Influence of lunisolar tides on plants. Parametric resonance induced by periodic variations of gravity

H. Gouin
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引用次数: 2

Abstract

Recent experiments conducted in the International Space Station highlight the apparent periodicity of leaf oscillations and other biological phenomena associated with rhythmic variations of lunisolar forces. These events are similar to those occurring on Earth, but with greater effects over a shorter period of time. Among the possible disturbances, other than forced or self-existing oscillations, parametric resonances appear caused by a small periodic term; such is the case of fluids subjected to small periodic variations in gravitational forces in microscopic or mesoscopic plant channels filled with sap and air-vapor. The interface instabilities verify a Mathieu's second order differential equation resulting from a Rayleigh-Taylor stability model. These instabilities appear during the Moon's rotation around the Earth and during the revolution of the International Space Station. They create impulses of pressure and sap movements in the network of roots, stems and leaves. The model can explain the effects of the lunar tide on plant growth. The eccentricity of the lunar orbit around the Earth creates an important difference between the apogee and perigee of the Moon's trajectory and therefore the tidal effects can depend on the distance between the Moon and the Earth.
日较潮对植物的影响。由重力周期性变化引起的参数共振
最近在国际空间站进行的实验强调了叶片振荡的明显周期性和其他与日月力节律变化有关的生物现象。这些事件与地球上发生的事件相似,但在更短的时间内产生更大的影响。在可能的扰动中,除了强迫振荡或自存在振荡外,参数共振是由一个小周期项引起的;这就是流体在充满SAP和空气蒸汽的微观或介观植物通道中受到引力的周期性小变化的情况。界面不稳定性验证了由Rayleigh-Taylor稳定性模型导出的Mathieu二阶微分方程。这些不稳定性出现在月球绕地球旋转和国际空间站旋转期间。它们在根、茎和叶的网络中产生压力和汁液运动的冲动。该模型可以解释月潮对植物生长的影响。月球绕地球轨道的偏心造成了月球轨道的远地点和近地点之间的重要区别,因此潮汐效应取决于月球和地球之间的距离。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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