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Temperature Field-Wind Velocity Field Optimum Control of Greenhouse Environment Based on CFD Model

机译:基于CFD模型的温室环境温度风速场最优控制

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The computational fluid dynamics technology is applied as the environmental control model, which can include the greenhouse space. Basic environmental factors are set to be the control objects, the field information is achieved via the division of layers by height, and numerical characteristics of each layer are used to describe the field information. Under the natural ventilation condition, real-time requirements, energy consumption, and distribution difference are selected as index functions. The optimization algorithm of adaptive simulated annealing is used to obtain optimal control outputs. A comparison with full-open ventilation shows that the whole index can be reduced at 44.21% and found that a certain mutual exclusiveness exists between the temperature and velocity field in the optimal course. All the results indicate that the application of CFD model has great advantages to improve the control accuracy of greenhouse.
机译:应用计算流体动力学技术作为环境控制模型,其中可以包括温室空间。将基本环境因素设置为控制对象,通过将图层按高度划分来获得字段信息,并使用每层的数值特征来描述字段信息。在自然通风条件下,选择实时性,能耗和分布差异作为指标函数。自适应模拟退火的优化算法用于获得最优控制输出。与全开式通风的比较表明,整个指数可以降低44.21%,并且发现在最佳过程中温度和速度场之间存在一定的互斥性。结果表明,CFD模型的应用具有很大的优势,可以提高温室的控制精度。

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