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首页> 外文期刊>International Journal of Multiphase Flow >Experimental and numerical analysis of steam jet pump
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Experimental and numerical analysis of steam jet pump

机译:蒸汽喷射泵的实验与数值分析

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摘要

Steam jet pump is the best choice for pumping radioactive and hazardous liquids because it has no moving parts and so no maintenance. However, the physics involved is highly complicated because of the mass, momentum and energy transfer between the phases involved. In this study the characteristics of SJP are studied both experimentally and numerically to pump water using saturated steam. In the experimental study the static pressure, temperature along the length of the steam jet pump and the steam and water flow rates are recorded. The three dimensional numerical study is carried out using the Eulerian two-phase flow model of Fluent 6.3 software and the direct-contact condensation model developed previously. The experimental and CFD results, of axial static pressure and temperature, match closely with each other. The mass ratio and suction lift are calculated from experimental data and it is observed that the mass ratio varies from 10 to 62 and the maximum value of suction lift is 2.12. m under the conditions of the experiment.
机译:蒸汽喷射泵没有活动部件,因此无需维护,因此是泵送放射性和危险液体的最佳选择。然而,由于所涉及的相之间的质量,动量和能量转移,所涉及的物理学非常复杂。在这项研究中,通过实验和数值研究了SJP的特性,以利用饱和蒸汽抽水。在实验研究中,记录了沿蒸汽喷射泵长度方向的静压,温度以及蒸汽和水的流速。使用Fluent 6.3软件的欧拉两相流模型和先前开发的直接接触冷凝模型进行了三维数值研究。轴向静压力和温度的实验结果和CFD结果彼此接近。由实验数据算出质量比和吸力升力,观察到该质量比在10〜62之间变化,吸力升力的最大值为2.12。 m在实验条件下。

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