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Development of experimental Nusselt number and friction factor correlations for condensation of R-1233zd(E) in plate heat exchangers

机译:基于换热器中R-1233ZD(e)凝结的实验露珠数和摩擦因子相关性的发展

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摘要

R-1233zd(E), a kind of HCFO refrigerants, has a negligible ODP and a GWP of 1-7, and it is classified as the ASHRAE classification A1 level, which means stable and safe to use in the refrigeration industry. In this study, condensation heat transfer and frictional pressure drop of R-1233zd(E) in three different plate heat exchangers, two brazed types (BPHE-30 and BPHE-60) and a shell-and-plate type (SPHE) are experimentally investigated. Condensation heat transfer coefficient and frictional pressure drop are estimated by varying heat flux from 1.5 kW/m~2 to 4.5 kW/m~2, saturation pressure from 200 kPa to 300 kPa, mass flux of refrigerant from 13.0 kg/m~2s to 26.7 kg/m~2s, and mean vapor quality between the inlet and outlet of heat exchanger from 0.25 to 0.9. It is confirmed that the condensation heat transfer coefficient increases with increasing heat flux, mass flux of refrigerant, and mean vapor quality while it decreases with increasing the saturation pressure of refrigerant. Frictional pressure drop increases with increasing the mass flux of refrigerant and mean vapor quality while it decreases with increasing the saturation pressure of refrigerant. On the other hand, the heat flux doesn't have significant effect on the frictional pressure drop. It was found that the BPHE has a higher Nusselt number and lower friction factor than the SPHE, so that the SPHE having excessively high friction factor against Nusselt number is not recommended as a condenser with R-1233zd(E). Finally, experimental correlations for Nusselt number and friction factor are developed with ±25% error range for the BPHE.
机译:R-1233ZD(e)是一种HCFO制冷剂,具有忽略不计的ODP和1-7的GWP,它被归类为ASHRAE分类A1水平,这意味着在制冷行业中使用稳定和安全。在该研究中,三种不同板热交换器中R-12333D(e)的缩合传热和摩擦压降,两种钎焊类型(Bphe-30和Bphe-60)和壳板类型(SPHE)是实验的调查。通过从1.5kW / m〜2至4.5kW / m〜2,饱和压力从200kpa至300kpa,从13.0kg / m〜2s的制冷剂的质量通量,饱和压力估计凝结传热系数和摩擦压降估计。 26.7 kg / m〜2s,热交换器的入口和出口之间的平均蒸汽质量为0.25至0.9。确认冷凝传热系数随着增长的热量,制冷剂的质量通量和平均蒸汽质量而增加,而随着制冷剂的饱和压力,它降低。随着制冷剂和平均蒸汽质量的质量通量增加,摩擦压降增加随着制冷剂的饱和压力而降低。另一方面,热通量对摩擦压降没有显着影响。结果发现,BPHE具有比SPHE更高的泡沫数和较低的摩擦系数,从而不建议将具有过高摩擦因子的SPHE作为具有R-1233ZD(E)的冷凝器。最后,开发了Nusselt数和摩擦系数的实验相关性,BPHE的误差范围为±25%。

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