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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Design and control of rotating soil-like substrate plant-growing facility based on plant water requirement and computational fluid dynamics simulation
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Design and control of rotating soil-like substrate plant-growing facility based on plant water requirement and computational fluid dynamics simulation

机译:基于植物需水量和流体动力学模拟的旋转类土壤基质植物生长设施的设计与控制

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摘要

It is necessary to process inedible plant biomass into soil-like substrate (SLS) by bio-compost to realize biological resource sustainable utilization. Although similar to natural soil in structure and function, SLS often has uneven water distribution adversely affecting the plant growth due to unsatisfactory porosity, permeability and gravity distribution. In this article, SLS plant-growing facility (SLS-PGF) were therefore rotated properly for cultivating lettuce, and the Brinkman equations coupled with laminar flow equations were taken as governing equations, and boundary conditions were specified by actual operating characteristics of rotating SLS-PGF. Optimal open-control law of the angular and inflow velocity was determined by lettuce water requirement and CFD simulations. The experimental result clearly showed that water content was more uniformly distributed in SLS under the action of centrifugal and Coriolis force, rotating SLS-PGF with the optimal open-control law could meet lettuce water requirement at every growth stage and achieve precise irrigation.
机译:必须通过生物堆肥将不可食用的植物生物质加工成土壤样基质(SLS),以实现生物资源的可持续利用。尽管SLS在结构和功能上与天然土壤相似,但由于孔隙率,渗透率和重力分布不理想,通常水分布不均匀,严重不利于植物生长。因此,本文对SLS植物生长设施(SLS-PGF)进行了适当的旋转以种植生菜,并以Brinkman方程与层流方程相结合作为控制方程,并根据旋转SLS-的实际运行特性指定了边界条件。 PGF。莴苣需水量和CFD模拟确定了角速度和流入速度的最佳开放控制律。实验结果清楚地表明,在离心力和科里奥利力的作用下,SLS中水分更均匀地分布,以最佳的控制方式旋转SLS-PGF可以满足生菜各个生长阶段的需水量,并实现精确灌溉。

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