首页> 外文会议>10th International Conference on Nuclear Engineering, Vol.3, Apr 14-18, 2002, Arlington, Virginia >HORIZONTAL STEAM GENERATOR THERMAL-HYDRAULICS AT VARIOUS STEADY-STATE POWER LEVELS
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HORIZONTAL STEAM GENERATOR THERMAL-HYDRAULICS AT VARIOUS STEADY-STATE POWER LEVELS

机译:各种稳态功率水平下的水平蒸汽发生器热工

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Three-dimensional computer simulation and analyses of the horizontal steam generator thermal-hydraulics of the WWER 1000 nuclear power plant have been performed for 50% and 75% partial loads, 100% nominal load and 110% over-load. Presented results show water and steam mass flow rate vectors, steam void fraction spatial distribution, recirculation zones, swell level position, water mass inventory on the shell side, and other important thermal-hydraulic parameters. The simulations have been performed with the computer code 3D ANA, based on the "two-fluid" model approach. Steam-water interface transport processes, as well as tube bundle flow resistance, energy transfer, and steam generation within tube bundles are modelled with "closure laws". Applied approach implies non-equilibrium thermal and flow conditions. The model is solved by the control volume procedure, which has been extended in order to take into account the 3D flow of liquid and gas phase. The methodology is validated by comparing numerical and experimental results of real steam generator operational conditions at various power levels of the WWER Novovoronezh, Unit 5. One-dimensional model of the horizontal steam generator has been built with the RELAP 5 standard code on the basis of the multidimensional two-phase flow structure obtained with the 3D ANA code. RELAP 5 and 3D ANA code results are compared, showing acceptable agreement.
机译:WWER 1000核电站水平蒸汽发生器热工水力的三维计算机仿真和分析已针对50%和75%的部分负荷,100%的额定负荷和110%的过载进行了分析。给出的结果显示了水和蒸汽的质量流量矢量,蒸汽空隙率的空间分布,再循环区域,膨胀水平位置,壳侧的水量库存以及其他重要的热工参数。基于“双流体”模型方法,已使用计算机代码3D ANA执行了仿真。蒸汽-水界面的运输过程,以及管束的流动阻力,能量传递和管束内的蒸汽生成均采用“封闭定律”进行建模。应用的方法意味着非平衡的热和流动条件。该模型通过控制体积过程解决,该过程已进行了扩展,以考虑液相和气相的3D流动。该方法通过比较WWER Novovoronezh,第5号机组各种功率水平下实际蒸汽发生器运行条件的数值和实验结果进行了验证,该卧式蒸汽发生器的一维模型是根据RELAP 5标准代码建立的。使用3D ANA代码获得的多维两相流结构。比较了RELAP 5和3D ANA代码的结果,表明可以接受。

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