结合已有的固态氧控技术,采用文丘里结构增加流经固态氧控装置的 LBE流量,采用球型氧化铅(PbO)固体颗粒作为氧源;根据已有计算模型,确定到达目标氧浓度上限值的边界条件。研究表明,LBE 系统耗氧速率与 LBE 系统内流速和温度正相关,本固态氧控装置能够根据 LBE 系统温度的升降变化而对应升降氧浓度上限值。
Combined with the existing solid oxygen control technology, the venturi structure is adopted to increase the LBE flowing through the solid oxygen control device, using spherical lead oxide (PbO) solid particles as oxygen source; According to the existing calculation model, determine the boundary conditions for reaching the upper limit of the target oxygen concentration. The research shows that the oxygen consumption rate of the LBE system is positively correlated with the flow rate and temperature in the LBE system. The solid state oxygen control device can raise or lower the upper limit of oxygen concentration according to the rise and fall of the LBE system temperature.