AQUACULTURAL ENGINEERING水产养殖工程

AQUACULTURAL ENGINEERING(英文缩写 AQUACULT ENG),ISSN 0144-8609,eISSN 1873-5614,中文译名:水产养殖工程 是一本学术期刊。本页汇总该期刊的最新影响因子、分区信息以及最新收录于 PubMed 的文献,帮助您快速了解期刊全貌。

2026 年数据 · 影响因子
4.400
JCR 分区
Q1
CAS 分区
B2
近一年发文量
0
本站 PubMed 收录统计

发文量统计区间:2025-09-27 至 2026-09-27,按本站收录文献的发表日期统计。

ISSN: 0144-8609 · eISSN: 1873-5614 · 缩写: AQUACULT ENG ·中文: 水产养殖工程

期刊介绍

选择期刊介绍栏目

期刊简介

Aquacultural Engineering 是水产养殖工程领域的国际专业期刊,聚焦养殖系统设计、水处理、环境控制与装备研发。内容涵盖循环水系统、增氧、投饵、水质监测、网箱与池塘工程等,面向水产工程研究人员、养殖技术开发者、设备工程师及渔业管理者,强调工程方法解决养殖生产中的实际问题。

研究方向

主要方向包括养殖水处理与循环系统、增氧与曝气、投饵与收获装备、水质传感器与自动控制、养殖设施结构、环境承载与排放管理。论文类型以实验研究、系统设计与性能评估、数值模拟和综述为主,也接受工程案例与短通讯。

期刊特色

研究取向偏应用工程与系统集成,重视可重复的试验数据、装置性能参数和现场验证。论文通常包含设计细节、运行效果与工程经济性讨论,适合水产养殖、农业工程、环境工程领域的研究者、工程师和研究生参考。

投稿难度

投稿难度中等偏上,期刊对工程创新性、实验设计和数据完整性要求较高。建议突出系统或装备的改进点,提供充分的对照与运行数据,并清晰说明工程应用价值;纯描述性养殖试验若无工程贡献,录用机会相对有限。

历年影响因子趋势

JCR 数据年份影响因子JCR 分区
20213.273Q2
20224.000Q1
20233.600Q1
20244.300Q1
20254.400Q1

AQUACULTURAL ENGINEERING 最新收录文献

  1. JCR分区: Q1 CAS分区: B2 影响因子: 4.4

    1. Development of an open hardware 3-D printed conveyor device for continuous cryopreservation of non-batched samples.

    作者:
    Yue Liu, Melissa Eskridge, Amy Guitreau, Jacob Beckham, Megan Chesnut, Leticia Torres, Terrence R Tiersch, William Todd Monroe
    日期:
    2021-11-01

    A great challenge among communities participating in germplasm repository development is to obtain suitable cryopreservation equipment and devices. Commercial programmable freezers are costly and thus unaffordable to many users. Self-made devices have substantial variability among users, resulting in few opportunities for standardization across communities. The development of open hardware with the increasing accessibility of three-dimensional (3-D) printing offers rapid prototyping and easy fabrication of devices by users around the world at low cost. The present study explored the feasibility of developing operational prototypes of 3-D printed motorized cryopreservation devices for continuous freezing of non-batched samples. A controlled cooling conveyor device (CCCD) was designed and fabricated to cryopreserve sperm samples in straws that were loaded onto chain links suspended over liquid nitrogen held in a Styrofoam box. Cooling rates of 5 to 34 °C/min for 0.5-ml French straws were produced by adjusting the height of conveyor chains, slopes, and liquid nitrogen mass. The plunge temperature (-47 °C to -61 °C) was controlled by adjustment of conveyor speed. The cooling curves from the CCCD were comparable to a commercial programmable freezer. There were no significant differences in post-thaw motility of sperm from ornamental (Koi) common carp () among samples frozen with the CCCD and those frozen with a commercial programmable freezer. The post-thaw sperm motility was consistent among samples frozen in the CCCD across a 15-min time span. The CCCD prototypes in the present study proved to be feasible and functional as low-cost, customizable, portable, and yet standardizable options for freezing of individual (non-batched) samples. Additional design alternatives are proposed to facilitate further adaptation and development by diverse user communities.

  2. JCR分区: Q1 CAS分区: B2 影响因子: 4.4

    2. 3-D Printed Customizable Vitrification Devices for Preservation of Genetic Resources of Aquatic Species.

    作者:
    Connor J Tiersch, Yue Liu, Terrence R Tiersch, William T Monroe
    日期:
    2020-08-01

    Sperm vitrification as an alternative approach to conventional cryopreservation (equilibrium freezing) allows quick and low-cost sample preservation and is suitable for small-bodied aquatic species with miniscule testis, fieldwork at remote locations, and small-scale freezing for research purposes. The goal of this present study was to develop operational prototypes of 3-dimensional (3-D) printed vitrification devices with innovative components that can provide comprehensive functionalities for practical repository development for aquatic species. The design featured an elongated loop to suspend a thin film of sperm sample in cryoprotectant, a retractable sleeve to protect the vitrified samples and allow permanent labeling, a handle to facilitate processing and storage, and a shaft with annular grooves to guide positioning of the protective retractable sleeve. To span a wide range of sample capacities and configurations, a total of 39 different configurations (3 loop lengths ×13 loop heights) were fabricated by 3-D printing with the thermoplastics polylactic acid (PLA) and acrylonitrile butadiene styrene (ABS). A total of 86 devices were fabricated with ABS filament with a print failure rate of 9%, and 97 devices were fabricated with PLA filament with a failure rate of 20%. Major types of printing failures included disconnected loops, insufficient build surface adhesion, stringing, and inconsistent extrusion. The sample volume capacity ranged from 1-47 μL and had linear relationships to the loop lengths and layer numbers. Vitrified samples were observed in 10-mm and 15-mm loops fabricated with PLA and ABS but not in 20-mm loops. This study demonstrated the feasibility of development of standardized low-cost ($0.05 material cost) devices fabricated by 3-D printing with practical functions including vitrification, volume control, labeling, protection, and storage within conventional systems. These prototypes can be further developed, standardized, and used to assist development of germplasm repositories to protect the genetic resources of aquatic species by user groups such as breeders, hatcheries, aquariums, and researchers.

  3. JCR分区: Q1 CAS分区: B2 影响因子: 4.4

    3. {"_":"Framework for evaluating external and internal parameters associated with Sea Based Container Culture (SBCC): Towards understanding rearing success in European lobsters ().","i":["Homarus gammarus"]}

    作者:
    Peter Halswell, Carly L Daniels, Lars Johanning
    日期:
    2018-11-01

    Sea Based Container Culture (SBCC) is a mariculture technique that relies on the natural maintenance of environmental conditions, such as Dissolved Oxygen (DO) concentration and feed availability. This paper discusses a framework to evaluate the rearing success of European Lobsters () in SBCC based on temporal and spatial variations of external parameters, including current velocity, wave velocity, turbulent fluctuations and dissolved oxygen concentrations. The temporal variations considered annual changes to the environment and the effect of biofouling growth, and the spatial variations considered the geographical location (case study of Falmouth bay, Cornwall) and vertical position in the water column. The internal parameters of the containers were modelled using transfer functions derived from previous experimental data. The internal parameters were compared to rearing limitations selected from available literature, which included foraging and mobility behaviours, and DO consumption. The time that internal parameters exceeded the rearing limitations was quantified, allowing rearing success to be predicted. This paper uses a case study of external parameters measured in Cornish waters, UK, to demonstrate the framework methodology. The framework showed that in situ measurements of current, wave and turbulence could be used to predict the internal parameters of SBCC containers, which can be used to predict theoretical rearing success based on rearing limitations. The framework indicated that DO concentrations within the containers should not affect rearing success; however, the foraging and mobility limits were exceeded by 0 to 30% of the time (depending on vertical position in the water column and assessment method). The paper aims to demonstrate the generic framework methodology and understands its limitations in predicting rearing success. The framework provides a tool to optimise the SBCC design for spatial and temporal varying conditions related to a geographical location or (vice versa) identify suitable mariculture sites based on SBCC design and environmental conditions. Additionally, the framework can optimise the vertical position of the SBCC in the water column and identify, from parameters considered, those that are most likely to affect rearing success.

  4. JCR分区: Q1 CAS分区: B2 影响因子: 4.4

    4. Design and operation of a low-cost and compact autonomous buoy system for use in coastal aquaculture and water quality monitoring.

    作者:
    Wiebke Schmidt, David Raymond, David Parish, Ian G C Ashton, Peter I Miller, Carlos J A Campos, Jamie D Shutler
    日期:
    2018-01-01

    The need to ensure future food security and issues of varying estuarine water quality is driving the expansion of aquaculture into near-shore coastal waters. It is prudent to fully evaluate new or proposed aquaculture sites, prior to any substantial financial investment in infrastructure and staffing. Measurements of water temperature, salinity and dissolved oxygen can be used to gain insight into the physical, chemical and biological water quality conditions within a farm site, towards identifying its suitability for farming, both for the stock species of interest and for assessing the potential risk from harmful or toxic algae. The latter can cause closure of shellfish harvesting. Unfortunately, commercial scientific monitoring systems can be cost prohibitive for small organisations and companies to purchase and operate. Here we describe the design, construction and deployment of a low cost (<£ 5000) monitoring buoy suitable for use within a near-shore aquaculture farm or bathing waters. The mooring includes a suite of sensors designed for supporting and understanding variations in near-shore physical, chemical and biological water quality. The system has been designed so that it can be operated and maintained by non-scientific staff, whilst still providing good quality scientific data. Data collected from two deployments totalling 14 months, one in a coastal bay location, another in an estuary, have illustrated the robust design and provided insight into the suitability of these sites for aquaculture and the potential occurrence of a toxin causing algae ( spp.). The instruments maintained good accuracy during the deployments when compared to independent in situ measurements (e.g. RMSE 0.13-0.16 °C, bias 0.03-0.08 °C) enabling stratification and biological features to be identified, along with confirming that the waters were suitable for mussel ( spp.) and lobster () aquaculture, whilst sites showed conditions agreeable for spp.

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指标接近的期刊