New Approach in the Energy Analysis of an NH3-NaSCN Single Effect Absorption Machine (SEAM) with a Counter-Current Coaxial Tubes Internal Heat Exchanger (3CT-IHE)

O. S. Mayi, J. Njock, M. Ndamé
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Abstract

Energy analysis provides the ability to assess performance and determine the size of equipment in a system. However, precisely integrating the thermal behavior of the component equipment makes it possible to better assess the performance of the system. This work highlights the influence of the thermal behavior of a 3CT-IHE on the performance and size of the equipment of SEAM with NH3-NaSCN as a working fluid. Based on equations of conservation balances of mass, species and energy, the energy analysis made showed that depending on the magnitude of the heat flows of the weak and strong solutions involved in the heat exchange at the level of the 3CT-IHE, there are different temperature ranges for which the weak solution or the strong solution governs the heat transfer, thus giving rise to the notions of “thermal heating efficiency” and “thermal cooling efficiency” respectively. The results obtained were compared with those of Sun. This new approach has demonstrated better performance of the SEAM for the same operating conditions. It has also been shown that it is possible to increase the temperature of the generator above 90 °C without resorting to another working fluid and that in the case of subjecting NH3-NaSCN to supercritical conditions in temperature at the generator; it is possible to obtain a machine COP greater than 1 and an even smaller pump size.
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逆流同轴管内换热器NH3-NaSCN单效应吸收机(SEAM)能量分析的新方法
能源分析提供了评估性能和确定系统中设备尺寸的能力。然而,精确地整合组件设备的热行为可以更好地评估系统的性能。研究了以NH3-NaSCN为工作流体的3CT-IHE的热行为对SEAM设备性能和尺寸的影响。根据质量守恒平衡方程、物质守恒平衡方程和能量守恒平衡方程,能量分析表明,在3CT-IHE水平上,根据参与热交换的弱溶液和强溶液的热流大小,存在着弱溶液或强溶液控制传热的不同温度范围,从而分别产生了“热热效率”和“热冷效率”的概念。所得结果与Sun的结果进行了比较。这种新方法证明了SEAM在相同的操作条件下具有更好的性能。还表明,在不使用另一种工作流体的情况下,有可能将发生器的温度提高到90℃以上,并且在使NH3-NaSCN处于发生器温度的超临界条件下;有可能获得大于1的机器COP和更小的泵尺寸。
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