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The design of a mechanized seed sowing system for space flight application

机译:空间飞行应用机械化种子播种系统的设计

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Improvements in plant illumination, irrigation, and thermal control systems have led to significant progress in the cultivation capability of space flight plant growth facilities. An area that has received little attention, however, is the on-orbit ability to sow and initiate the germination of seed within these facilities. In addition to the need for adequate levels of water and gas exchange, seeds must be maintained in a specific physical orientation due to the absence of a gravity vector to ensure that emerging root and shoot material is directed in an appropriate orientation. An approach involving the immobilization of seed in a matrix material is being evaluated as a means of not only providing appropriate germination conditions but also the efficient physical manipulation of seed. The design of a mechanized sowing system, based on the manipulation of matrix immobilized seed is presented in this paper. Although the system was designed to operate autonomously in the Plant Growth Unit used aboard the Space Shuttle it can be adapted for long-term plant growth studies on the International Space Station.
机译:植物照明,灌溉和热控制系统的改进导致了太空飞行植物生长设施的培养能力的显着进展。然而,一个接受了很少关注的区域是播种的轨道能力,并在这些设施中发起种子的萌发。除了需要足够水平的水和气体交换之外,由于不存在重力载体,必须保持种子以特定的物理取向,以确保新出现的根和芽材料以适当的定向。正在评估涉及将种子固定的种子固定为不仅提供适当的发芽条件,还评估种子的一种方法,而且还评估种子的有效物理操纵。本文提出了基于基质固定种子的操纵机械化播种系统的设计。虽然该系统旨在自主地在植物增长室中运行,但是空间班车的航天飞机可以适用于国际空间站的长期植物生长研究。

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