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Measurements of Flow Loss in Helical-Type Seawater MHD Power Generator

机译:螺旋型海水MHD发电机流量损失的测量

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To construct a calculation model of flow loss in a helical-type seawater magnetohydrodynamics (MHD) power generator, it is important to elucidate the effects of the rotation number, the pitch length and the inner diameter of the helical wall on the pressure distribution and flow loss. The pressure distribution and flow loss in experimental devices constructed to model generators with a helical wall made of polyvinyl chloride with an outer diameter of 100 mm, inner diameters of 10, 20 and 30 mm, pitch lengths of 30, 37.5 and 45 mm and rotation numbers of 3, 5 and 7 were measured systematically. The effect of the rotation number on flow loss was small at flow rates of 20 m /h or less and relatively large at flow rates of 30 and 40 m~3/h. The effect of the pitch length was small at flow rates of 20 m~3/h or less and relatively large at flow rate of 28 m~3/h. The effect of the inner diameter was small at flow rates of 20 m~3/h or less and relatively large at flow rates of 30 and 34 m~3/h. The pressure drops in the vicinity of the entrance and/or the exit were the main causes of the disagreement in the flow loss between the experimental and computed values. The equations for the coefficient of entrance flow loss and exit flow loss were modified on the basis of the experimental data.
机译:为了构建螺旋型海水磁流体动力学(MHD)发电机中流失的计算模型,重要的是要阐明转数,螺距长度和螺旋壁的内径对压力分布和流量的影响。失利。实验装置中的压力分布和流量损失,该装置用于模拟发电机,该发电机具有由聚氯乙烯制成的螺旋壁,其外径为100毫米,内径为10、20和30毫米,节距为30、37.5和45毫米,并且旋转系统地测量了3、5和7的数量。转速对流量损失的影响在流量为20 m / h以下时较小,而在流量为30和40 m〜3 / h时相对较大。螺距长度的影响在流量为20 m〜3 / h以下时较小,而在流量为28 m〜3 / h时较大。内径的影响在流量为20 m〜3 / h以下时较小,而在流量为30和34 m〜3 / h时相对较大。入口和/或出口附近的压降是导致实验值和计算值之间流量损失不一致的主要原因。在实验数据的基础上,修改了进水损失系数和出水损失系数方程。

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