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Extension of the characteristic equation to absorption chillers with adiabatic absorbers

机译:将特征方程式扩展到带有绝热吸收器的吸收式冷却器

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摘要

Various researchers have developed models of conventional H2O–LiBr absorption machines with the aim of predicting their performance. In this paper, the methodology of characteristic equations developed by Hellmann et al. (1998) is applied. This model is able to represent the capacity of single effect absorption chillers and heat pumps by means of simple algebraic equations. An extended characteristic equation based on a characteristic temperature difference has been obtained, considering the facility features. As a result, it is concluded that for adiabatic absorbers a subcooling temperature must be specified. The effect of evaporator overflow has been characterized. Its influence on cooling capacity has been included in the extended characteristic equation. Taking into account the particular design and operation features, a good agreement between experimental performance data and those obtained through the extended characteristic equation has been achieved at off-design operation. This allows its use for simulation and control purposes.
机译:许多研究人员已经开发了常规H2O-LiBr吸收机的模型,以预测其性能。在本文中,由Hellmann等人开发的特征方程的方法。 (1998)被应用。该模型能够通过简单的代数方程式表示单效吸收式制冷机和热泵的容量。考虑到设备特征,获得了基于特征温度差的扩展特征方程。结果得出结论,对于绝热吸收器,必须指定过冷温度。蒸发器溢流的影响已被表征。它对冷却能力的影响已包含在扩展特性方程中。考虑到特定的设计和运行特征,在非设计运行时,实验性能数据与通过扩展特性方程获得的数据之间达成了良好的一致性。这允许将其用于仿真和控制目的。

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