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Contributions to a Future Inertial Motor and More

机译:对未来惯性电机的贡献及更多

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摘要

For a future interplanetary trip, a space ship must be able to take off and/or land on a planet and travel at a convenient speed, insure convenient life conditions for the embarked crew, and keep contact with Earth. Chemical jet-engines used for the space ships must throw masses with enough speed to insure a convenient lifting force. Ion jet-engines, which have a much bigger jet-speed than chemical, may work for a longer time but the resulting force is small and cannot insure the take off and/or landing on a planet. A future inertial motor does not need to throw masses but needs only energy to produce the necessary lifting force. The paper presents contributions to build such a motor. As on a given vehicle, mainly rotations may be done to insure its propulsion, we start by presenting generally the rotations, at first for the electronic devices and then for mechanical one Methods that may convert the rotation into translation are after presented. Observing that the mathematical models used for rotations are extended from trigonometric functions to elliptical and ultra-elliptical ones, the author presents the differential equations that define such functions. Finally, using the modified Euler equations, a mathematical model for the gravitational waves is deduced. By using this type of waves, a permanent contact between an interplanetary ship and the earth can be kept. The presented tools may be used for modeling the fields and insure also a more comprehensive understanding.
机译:对于未来的行星际旅行,太空船必须能够在行星上起降和/或降落并以便利的速度行驶,确保乘机人员的生活条件便利,并与地球保持联系。用于太空飞船的化学喷气发动机必须以足够的速度投掷重物,以确保方便的举升力。离子喷射发动机的喷射速度比化学喷射速度快得多,它们可以工作更长的时间,但是合力很小,不能确保在飞机上起飞和/或着陆。未来的惯性电机不需要抛出质量,而仅需要能量即可产生必要的提升力。本文提出了构建这种电动机的贡献。就像在给定的车辆上一样,主要可以进行旋转以确保其推进,我们首先从总体上呈现旋转,首先是针对电子设备,然后针对机械设备,然后介绍可以将旋转转换为平移的方法。观察到旋转所用的数学模型已从三角函数扩展到椭圆和超椭圆函数,作者提出了定义这些函数的微分方程。最后,使用修正的欧拉方程,推导了引力波的数学模型。通过使用这种类型的波,可以保持行星际飞船与地球之间的永久接触。所提供的工具可用于对字段进行建模,并确保更全面的理解。

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