• Title/Summary/Keyword: Aquaculture farm

Search Result 209, Processing Time 0.03 seconds

A Study on the Improvement of the Aquaculture Evaluation Method by using AHP (AHP기법 적용을 통한 수산양식장 평가방식 개선에 관한 연구)

  • Seo, Jong-Seok;Seo, Wonchul;Ock, Young-Seok
    • Journal of Fisheries and Marine Sciences Education
    • /
    • v.26 no.4
    • /
    • pp.846-858
    • /
    • 2014
  • The purpose of this study is to help domestic aquaculture farm by improved evaluation method. First, We analyzed evaluation method of domestic aquaculture certification, the greater retailer's supplier and global standard. Next, By using Analytic Hierarchy Process (AHP), We found priority and importance between criteria of SQF(Safety Quality Food) standard which is appled to alternative model for aquaculture evaluation. As a result is presented as follows: regarding pairwise comparison between System Element module and Good Aquaculture Practice(GAP) module, GAP is recognized to be more important than System Element. The highest priority criteria is presented 'Purchase and Use of Medications, Aquaculture Feeds and Aquaculture Chemicals.' Next, 'Management commitment', 'Attaining Food Safety', 'Location and Layout of Structures and Vessels', 'Stock Identification and Traceability are recognized high position. This study has major implications for research into development of evaluation method.

Development of Real-time Oceanographic Information System for Long Line Hanging Aquaculture Farm and Temperature Variation in the Coastal Area of the East Sea (수하식 양식장용 실시간 해양환경 관측시스템 개발 및 동해 연안의 수온변동 특성)

  • Yang, Joon-Yong;Kim, Lim-Hak;Lee, Joon-Soo;Hwang, Jae-Dong;Suh, Young-Sang;Kim, Dae-Chul
    • Journal of Environmental Science International
    • /
    • v.19 no.11
    • /
    • pp.1397-1405
    • /
    • 2010
  • Mass mortalities of cultivated organisms have occurred frequently in Korean coastal waters causing enormous losses to cultivating industry. The preventive measures require continuous observation of farm environment and real-time provision of data. However, line hanging aquaculture farm are generally located far from monitoring buoys and has limitations on installation of heavy equipments. Substituting battery pack for solar panels and miniaturizing size of buoy, newly developed system can be attached to long line hanging aquaculture farm. This system could deliver measured data to users in real-time and contribute to damage mitigation and prevention from mass mortalities as well as finding their causes. The system was installed off Gijang and Yeongdeck in Korea, measuring and transmitting seawater temperature at the sea surface every 30 minutes. Short term variation of seawater temperature, less than one day, in Gijang from June to July 2009 corresponded tidal period of about 12 hours and long term variation seemed to be caused by cold water southeast coast of Korea, particularly northeast of Gijang. Seawater temperature differences between Gijang station and the other station that is about 500 m away from Gijang station were $1^{\circ}C$ on average. This fact indicates that it is need to be pay attention to use substitute data even if it is close to the station. Daily range of seawater temperature, one of crucial information to aquaculture, can be obtained from this system because temperature were measured every 30 minutes. Averages of daily range of temperature off Gijang and Yeongdeok during each observation periods were about $2.9^{\circ}C$ and $4.7^{\circ}C$ respectively. Dominant period of seawater temperature variation off Yeongdeok was one day with the lowest peak at 5 a.m. and the highest one at 5 p.m. generally, resulting from solar radiation.

Smart Aquaculture Industrialization Model and Technology Development Direction Considering Technology, Economy and Environment (기술·경제·환경적 측면에서의 스마트양식 산업화 모델과 기술개발 방향)

  • Donggil Lee;Hae Seung Jeong;Junhyuk Seo;Hyeong Su Kim;Jeonghwan Park
    • Korean Journal of Fisheries and Aquatic Sciences
    • /
    • v.56 no.6
    • /
    • pp.759-765
    • /
    • 2023
  • Owing to the increase in the elderly population at aquaculture farm and decrease in the number of aquaculture farmers, the need to improve aquaculture production system is increasing. In addition, asvirtual interactions become new normal after COVID-19 pandemic, the speed at which science and technology such as the internet of things (IoT), information and communications technology (ICT), and artificial intelligence (AI) are applied to each field is accelerating. Efforts are being made to enhance the quality of life of aquaculture farmer and competitiveness of the aquaculture industry by incorporating digital technology. This study analyzed national and global aquaculture technology development and policy trends, smart aquaculture terminology application scenarios, and prior research cases to propose smart aquaculture industrialization models and technology development directions considering technology, economy, and environment. This study can also provide valuable reference for promoting smart and efficient development of aquaculture.

An Implementation of RFID Feeding History System with Improved Tagging Methods in land-based Aquaculture Farms (육상 수조식 양식장에서 개선된 태깅 방법에 의한 RFID 급이 이력 시스템 구현)

  • Ye, Seoung-Bin;Jung, Sung-Ju;Ceong, Hee-Taek;Han, Soon-Hee
    • Journal of the Korea Institute of Information and Communication Engineering
    • /
    • v.14 no.3
    • /
    • pp.745-753
    • /
    • 2010
  • Many studies using RFID which can identify the movement of targeted objects has been conducted actively. In this paper, we propose improved tagging method to check exactly the amount of fish feed by the aquaculture tank in a land-based aquaculture farm and design the RFID feeding system to perform auto feeding history. Also, we implement the prototype system which it includes development program for auto-identification and auto-recording and self-made RFID feeding cart equipped the weight device, RFID reader, control module and display device.

Rates of Sulfate Reduction and Iron Reduction in the Sediment Associated with Abalone Aquaculture in the Southern Coastal Waters of Korea (남해연안 전복양식장 퇴적물의 황산염 환원과 철 환원에 의한 유기물 분해 특성)

  • Kim, Bo-Mi-Na;Choi, A-Yeon;An, Sung-Uk;Kim, Hyung-Chul;Jung, Rae-Hong;Lee, Won-Chan;Hyun, Jung-Ho
    • Ocean and Polar Research
    • /
    • v.33 no.4
    • /
    • pp.435-445
    • /
    • 2011
  • We investigated geochemical properties, and microbial sulfate- and iron(III) reduction in sediment influenced by the aquaculture of abalone in the Nohwa-do, southern coastal sea in Korea. Concentrations of ammonium, phosphate, and sulfide in the pore-water were higher at farm sites than at control sites. The differences between the 2 types of sites were most apparent in terms of the weights of abalone and the temperature increase during September. Accordingly, the rates of sulfate reduction at the farm sites during September (61 mmol S $m^{-2}d{-1}$) were 3-fold higher than the sulfate reduction during May (20 mmol S $m^{-2}d{-1}$). In contrast, Fe(III) reduction rates were highest at the control sites in May, but its significance was relatively decreased at farm sites during September when sulfate reduction rates were highest. During September, benthic ammonium flux was 3-fold greater at the farm sites (35 mmol N $m^{-2}d{-1}$) than at the control sites (12 mmol N $m^{-2}d{-1}$), and phosphate flux was 8-fold higher at the farm sites (0.018 mmol P $m^{-2}d{-1}$) than at control sites (0.003 mmol P $m^{-2}d{-1}$). Overall results indicated that the inappropriate operation of a large-scale aquaculture farm may result in excess input of biodeposits and high nutrient fluxes from the sediment, thereby decreasing diversity of the benthic ecosystem and deepening eutrophication in coastal waters.

Estimation of Green-House-Gas emissions from domestic aquaculture farm for flounders (넙치 양식장에서 발생하는 온실가스 배출량 산정)

  • YANG, Yongsu;LIM, Han-Kyu;LEE, Kyounghoon;LEE, Dong-Gil;SHIN, Hyeong-Ho
    • Journal of the Korean Society of Fisheries and Ocean Technology
    • /
    • v.51 no.4
    • /
    • pp.614-623
    • /
    • 2015
  • This study aims to estimate the Green-House-Gas emissions from domestic farmed flounder in the southern sea and Jeju-Do, where is mainly produced, by the assessment of energy consumptions and GHG emissions from domestic fish farms for establishing reduce standards of greenhouse gas from a sustainable perspective. It needs to analyze such GHG emission components as feed, electricity, fuel, fixed capital, fish respiration, and liquid oxygen in two locations by 4 stage running water type farm size of small, small and medium, large and medium, large scale. The result showed that the mean GHG emissions were $36.83kg{\cdot}CO_2/year$ in the southern sea and $24.33kg{\cdot}CO_2/year$ in Jeju-Do, respectively, in the stage of production per fish 1kg at 2 locations and farm size from domestic farmed flounders, and it will give to be useful for policy, planning, and regulation of aquaculture development with establishing GHG reduction standards.

Design of Drone for Underwater Monitoring and Net Cleaning for Aquaculture Farm (양식장 수중 모니터링 및 그물망 청소용 드론 설계)

  • Kim, Jin-Ha;Kim, Eung-Kon
    • The Journal of the Korea institute of electronic communication sciences
    • /
    • v.13 no.6
    • /
    • pp.1379-1386
    • /
    • 2018
  • Conventional underwater cameras used in fish farms can only shoot limited areas and are vulnerable to underwater contamination. There is also a problem with contaminated farms as surplus residues are deposited as a result of feed supply to farms' nets. This paper proposes underwater drones for underwater monitoring of fish farms and cleaning nets. If underwater drones are used for management of fish farms, underwater imaging, monitoring and cleaning of fish farms' nets can be possible. By using this technology, data can be collected by detecting changes in the environment of a fish farm and responding to changes that occur within a fish farm based on the data. In addition, the establishment of an integrated control system will enable to build efficient and stable smart farms.

Mathematical Model of Aquaculture Facility Utilization (양식장 이용에 대한 수학적 모형)

  • Eh, Youn-Yang
    • Journal of Fisheries and Marine Sciences Education
    • /
    • v.26 no.2
    • /
    • pp.444-454
    • /
    • 2014
  • The range of optimization problem in aquaculture is very wide, resulting from the range of species, mode of operation. Quite a few studies focus marine net-cages, but studies on land based culture farm are few or no. This paper considers a allocation problem to meet production planning in land based aquaculture system. A water pool allocation model in land based aquaculture system was developed. The solution finds the value of decision variable to minimize yearly production costs that sums up the water pool usage cost and sorting cost. The model inputs were (1) the fish growth rate (2) critical standing corp (3) number of water pool (4) number of fish. The model outputs were (5) number of water pool in growing phase (6) cost of cultivation (6) optimal facility allocation(number of water pool for each growing phase). To solve the problem, an efficient heuristic algorithm based on a greedy manner is developed. Branch and bound and heuristic is evaluated through numerical examples.

An Empirical Study for Development of Onshore Gim (Pyropia yezoensis) Aquaculture System (육상 김 양식 시스템 개발을 위한 실증화 연구)

  • Oh, Ho-Dong;Oh, Seung-Seob;Shin, Hwa-Soo;Shin, Heung-Sop
    • The Journal of Fisheries Business Administration
    • /
    • v.51 no.2
    • /
    • pp.15-24
    • /
    • 2020
  • As a first step in obtaining the minimum level of data needed to develop smart cultivation technology for Korean seaweed gim (Pyropia yezoensis), farming tests have been carried out using onshore aquaculture facilities. The aquaculture facility was built on paddy farmland on the west coast of Chungnam and received seawater from nearby sea. In this paper, we report the overall process and results of the aquaculture trials attempted in Korea's first onshore gim aquaculture facilities. In addition, the industrial possibility of gim production using the onshore aquaculture system will be discussed through the analysis of all expenses incurred in the test form.

Monitoring and Impact of Marine Ecological Disturbance Causing Organisms on an Oyster and Sea Squirt Farm (해양 교란생물로 인한 굴과 우렁쉥이 양식장의 피해 현황 조사)

  • Park, Juun;Lee, Taekjun;Kim, Donghyun;Kim, Philjae;Kim, Dong Gun;Shin, Sook
    • Korean Journal of Environmental Biology
    • /
    • v.35 no.4
    • /
    • pp.677-683
    • /
    • 2017
  • The Korean aquaculture industry was generally began in the 1970s and has gradually increased. Now, the number of households is about 7,068 and the scale of an aquaculture farm is about 248,014 ha; the value of all production in the industry is estimated to be about 1602.2 billion won. The aquaculture industry is very valuable and important for future food resources. However, the aquaculture industry was damaged by several marine ecological disturbance causing organisms. The Ascdiella aspersa colonized on the shell of scallop and then scallops were detached from rope. The patterns of damage in the aquacultures were observed in Tongyeong (oyster), Geojedo (oyster), and Gangneung (sea squirt) in June, 2017, as well as in Tongyeong (oyster) in November, 2017 by SCUBA divers. The species Halichondria bowerbanki, Bugula neritina, Mytilus galloprovincialis, Balanus amphitrite, Ascidiella aspersa, Ciona intestinalis, Didemnum sp, Styela plicata in Tongyeong, M. galloprovincialis, A. aspersa, C. intestinalis, D. vexillum, S. plicata in Geojedo, and M. galloprovincialis in Gangneung were all usually found in their farms. The marine ecological disturbance causing organisms gave rise to a reduced number of aquaculture products.