由太阳能热能引起的机械运动

Abdul Al-Azzawi, Mohammed Mostefa, Dmitry Klishch
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引用次数: 0

摘要

不断增加的能源需求和成本是本研究项目的主要动力。太阳热能被用来产生机械运动。反过来,机械运动驱动发电机发电。这个项目的目的是利用太阳辐射加热一个装有空气的黑色金属罐。空气被太阳辐射加热,并通过安装在顶部出口阀上的喷嘴膨胀离开水箱。当空气离开喷嘴引起机械旋转时,由热空气流的力驱动涡轮。发电机与发电的涡轮相连。所产生的电力可用于直接和间接的应用。为了将这个概念应用到实际的研究工作中,设计、构建了一个原型,并在实验室条件下进行了测试。当黑色细金属罐被模拟热源加热时,空气通过自然热对流从金属罐壁传导的热量而膨胀。当空气温度升高时,密度降低,并通过自然弹性效应的力量导致热空气流量上升。黑色金属罐用作空气储存罐。控制阀安装在黑色金属罐的进风口和出风口上,控制空气的进出。因此,阀门控制罐内空气温度。初步试验表明,样机在人工热源和实验室条件下工作良好。样机将在真实环境条件下进行测试以验证结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Induced mechanical motion by thermal solar energy
Increasing energy demand and cost are the main motivators for this research project. Solar thermal energy is used to create mechanical motion. In turn, the mechanical motion drives a generator to generate electricity. The objective of this project is to use solar radiation to heat a black fined metal tank filed with air. The air is heated by the solar radiation and expands leaving the tank through a nozzle, which is mounted on the top outlet valve. A turbine wheel is driven by the force of the hot air flow when the air is leaving the nozzle causing a mechanical rotation. An electric generator is coupled to the turbine wheel generating electricity. The generated electricity can be used for direct and indirect applications. To put the concept in practical research work, a prototype is designed, constructed, and tested under lab conditions. When the black fined metal tank is heated by simulated heat source, the air expands by natural heat convection from the heat that is conducted from the walls of the metal tank. When air temperature increases the density decreases and causing the hot air flows to rise by the power of the natural bouncy effect. The black metal tank is used as air storage. Control valves are mounted on the air inlet and outlet on the black metal tank to control the air flow in and out. Consequently, the valves control the inside tank air temperature. Preliminarily tests showed that the prototype works satisfactorily under artificial heat source and lab conditions. The prototype will be tested under real environment conditions to verify the results.
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