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A study on the rotary steam engine for distributed generation in small size power plants

机译:小型发电厂分布式发电用旋转蒸汽机的研究

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The widespread use of the renewable energies requires compulsorily the development of new technological solutions for the efficient employment of these resources, such as small size, cogenerative power plants.A small volumetric steam engine may be considered an interesting device for an efficient and flexible use the heat generated by biomasses combustion or solar thermal collectors. In effects, this kind of engine may be operated with different kind of fluids, is quite insensitive to high degrees of humidity at the end of the expansion and is able to manage small volumetric flow rates with no losses in conversion efficiency. This paper shows the development of a rotary steam engine derived from a Wankel internal combustion engine. This engine was taken into account for this use due to its low bulk, vibration and noise running. Moreover, its use as an external combustion engine overrides its typical disadvantages that mainly belong to the combustion phase.The numerical modeling and the experimental tests using compressed air in a first prototype are shown in this paper. The results of the experiments allowed the validation of the model developed and this was employed to carry out a first optimization of the engine by means of the increase of the discharge coefficient of the exhaust valves.
机译:可再生能源的广泛使用要求为有效利用这些资源而强制开发新的技术解决方案,例如小型,热电联产。小型容积式蒸汽机可能被认为是一种有效且灵活使用的有趣设备。由生物质燃烧或太阳能集热器产生的热量。实际上,这种发动机可以用不同种类的流体运行,在膨胀结束时对高湿度非常不敏感,并且能够管理小体积流量,而不会降低转换效率。本文显示了衍生自Wankel内燃机的旋转蒸汽发动机的发展。由于其体积小,振动和噪音小,因此考虑将这种发动机用于这种用途。此外,将其用作内燃机克服了其主要属于燃烧阶段的典型缺点。本文展示了在第一个原型中使用压缩空气的数值模型和实验测试。实验结果允许验证所开发的模型,并通过增加排气门的排气系数将其用于发动机的首次优化。

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