首页> 外文期刊>Aquacultural Engineering: An International Journal >A novel computer simulation model for design and management of re-circulating aquaculture systems.
【24h】

A novel computer simulation model for design and management of re-circulating aquaculture systems.

机译:用于循环水产养殖系统设计和管理的新型计算机仿真模型。

获取原文
获取原文并翻译 | 示例
           

摘要

The aim of this study was to develop a simulation model for finding the optimal layout and management regime for a re-circulating aquaculture system (RAS). The work plan involved: (1) quantifying the effects of fish growth and management practices on production; (2) developing a mathematical simulation model for the RAS, taking into account all factors that directly influence system profitability; and (3) estimating the production costs and, hence, the profitability of an RAS. The resulting model is process-oriented, following the flow of fish through the RAS facility, and generates an animated graphic representation of the processes through which the fish passes as it progress through the system. The simulation assesses the performance in terms of yearly turnover, stocking density, tank utilization and biomass in process, and uses statistics to track the state of the RAS and record changes that affect efficiency. The economic impact of system design and operation was modeled to enable a user to anticipate how changes in design or operating practices, costs of inputs, or price of products affect system profitability. The proposed approach overcomes difficulties in characterizing RAS design and operation. The simulation approach allows all of the RAS's components such as equipment, biological processes (e.g., fish growth), and management practices to be evaluated jointly, so that an initial design can be fine-tuned to produce an optimized system and management regime suited to a specific fish farm within a reasonable time. The methodology was executed step-by-step to design an optimal RAS that meets both economic and stocking-density limits. Optimal design specifications were presented for several case studies based on data from Kibbutz Sde Eliahu's RAS, in which Nile tilapia (Oreochromis niloticus) are raised in 20 concrete raceways. Further research should include more extensive testing and validation of the integrated model, which then should be disseminated to the aquaculture community.
机译:这项研究的目的是开发一个模拟模型,以寻找循环水产养殖系统(RAS)的最佳布局和管理制度。工作计划涉及:(1)量化鱼类生长和管理做法对生产的影响; (2)考虑到直接影响系统盈利能力的所有因素,为RAS开发数学仿真模型; (3)估算生产成本,从而估算RAS的盈利能力。生成的模型是面向过程的,跟随鱼流过RAS设施,并生成鱼在通过系统时所经过的过程的动画图形表示。该模拟会根据年营业额,库存密度,罐利用率和过程中的生物量评估性能,并使用统计信息来跟踪RAS的状态并记录影响效率的变化。对系统设计和操作的经济影响进行了建模,以使用户能够预期设计或操作实践,输入成本或产品价格的变化如何影响系统盈利能力。所提出的方法克服了表征RAS设计和操作的困难。该模拟方法允许对RAS的所有组件(例如设备,生物过程(例如,鱼类生长)和管理实践)进行联合评估,以便可以对初始设计进行微调,以生成适合于以下情况的优化系统和管理体制:在合理时间内建立特定的养鱼场。该方法已逐步执行,以设计同时满足经济和库存密度限制的最佳RAS。根据基布兹·斯德·埃利亚胡(Kibbutz Sde Eliahu)的RAS数据,提出了一些案例研究的最佳设计规格,其中尼罗罗非鱼(Oreochromis niloticus)在20条混凝土水道中饲养。进一步的研究应包括对整合模型的更广泛的测试和验证,然后应将其传播给水产养殖界。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号