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Theoretical study of direct steam generation in two parallel pipes

机译:两根平行管道中直接产生蒸汽的理论研究

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In this work it was simulated the direct steam generation (DSG) in a system of two horizontal parallel pipes by using the commercial simulator RELAP. The pipes were 500 m long, internal diameter 5 cm, and wall thickness of 10 mm. Pipes were fed with sub-cooled water and the output can be: 1) hot water, 2) a steam-water mixture, 3) overheated steam. The flow was at steady state and pipes were undergoing to uniform and concentrated solar heating. Moreover, the effect of symmetric and asymmetric heating, on the DSG process, was studied. RELAP code allowed predicts flow distribution and inlet pressure. Predictions of inlet pressure and flow distribution were compared against predictions from literature. The pressure drop calculated by RELAP presented good fitting with field data from the Plataforma Solar de Almeria (PSA). The study of flow distribution showed that RELAP is able to get the most stable solutions. It was found that for symmetric solar heating, asymmetric flow distribution solutions may be present in the system. Moreover, for asymmetric heating the mass flow rate is larger in the pipe with smaller heating. This is an unfavorable condition under a practical point of view. The concentrated solar heating does not affect in a considerable way the flow distribution in relation to the uniform solar heating; however, it could affect the flow pattern transition along the pipe (s).
机译:在这项工作中,使用商用模拟器RELAP在两个水平平行管道的系统中模拟了直接蒸汽产生(DSG)。管道长500 m,内径5 cm,壁厚10 mm。给管道供应过冷水,其输出可以是:1)热水,2)蒸汽-水混合物,3)过热的蒸汽。流量处于稳定状态,并且管道受到均匀且集中的太阳能加热。此外,还研究了对称加热和不对称加热对DSG工艺的影响。允许使用RELAP代码来预测流量分布和入口压力。将入口压力和流量分布的预测与文献中的预测进行了比较。 RELAP计算得出的压降与来自阿尔塔里亚太阳报(PSA)的现场数据非常吻合。流量分布的研究表明,RELAP能够获得最稳定的解决方案。已经发现,对于对称的太阳能加热,系统中可能存在不对称的流量分配解决方案。此外,对于不对称加热,在加热较小的情况下,管道中的质量流量较大。从实践的角度来看,这是不利的条件。相对于均匀的太阳能加热,集中的太阳能加热不会显着影响流量分配。但是,它可能会影响沿管道的流型转换。

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