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INVESTIGATION ON SOLAR-POWERED TURBINES USING REFRIGERANT R-134A

机译:使用制冷剂R-134A的太阳能涡轮机的研究

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Renewable energy has become a promising solution to substitute fossil fuels in power generation. In particular, the use of solar energy is stretched to a wide range of applications, e.g. photovoltaic cells, solar water heaters, solar space heating, solar thermal plants. However, the combination of solar energy with the Rankine cycle is limited to few applications only. In this context, this study aims in investigating the practicality of employing solar heaters to operate a Rankine cycle for small scale power generation. The working fluid in this study is refrigerant R-134a. Sizing and calculations of the various components of the system are carried out based on a net output power of 1 kW. In comparison with available electricity sources in Lebanon, it was found that the proposed system is currently more expensive than public electricity. However, it can compete with private generators that currently fill the gap in electricity shortage. The main advantage herein lies in the friendly environmental load due to the absence of combustion gases.
机译:可再生能源已成为在发电中替代化石燃料的有前途的解决方案。特别地,太阳能的使用被扩展到广泛的应用领域,例如太阳能。光伏电池,太阳能热水器,太阳能空间供暖,太阳能热力发电厂。然而,太阳能与朗肯循环的结合仅限于少数应用。在这种情况下,本研究旨在调查采用太阳能加热器操作朗肯循环进行小规模发电的实用性。本研究中的工作流体是制冷剂R-134a。系统的各个组件的大小和计算均基于1 kW的净输出功率进行。与黎巴嫩现有的电力来源相比,发现拟议的系统目前比公共电力更昂贵。但是,它可以与目前填补电力短缺缺口的私人发电机竞争。本文的主要优点在于由于不存在燃烧气体而导致的友好的环境负荷。

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