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首页> 外文期刊>Aquacultural Engineering: An International Journal >Implementation of an easily reconfigurable dynamic simulator for recirculating aquaculture systems
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Implementation of an easily reconfigurable dynamic simulator for recirculating aquaculture systems

机译:用于再循环水产养殖系统的易于重新配置动态模拟器的实现

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摘要

Methodology of Programmable Process Structures has been implemented and applied for the flexible automatic generation and simulation of Recirculating Aquaculture Systems. First, we implemented and validated the model for a pilot unit, based on short time experiments with Common carp (Cyprinus carpio), utilizing data and functionalities from the literature. Afterwards, starting from this model we generated a hypothetical single tank model of simulated increasing volume, to demonstrate how it supports the simplified, preliminary analysis, design and control of the possible multi-stage systems. We showed that the simulation of a single tank with an appropriately increasing volume makes possible to study the various control strategies, as well as to design the structure and the grading strategy of the multi-stage systems, without an increased combinatorial complexity. In the knowledge of the simulated increasing volume, we determined the volumes of subsequent stages by equidistant partitioning of the rearing time, algorithmically. Considering the available (or planned) tank volumes, this method makes possible to design a multi-stage system that approximately corresponds to the previously optimized single tank model. This conclusion was illustrated by the generation and simulation of the model for the respective multi-stage system.
机译:已经实施了可编程过程结构的方法,并应用了柔性自动产生和再循环水产养殖系统的模拟。首先,我们基于与普通鲤鱼(Cyprinus Carpio)的短时间实验,利用文献中的数据和功能来实现和验证了试点单元的模型。之后,从该模型开始,我们生成了一个假设的单罐模型的模拟增加的体积模型,以演示如何支持可能的多级系统的简化,初步,设计和控制。我们表明,具有适当增加的体积的单个罐的模拟使得可以研究各种控制策略,以及设计多级系统的结构和分级策略,而不会增加组合复杂性。在对模拟增加的体积的知识中,我们通过等于饲养时间,算法地确定后续阶段的体积。考虑到可用(或计划的)罐卷,这种方法可以设计一种大致对应于先前优化的单罐模型的多级系统。通过各个多阶段系统的模型的产生和模拟来说明了这一结论。

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