首页> 外文期刊>Journal of Heat Transfer >Transient Critical Heat Fluxes of Subcooled Water Flow Boiling in a Short Vertical Tube Caused by Exponentially Increasing Heat Inputs
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Transient Critical Heat Fluxes of Subcooled Water Flow Boiling in a Short Vertical Tube Caused by Exponentially Increasing Heat Inputs

机译:由于热量输入呈指数增加而导致的短垂直管中过冷水沸腾的瞬态临界热通量

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The transient critical heat fluxes (CHFs) of the subcooled water flow boiling for the flow velocities (u=4.0-13.3 m/s), the inlet subcoolings (△T_(sub,in)=68.08-161.12 K), the inlet pressures (P_(in) =718.31-1314.62 kPa), the dissolved oxygen concentrations (O_2=2.94 ppm to the saturated one), and the exponentially increasing heat inputs (Q_0 exp(t/τ), τ= 16.82 ms to 15.52 s) are systematically measured with an experimental water loop comprised of a pressurizer. The SUS304 tubes of the inner diameters (d=3 mm, 6 mm, 9 mm, and 12 mm), heated lengths (L =33.15-132.9 mm), L/d=5.48-11.08, and wall thickness (S =0.3 mm and 0.5 mm) with the rough finished inner surface (surface roughness, Ra=3.18 μm) are used in this work. The transient CHF data (q_(cr,sub)=6.91-60 MW/m~2) are compared with the values calculated by the steady state CHF correlations against inlet and outlet subcoolings. The transient CHF correlations against inlet and outlet subcoolings are derived based on the experimental data. The dominant mechanisms of the subcooled flow boiling CHF for a high heating rate are discussed.
机译:流速(u = 4.0-13.3 m / s),入口过冷度(△T_(sub,in)= 68.08-161.12 K),入口压力的过冷水沸腾的瞬态临界热通量(CHFs) (P_(in)= 718.31-1314.62 kPa),溶解氧浓度(O_2 = 2.94 ppm /饱和氧)和指数增加的热量输入(Q_0 exp(t /τ),τ= 16.82 ms至15.52 s)使用由增压器组成的实验水回路系统地测量水的含量。内径(d = 3 mm,6 mm,9 mm和12 mm),加热长度(L = 33.15-132.9 mm),L / d = 5.48-11.08和壁厚(S = 0.3)的SUS304管在此工作中,使用的是内表面粗糙的表面(表面粗糙度,Ra = 3.18μm)(mm和0.5 mm)。将瞬态CHF数据(q_(cr,sub)= 6.91-60 MW / m〜2)与稳态CHF相关性针对进口和出口过冷的计算值进行比较。基于实验数据得出了针对入口和出口过冷的瞬态CHF相关性。讨论了过高沸腾CHF过冷流的主要机理。

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