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A Physical Modeling Approach for Higher Plant Growth in Reduced Gravity Environments

机译:在重力降低的环境中提高植物生长的物理建模方法

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Including plants in bioregenerative life-support systems enables simultaneous food production and water and air recycling, while closing cycles for water, oxygen, nitrogen, and carbon. To understand and predict higher plant behavior for a wide range of environmental conditions, including reduced gravity levels, a mechanistic physical model is being developed. The emphasis is set on the influence of gravity levels and forced convection on higher plant leaf gas exchanges, which are altered by reduction of free convection in lower gravity environments, such as microgravity or martian and lunar gravities. This study highlights the significance of understanding leaf boundary layer limitations and ultimately will lead to complete mechanistic modeling of mass and energy balances on plant growth in reduced gravity environments.
机译:将植物纳入生物再生生命支持系统后,可以同时进行食品生产以及水和空气的循环利用,同时关闭水,氧,氮和碳的循环。为了理解和预测在广泛的环境条件下(包括降低的重力水平)更高的植物行为,正在开发一种机械物理模型。重点放在重力水平和强制对流对较高的植物叶片气体交换的影响上,这通过在较低重力环境(例如微重力或火星和月球重力)中自由对流的减少而改变。这项研究强调了了解叶边界层局限性的重要性,并最终将导致在重力降低的环境中对植物生长进行质量和能量平衡的完整机械模型。

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