首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >EXTRACTING SUBSTANTIAL FREE ENERGY FROM STATIC AMBIENT POTENTIAL ENERGY USING DISTANCE, TIME-LAPSE CHAOS, AND CORIOLIS PRINCIPLES
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EXTRACTING SUBSTANTIAL FREE ENERGY FROM STATIC AMBIENT POTENTIAL ENERGY USING DISTANCE, TIME-LAPSE CHAOS, AND CORIOLIS PRINCIPLES

机译:使用距离,延时混沌和科里奥利原则从静态环境势能中提取大量自由能量

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Extracting free energy has long been a goal of science but is mostly considered impossible to achieve. Natural processes having independent movement, such as rivers and wind, are often used but provide varied effectiveness. However, coordinated instability within a statically pressurized ambience can be used to extract a significant percentage of the ambient potential energy. This method creates two pathways between two adjacent points, one being a chaotic or Coriolis swirling path and the other being a direct path, thereby creating a pressure difference between the two adjacent points, which can be harvested to reduce the kinetic energy input required to perform the process. While some refer to the proposed benefits as "perpetual motion," it is necessary to understand that 55 to 80% of the required kinetic energy would still be mechanically generated; therefore, they could be better referred to as "coordinated chaos" or a "Coriolis energy extractor" to save energy [1]. This paper studies direct returns-extracting energy directly from a static (not dynamic) ambient energy. While such returns might not be substantial in normal activities, in deepwater or underground applications (e.g., oil or gas wells), they can be significant, often equating to a 20-45% reduction in fuel use or pollutant generation. In operations that use 20,000 horsepower, this could represent a savings of 4,000 horsepower or 10,000,000 Btu/hr with no associated financial costs.
机译:提取自由能量长期以来一直是科学的目标,但大多被认为是不可能实现的。通常使用具有独立运动的自然过程,例如河流和风,但提供不同的效率。然而,静态加压环境中的协调不稳定可用于提取显着的环境势能的百分比。该方法在两个相邻点之间产生两个途径,一个是混沌或科里奥利旋转路径,另一个是直接路径,从而在两个相邻点之间产生压力差,这可以收获以减少执行所需的动能输入这个过程。虽然有些人将拟议的福利称为“永恒的运动”,但有必要了解55至80%所需的动能仍然会机械地产生;因此,它们可以更好地称为“协调混乱”或“科里奥利能量提取器”以节省能量[1]。本文研究直接从静态(不动态)环境能量直接返回提取能源。虽然这种回报可能在深水或地下应用(例如,石油或气体井)中可能不具有重要性,但它们可能是显着的,通常等于燃料使用或污染物的减少20-45%。在使用20,000马力的运营中,这可以节省4,000马力或10,000,000 BTU / HR,没有相关的财务费用。

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