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BARM: Bi-Angular Rotation Machine as an External Combustion Machine

机译:BARM:双角旋转机作为外壳机

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Schapiro (2011) introduced the BARM as an internal combustion machine, and Schapiro (2012) introduced the BARM as an external combustion machine. This article introduces the thermodynamics of an external combustion BARM in the physical approximation (Chap. 3), designed specifically for exploiting thermosolar energy. The economic and political aspects are discussed in Clause 4.3. A comparison between BARM and Stirling machines is the primary focus of this article. The efficiency of both machines as thermosolar energy exploiters is compared under two scenarios: in the first, the Stirling machine has no heat recuperator and the BARM no heat exchanger. In the second scenario, the Stirling machine is equipped with a heat recuperator and the BARM machine with a heat exchanger. That efficiency is dependent on the power flow through the machine has been taken into consideration. The thermodynamic description, that is the modelling of these processes, is a physical approximation valid not only for BARMs, but for all rotational volume displacement machines in similar application, for instance, in Pyatov (2010) and Pyatov and Schapiro (2010).
机译:Schapiro(2011)将该禁区作为内燃机推出,Schapiro(2012)将该禁区引入外壳。本文介绍了物理近似(Chap.3)的外部燃烧BARm的热力学,专门用于利用热辐射能量。第4.3条讨论了经济和政治方面。 BARM和STIRLING机之间的比较是本文的主要重点。两种机器的效率在两种情况下比较:首先,斯特林机没有热恢复器和禁区没有热交换器。在第二种情况下,斯特林机械配有热量恢复器和具有热交换器的绒球机。这种效率取决于已经考虑了通过机器的功率流动。热力学描述,即这些过程的建模,是物理近似,不仅适用于BARM,而是对于类似应用中的所有旋转体积位移机,例如,在Pyatov(2010)和Pyatov和Schapiro(2010)中。

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