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- W2013154562 abstract "An analysis was made and a correlation developed to determine the reduction in heat transfer caused by entrained inert gas in sodium-cooled liquid metal systems. A 1% void fraction (1.62% volumetric flow rate of inert gas) is calculated to reduce the heat transfer coefficient by ≈4% in a typical LMFBR. This reduction will not occur over the entire reactor, but only near the inlet of the radial blanket. It was concluded that a reduction in heat transfer in a system having a low oxygen concentration (<5 ppm) occurs only if the heat transfer surface is unwetted or only partially wetted and entrained gas is present. However, if the surface temperature is greater than some 530°C (1000°F), if the Reynolds number is greater than approximately 105, and if the operating time is longer than that required for complete wetting at the reference temperature, no reduction in heat transfer is expected. The cause of the reduction in heat transfer is postulated to be a reduction in the thermal conductivity of a two-phase sodium-gas layer near the heated surface. It is proposed to calculate the thermal conductivity reduction using the average inert gas void fraction and a sintered-metal model." @default.
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- W2013154562 date "1979-03-01" @default.
- W2013154562 modified "2023-10-16" @default.
- W2013154562 title "Heat transfer effect of entrained gas in liquid sodium systems" @default.
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- W2013154562 doi "https://doi.org/10.1016/0029-5493(79)90002-5" @default.
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