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Nonlinear simulation for coupling modeling of air humidity and vent opening in Chinese solar greenhouse based on CFD

机译:基于CFD的中国太阳能温室空气湿度通风口耦合建模的非线性模拟

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The Chinese solar greenhouse (CSG) ensures farming activities to continue and allow the harvest timing to be manipulated and become an important part of Chinese agricultural facilities. Effective control of the solar greenhouse environment is critical for the well-being of crops and is Important for the entire Eco-agricultural System. The rapid exchange of energy and materials in the CSG with the external environment are achieved through the natural ventilation of the upper vent and the lower vent. However, there is lack of relevant research that addresses the vent opening. In this study, the effect that the vent opening has on the CSG was studied through Computational Fluid Dynamics (CFD) simulation. The ventilation of a real solar greenhouse was simulated by establishing a 3D simulation model of the solar greenhouse with various vent openings. The main focus was the relationship between the vent opening and the air humidity changes in the CSG. This study presents a coupling between an energy balance model and a CFD model to study relationships between ventilation and humidity in a CSG. The simulation results demonstrated that natural ventilation increased along with the increasing of vent openings, which caused to a drop of air humidity and temperature in the solar greenhouse. This reduction was not a linear change in the traditional cognitive paradigm, but showed nonlinear changes through the simulation results. The requirements for the verification of simulation results were used to conduct a scale model to verify the results of the CFD experiments. The practical value and the significance of the research aims to provide basic reference for controlling the indoor air temperature and the air humidity by the natural ventilation of vents. The outcome could result in a reduction in energy consumption and GHG emissions in the greenhouse operations, which contributed to the improvement of resource efficiency and a cleaner production. These results have strong practical significance for the follow-up automation and intelligent control of CSG environments.
机译:中国太阳能温室(CSG)可确保农业活动继续,并允许严格的时间来操纵,成为中国农业设施的重要组成部分。有效控制太阳温室环境对于作物的福祉至关重要,对整个生态农业系统很重要。通过上通风口和下部通风口的自然通风来实现具有外部环境的CSG中的能量和材料的快速交换。但是,缺乏缺乏相关的研究,可以解决通风口开口。在本研究中,通过计算流体动力学(CFD)模拟研究了通气开口对CSG的影响。通过建立具有各种通风口的太阳能温室的3D仿真模型来模拟真正的太阳能温室的通风。主要重点是通风口开口与空气湿度之间的关系,CSG中的变化。该研究呈现了能量平衡模型与CFD模型之间的耦合,以研究CSG通风和湿度之间的关系。仿真结果表明,自然通风随着通风口开口的增加而增加,这导致太阳温室的空气湿度和温度下降。这种减少不是传统认知范例的线性变化,但通过模拟结果显示了非线性变化。验证仿真结果的要求用于进行规模模型,以验证CFD实验的结果。该研究的实用价值和重要性旨在通过通风口的自然通风来提供控制室内空气温度和空气湿度的基本参考。结果可能导致温室运营中的能耗和温室气体排放量,这有助于提高资源效率和清洁生产。这些结果对CSG环境的后续自动化和智能控制具有很强的现实意义。

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