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USE OF ZEOTROPIC BLENDS IN FLOODED REFRIGERATION LOOPS : CONSEQUENCES AND LIMITS

机译:冷冻循环中共沸混合物的使用:后果和局限性

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In response to phasing out of HCFCs and to phasing down of HFCs with high GWP, the chemistry industryproposes a large panel of low GWP blends of HFC or HFC-HFOs. These blends are tailored in order toensure a best compromise between themophysical properties, technical properties and safety properties. Thisresults in the proposition of a large list of blends, each of them having its own specific components andcomposition.One of the common characteristics of these tailored blends is their zeotropic behaviour. This particularitytends to prevent their utilization in industrial refrigeration where liquid vapour separators (MP, LP) are oftenused. But in regard to the number of candidates to replace pure HCFC (mainly R22) or high GWP HFCblends (mainly R507A and R404A), the problem of the use of zeotropic blends in these applications is to beaddressed.In this context, the present paper proposes to study the behaviour of zeotropic blends in flooded refrigerationloops. This behaviour is assessed by using Refprop software V8. The difference between calculation madewith taking into account the fractionation of the fluid and the calculation made without taking thisfractionation into account will be highlighted.A single stage flooded system is investigated. The impact of the temperature glide on the performances ofthis system will be assessed with fluids proposed for R22 replacement (for instance RS 45). Fluids withhigher glide will also be assessed (for instance, R407F) as well as the effect of the evaporating temperatureon the phenomenon.
机译:为了逐步淘汰具有高全球升温潜能值的HCFC和逐步淘汰HFC,化学工业提出了一大批低全球升温潜能值的HFC或HFC-HFO混合物。定制这些共混物以确保在物理性能,技术性能和安全性之间取得最佳折衷。因此,提出了许多混合物,每个混合物都有其自己的特定成分和组成。这些定制混合物的共同特征之一是其共沸行为。这种特殊性倾向于防止其在工业制冷中的应用,在工业制冷中,经常使用液体蒸汽分离器(MP,LP)。但是关于替代纯HCFC(主要是R22)或高GWP HFC混合物(主要是R507A和R404A)的候选材料的数量,需要解决在这些应用中使用共沸混合物的问题。研究共沸混合物在淹没式制冷回路中的行为。通过使用Refprop软件V8可以评估此​​行为。将重点介绍考虑流体分馏的计算与不考虑流体分馏的计算之间的差异。研究了单级驱油系统。将使用建议更换R22的流体(例如RS 45)评估温度滑移对该系统性能的影响。还将评估滑动度较高的流体(例如,R407F)以及蒸发温度对现象的影响。

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