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Small capacity absorption systems for cooling and power with a scroll expander and ammonia based working fluids

机译:小容量吸收系统,用于涡旋膨胀机和基于氨的工作流体进行冷却和供电

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Up to now, the use of ammonia/water absorption cycles has been mainly limited to the production of refrigeration or air conditioning but due to the relatively high generator pressure some authors have proposed the integration in parallel of an expander to produce cooling and power simultaneously. This feature could provide many benefits in the future such as the use of solar thermal energy to partially cover the heating, cooling and electricity demand of a building. In the other hand the life cycle cost of the absorption system is improved because of the increase in the number of running hours in periods in which there is no demand for cooling but the demand for electrical power is still important. This paper shows a new combined absorption system using a scroll expander and three different working fluids using ammonia as refrigerant: ammonia/water, ammonia/lithium nitrate and ammonia/sodium thiocyanate. The scroll expander performance maps were obtained experimentally and modeled to predict the power production, rotational speed and exhaust temperature of the expander and included in the complete absorption cycle model build using Engineering Equation Solver (EES) Software. This system produces different amounts of cooling and power at the desired power/cooling ratio to cover varying demand profiles. (C) 2014 Elsevier Ltd. All rights reserved.
机译:到目前为止,氨/水吸收循环的使用主要限于制冷或空调的生产,但是由于发电机压力较高,一些作者建议将膨胀机并联集成以同时产生冷却和动力。将来,此功能可能会带来许多好处,例如使用太阳能来部分满足建筑物的供暖,制冷和电力需求。另一方面,由于在不需要冷却但对电力的需求仍然很重要的时期内运行时间的增加,吸收系统的生命周期成本得以提高。本文展示了一种新的组合吸收系统,该系统使用涡旋膨胀机和三种不同的使用氨作为制冷剂的工作流体:氨/水,氨/硝酸锂和氨/硫氰酸钠。通过实验获得涡旋式膨胀机性能图,并对其进行建模以预测膨胀机的发电量,转速和排气温度,并使用Engineering Equation Solver(EES)软件将其包括在完整的吸收循环模型中。该系统以所需的功率/冷却比产生不同数量的冷却和功率,以覆盖变化的需求曲线。 (C)2014 Elsevier Ltd.保留所有权利。

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