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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Experimental study of evaporative heat transfer in sintered powder structures at low superheat levels
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Experimental study of evaporative heat transfer in sintered powder structures at low superheat levels

机译:低过热度下粉末粉末结构中蒸发传热的实验研究

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Evaporation at the evaporator of a heat pipe plays an important role in its overall heat transfer performance, especially at low superheat levels. Used sintered powder structures as wicks, this study investigated the correlations between superheat levels and heat fluxes. The parameters included powder sizes of 45 lm, 75 lm, 150 lm, and powder shapes of spherical, dendritic. A two-part measurement in this study consisted of effective thermal conductivity and evaporative heat transfer. For the experiment of evaporative heat transfer, an apparatus consisting of a thermal guard test chamber, a direct sintering design, a pressure control loop, and a data acquisition system was used to measure heat fluxes and corresponding superheat levels. The effective thermal conductivity measurement showed that smaller powder sizes achieved higher effective thermal conductivities for both powder shapes. Spherical powder structures achieved twice the effective thermal conductivity of dendritic powder ones for each powder size. Furthermore, the evaporative heat transfer measurement showed that the heat fluxes increased proportionally with the superheat between 2 and 6 K. At the same superheat level, structures of smaller powder size and dendritic powder shape achieved higher heat fluxes. In conclusion, the effect of thin-film evaporation may be the primary factor affecting evaporative heat transfer among these structural parameters.
机译:热管蒸发器中的蒸发在其整体传热性能中起着重要作用,尤其是在过热度较低的情况下。使用烧结粉末结构作为灯芯,本研究调查了过热度和热通量之间的相关性。参数包括45 lm,75 lm,150 lm的粉末尺寸以及球形,树枝状的粉末形状。本研究分为两部分,包括有效的热导率和蒸发热传递。为了进行蒸发传热实验,使用了由热保护测试室,直接烧结设计,压力控制回路和数据采集系统组成的设备来测量热通量和相应的过热度。有效的热导率测量结果表明,对于两种粉末形状,较小的粉末尺寸均可获得较高的有效热导率。对于每种粉末尺寸,球形粉末结构的有效导热率是树枝状粉末的两倍。此外,蒸发传热测量表明,热通量在2至6 K之间随过热度成比例增加。在相同的过热度下,较小粉末尺寸和树枝状粉末形状的结构获得较高的热通量。总之,在这些结构参数中,薄膜蒸发的影响可能是影响蒸发传热的主要因素。

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