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Thermogravitational Cycles: Theoretical Framework and Example of an Electric Thermogravitational Generator Based on Balloon Inflation/Deflation

机译:热引力循环:基于球囊膨胀/收缩的电动热引力发生器的理论框架和示例

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Several studies have involved a combination of heat and gravitational energy exchanges to create novel heat engines. A common theoretical framework is developed here to describe thermogravitational cycles which have the same efficiencies as the Carnot, Rankine, or Brayton cycles. Considering a working fluid enclosed in a balloon inside a column filled with a transporting fluid, a cycle is composed of four steps. Starting from the top of the column, the balloon goes down by gravity, receives heat from a hot source at the bottom, then rises and delivers heat to a cold source at the top. Unlike classic power cycles which need external work to operate the compressor, thermogravitational cycles can operate as a “pure power cycle” where no external work is needed to drive the cycle. To illustrate this concept, the prototype of a thermogravitational electrical generator is presented. It uses a hot source of average temperature near 57 °C and relies on the gravitational energy exchanges of an organic fluorinated fluid inside a balloon attached to a magnetic marble to produce an electromotive force of 50 mV peak to peak by the use of a linear alternator. This heat engine is well suited to be operated using renewable energy sources such as geothermal gradients or focused sunlight.
机译:几项研究涉及热能和重力能交换的结合,从而创造出新颖的热力发动机。这里开发了一个通用的理论框架来描述热重循环,其效率与卡诺,朗肯或布雷顿循环相同。考虑到工作流体封闭在填充有输送流体的柱子内部的气球中,一个循环包括四个步骤。气球从塔顶开始,由于重力而下降,从底部的热源接收热量,然后上升并将热量传递到顶部的冷源。与经典的动力循环不同,传统的动力循环需要外部工作才能运行压缩机,而热引力循环可以作为“纯动力循环”运行,而无需外部工作来驱动循环。为了说明这一概念,提出了一种热重力发电机的原型。它使用平均温度接近57°C的热源,并依靠附着在磁性大理石上的气球内的有机氟化流体的重力交换,通过使用线性交流发电机产生50 mV峰到峰的电动势。 。该热机非常适合使用可再生能源(例如地热梯度或集中日光)运行。

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