰,王立华,徐硕.渔业科学数据中心建设研究.农业大数据学报[J], 2019, 1(3): 57-70. |
Lu F, Wang L H, Xu S. Research on Construction of Fisheries Science Data Center [J]. Journal of Agricultural Big Data, 2019, 1(3): 57-70. | |
3 | 蔡研聪,黄梓荣,孙铭帅,等.南海北部近海渔业资源密度概率分布特征[J].应用生态学报,2019, 30(07):2426-2436. |
Cai Y C, Huang Z R, Sun M S, et al. Probability distribution characteristics of fishery resources density in the northern South China Sea [J]. Journal of Applied Ecology, 2019, 30(07):2426-2436. | |
4 | 孙忠富,杜克明,郑飞翔,等. 大数据在智慧农业中的研究与应用展望[J]. 中国农业科技导报.2013, 15(6): 63-71. |
Sun Z F,Du K M,Zheng F X,et al. Perspectives of Research and Application of Big Data on Smart Agriculture[J].Journal of Agricultural Science and Technology, 2013,15(6):63-71. | |
5 | 程锦祥,孙英泽,胡婧,等.我国渔业大数据应用进展综述[J].农业大数据学报,2020,02(01):11-20. |
Cheng J X, Sun Y Z, Hu J,et al.Progress in the Application of Big Data in fishery in China[J].Journal of Agricultural Big Data,2020,02(01):11-20. | |
6 | Niwa, H S. Exploitation Dynamics of Fish Stocks [J].Ecological Informatics, 2006, 1(1): 87-99. |
7 | Huang J, Meng X, Xie Q, et a1. Complete sets of aquaculture automation equipment and their monitoring cloud platform [J]. Advances in Intelligent Systems and Computing, 2017, 691:429-435. |
8 | Tacon A G J, Metian M, Turchini G M, et al. Responsible Aquaculture and Trophic Level Implications to Global Fish Supply [J]. Reviews in Fisheries Science, 2009, 18(1): 94-105. |
9 | 林娜,黄硕琳.美国地区渔业管理委员会的决策机制探究[J].上海海洋大学学报,2017,26(3):465-472. |
Lin N, Huang S L.Study on the decision making mechanism of regional fishery management committee in the United States [J]. Journal of Shanghai Ocean University, 2017,26(3):465-472. | |
10 | Sigler M, DeMaster D, Boveng P, et al. Advances in Methods for Marine Mammal and Fish Stock Assessments: Thermal Imagery and CamTrawl [J]. Marine Technology Society Journal, 2015, 49(2): 99-106. |
11 | Apeti D A, Lauenstein G G, Evans D W, et al. Recent Status of Total Mercury and Methyl Mercury in The Coastal Waters of The Northern Gulf of Mexico Using Oysters and Sediments From NOAA's Mussel Watch Program [J]. Marine Pollution Bulletin, 2012, 64(11): 2399-2408. |
12 | Froese Rainer, Winker Henning, Coro Gianpaolo, et al. Status and rebuilding of European fisheries [J]. Marine Policy, 2018, 93:159-170. |
13 | Man Liu,Guilin Han, Qian Zhang. Effects of agricultural abandonment on soil aggregation, soil organic carbon storage and stabilization: Results from observation in a small karst catchment, Southwest China [J]. Agriculture, Ecosystems and Environment, 2020, 288. |
14 | Zhi Chen, Yan Liu, Chaojie Yang, et al. Analysis of Ways to Strengthen the Management of Marine Fishery Resources in China in the New Period [J]. Lifelong Education, 2020, 9(6). |
15 | Luoliang Xu, Mazur Mackenzie, Xinjun Chen, et al. Improving the robustness of fisheries stock assessment models to outliers in input data [J]. Fisheries Research, 2020, 230. |
16 | Li Si, Yueting Li, Xiaozhe Zhuang, et al. An empirical study on the performance evaluation of scientific data sharing platforms in China [J]. Library Hi Tech, 2015, 33(2):211-229. |
17 | Lokhande P. C., Shirdhankar M. M., Chaudhari K. J.. Digitization of Inland Water Resources for Fisheries through Remote Sensing and Geographical Information System - A Study in Ratnagiri District [J], Fishery Technology, 2017, 54(2):86-93. |
18 | Shamsuzzaman, Md. Mostafa, Xu Xiangmin,et al. Sustainable Marine Fisheries Resources of Bangladesh: A Strategic Response for Economic Security [J].Indian journal of marine sciences, 2017, 46(4):757-765. |
19 | 王伟,焦飞翔,陈磊等.地质数据集成与共享服务模式研究与应用——以泰州市为例[J].国土资源信息化,2020(04):50-55. |
Wang W, Jiao F X, Chen L, et al. Research and application of geological data integration and shared service patterns-A case study of Taizhou city [J]. Land and Resources Informatization, 2020,(04):50-55. | |
20 | Huiyan Gao, Hongquan Liu, Chunling Chai, et al. Research on the Service Mode of University Library based on Data Mining [J]. World Scientific Research Journal, 2020, 6(7). |
21 | Jagoda Walny, Christian Frisson, Mieka West, et al. Data Changes Everything: Challenges and Opportunities in Data Visualization Design Handoff [J]. IEEE transactions on visualization and computer graphics, 2020, 26(1):12-22. |
22 | Niida A, Hasegawa T, Miyano S (2019) Sensitivity analysis of agent-based simulation utilizing massively parallel computation and interactive data visualization[J/OL]. PLoS ONE14(3): e0210678. |
23 | 张小琼,梁苑苑,邓力涌,等.运维数据可视化展示平台的设计与实现[J].气象研究与应用,2019,40(01):84-87. |
Zhang X Q, Liang Y Y, Deng L Y, et al. Design and implementation of operation and maintenance data visualization platform [J]. Meteorological research and Application, 2019, 40(01):84-87. |
[1] | DUAN Bowen, WANG Juanle, SHI Lei, GAO Mengxu. Research and Analysis of Typical Databases in Major Frontier Fields at Domestic and International Level [J]. Journal of Agricultural Big Data, 2023, 5(1): 46-54. |
[2] | Yuxiao Sun, Yanli Li, Feng Li, Qian Chen. Research and Development Suggestions on Scientific Data Sharing at Home and Abroad [J]. Journal of Agricultural Big Data, 2022, 4(2): 88-98. |
[3] | Di Wu, Yong Wang, Dibing Sun, Jie Li, Kunsong Chen. Construction and Application of a Cold Chain Logistics Supervision Platform for Agricultural Products in Port Areas during the COVID-19 Pandemic [J]. Journal of Agricultural Big Data, 2022, 4(1): 62-68. |
[4] | Yahui Fan, Liang Zhu, Hua Zhao, Jianhua Zheng. Research on Intellectual Property Protection of Scientific Data Sharing [J]. Journal of Agricultural Big Data, 2021, 3(4): 3-9. |
[5] | Muhan Xue, Shuo Xu, Feng Lu, Yong Zhu, Jianguang Wu, Yigang Wang. Construction and Application of a Comprehensive Management Service Platform for Fishing Vessels and Fishing Ports [J]. Journal of Agricultural Big Data, 2021, 3(3): 45-54. |
[6] | Yan Zhuang, Shuai Yang, Zhaokun Liu, Jingchao Fan, Shuya Zhou. Research on Ownership and Protection Path of Observational Data in Agricultural Science [J]. Journal of Agricultural Big Data, 2020, 2(4): 107-112. |
[7] | Jingchao Fan, Rui Man, Xianghe Zhang, Guomin Zhou. Research on Standards for sharing Metadata of National Agricultural Observation Data [J]. Journal of Agricultural Big Data, 2020, 2(4): 14-19. |
[8] | Guozheng Hu, Zhabu Ganzhu, Peidong Yu, Zhenlin Yang, Qingzhu Gao. Research on Data Fusion in Agricultural Scientific Observation Based on of Agricultural Environment [J]. Journal of Agricultural Big Data, 2020, 2(4): 86-94. |
[9] | Zhongfu Sun, Juncheng Ma, Feixiang Zheng, Keming Du. Preliminary Exploration of Big Data Security Supported by Blockchain in Agriculture [J]. Journal of Agricultural Big Data, 2020, 2(2): 25-37. |
[10] | Mingrui Huang, Guoqing Li, Jing Li, Xiangtao Fan. International Comparative Study on Management Mode of National Science Data Center [J]. Journal of Agricultural Big Data, 2019, 1(4): 14-29. |
[11] | Senlin Zou Ziming Hu Xiaoyan Ji Zhen Xiong. Framework for Space Science Data Organization [J]. Journal of Agricultural Big Data, 2019, 1(4): 30-36. |
[12] | Linying Mi, Chenzhou Cui, Dongwei Fan, Jinxin Hao, Yanjie Xue, Changhua Li, Shanshan Li, Boliang He, Yihan Tao, Jun Han, Yunfei Xu, Hanxi Yang, Sisi Yang, Lan He, Jie Ma, Liang Liu, Xiao Chen, Junyi Chen, Hailong Zhang, Feng Liu. Brief Analysis of Development Strategies for the National Astronomical Data Center [J]. Journal of Agricultural Big Data, 2019, 1(4): 37-45. |
[13] | Lijun Xu, Yanmin Yao, Baohui Zhang, Guixia Yang, Ruirui Yan, Asiya, Xiaoni Liu, Xiaoping Xin. Research and Application of Grassland and Forage Science Database in China [J]. Journal of Agricultural Big Data, 2019, 1(4): 46-57. |
[14] | Yaping Yang, Yi Wang, Yan Bai, Xiafang Yue, Jia Du, Yongqing Bai, Jiulin Sun. Development and Practice of the National Earth System Science Data Center in China [J]. Journal of Agricultural Big Data, 2019, 1(4): 5-13. |
[15] | Haiqing Liu, Kun Lu, Xiaoke Liu, Weihong Liang. Reflections on the Construction of Agricultural Scientific Data Resource Platform in Tropical Areas [J]. Journal of Agricultural Big Data, 2019, 1(4): 58-64. |
|