首页> 外文会议>International conference on nuclear engineering >TRANSIENT CRITICAL HEAT FLUXES OF SUBCOOLED WATER FLOW BOILING IN A SUS304-CIRCULAR TUBE CAUSED BY A RAPID DECREASE IN VELOCITY FROM NON-BOILING REGIME
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TRANSIENT CRITICAL HEAT FLUXES OF SUBCOOLED WATER FLOW BOILING IN A SUS304-CIRCULAR TUBE CAUSED BY A RAPID DECREASE IN VELOCITY FROM NON-BOILING REGIME

机译:非沸腾风速迅速降低导致的SUS304圆管内过冷水沸腾的瞬态临界热通量

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The flow transient critical heat fluxes (FT-CHFs, q_(cr,sub)) in a SUS304-circular tube caused by a rapid decrease in velocity from non-boiling regime are systematically measured for initial flow velocities (U_0=7.057 to 13.635 m/s for conditions of U_0=6.9, 9.9 and 13.3 m/s), initial heat fluxes (q_0=15.59 to 17.34 MW/m~2), inlet liquid temperatures (T_(in)=290.12 to 308.51 K), outlet pressures (P_(out)=698.38 to 1288.97 kPa) and decelerations caused by a rapid decrease in velocity (u(t)=u_0+αt, α=-7.357 to -0.326 m/s~2) by the experimental water loop comprised of a multistage canned-type circulation pump controlled by an inverter. The SUS304-circular tubes of inner diameter (d=6 mm), heated length (1=59.5 to 59.7 mm), effective length (L_(eff)=48.7 to 50.2 mm), L/d (=9.92 to 9.95), L_(eff)/d (=8.12 to 8.37) and wall thickness (δ=0.5 mm) with average surface roughness (Ra=3.89 μm) are used in this work. The flow transient CHFs for SUS304-circular tube are compared with authors' steady-state CHF data for the empty VERTICAL and HORIZONTAL SUS304-circular tubes and the values calculated by authors' steady-state CHF correlations against outlet and inlet subcoolings for the empty circular tube. The influences of initial flow velocity (U_0), initial heat flux (q_0) and deceleration caused by a rapid decrease in velocity (α) on the flow transient CHF are investigated into details and the widely and precisely predictable correlations of CHF and flow velocity at the flow transient CHF for the circular tube is given based on the experimental data. The correlations can describe the flow velocity and the CHFs at the flow transient CHFs for SUS304-circular tube obtained in this work within ±20 % difference.
机译:针对初始流速(U_0 = 7.057至13.635 m),系统地测量了由非沸腾状态引起的速度快速下降导致的SUS304圆管中的流动瞬态临界热通量(FT-CHFs,q_(cr,sub))。对于U_0 = 6.9、9.9和13.3 m / s的条件/ s),初始热通量(q_0 = 15.59至17.34 MW / m〜2),入口液体温度(T_(in)= 290.12至308.51 K),出口压力(P_(out)= 698.38至1288.97 kPa)和由速度快速降低引起的减速度(u(t)= u_0 +αt,α= -7.357至-0.326 m / s〜2)由以下组成:由变频器控制的多级罐装式循环泵。 SUS304圆形管,内径(d = 6毫米),加热长度(1 = 59.5至59.7毫米),有效长度(L_(eff)= 48.7至50.2毫米),L / d(= 9.92至9.95),在这项工作中,使用L_(eff)/ d(= 8.12至8.37)和具有平均表面粗糙度(Ra = 3.89μm)的壁厚(δ= 0.5 mm)。将SUS304圆管的流动瞬态CHF与作者的空VERTICAL和水平SUS304圆管的稳态CHF数据进行比较,并将作者的稳态CHF相关性与空圆的出口和入口过冷的相关性计算得出的值进行比较管子。详细研究了初始流速(U_0),初始热通量(q_0)和速度(α)的快速降低引起的减速度对瞬态CHF的影响以及CHF与流速在以下条件下的广泛且可精确预测的相关性根据实验数据给出了圆管的流动瞬态CHF。相关关系可以描述在这项工作中获得的SUS304圆管的流速和瞬态CHF时的CHF在相差±20%之内。

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