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Quantum mechanics applied to the dynamic assessment of a cluster of water particles in sprinkler irrigation

机译:量子力学在洒水灌溉中水团簇动态评估中的应用

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摘要

The problem of liquid droplets crossing a gas is common to many scientific and technical issues and, in particular, also to sprinkler irrigation; thus, when designing a sprinkler irrigation system, it is essential to fully understand how droplets mechanically behave during their flight and how a mathematical modeling can cope with all the variables affecting one another during such a complicate thermal fluid dynamic process. In the thematic scientific literature, the classic approach has been recently challenged by an alternative quantum one, provided in two different formulations referring to a single droplet dynamics: one focusing on a full description of the process (time-dependent Schr?dinger equation); the other focusing on the discovery of an easier-to-use method (scale relativity theory); both allowing for a broader microscopical insight of the actual mechanics of single water droplets in sprinkler irrigation. The present contribution is aimed at developing the quantum procedure extending it to a cluster of water particles, as one droplet during its aerial flight conditions the others, which are in its vicinity and vice versa.
机译:液滴通过气体的问题在许多科学技术问题中都是普遍存在的,尤其是在喷灌中。因此,在设计洒水灌溉系统时,必须充分了解液滴在飞行过程中的机械行为,以及在这种复杂的热流体动力学过程中,数学模型如何应对彼此影响的所有变量,这一点至关重要。在主题科学文献中,经典方法最近受到另一种量子方法的挑战,该量子方法以两种不同的形式提供,涉及单个液滴动力学:一种集中于对过程的完整描述(与时间有关的薛定er方程);另一种集中于对过程的完全描述。另一个侧重于发现一种更易于使用的方法(尺度相对论);两者都为喷淋灌溉中单个水滴的实际力学提供了更广阔的微观视野。本发明的目的是发展量子程序,将其扩展到水粒子簇,作为一个液滴在其空中飞行条件下的另一个液滴在其附近,反之亦然。

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