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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Numerical study of flow and heat transfer characteristics of microalgae slurry in a solar-driven hydrothermal pretreatment system
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Numerical study of flow and heat transfer characteristics of microalgae slurry in a solar-driven hydrothermal pretreatment system

机译:太阳能驱动的水热预处理系统中微藻浆料流动和传热特性的数值研究

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摘要

Solar-driven hydrothermal pretreatment is an efficient approach for the pretreatment of microalgae biomass for biofuel production. The flow and heat transfer characteristics of microalgae slurries in a solar-driven hydrothermal pretreatment system, which are not clear yet due to the complex thermo-physical properties and non-uniform heat flux, significantly affect the performance of hydrothermal pretreatment. Herein, a flow and heat transfer model of microalgae slurries with non-uniform heat flux was established, and the effects of direct normal irradiation and volume fraction of microalgae biomass on the flow and heat transfer characteristics were investigated. The results showed that secondary flow occurred on the cross section of absorber tube. With the increasing direct normal irradiation, the local Nu firstly decreased and following increased on axial, while the average wall shear stress firstly increased and then decreased on axial. With the increasing volume fraction, the local Nu decreased, while the wall shear stress increased. The average viscosity of microalgae slurry near wall had a significant effect on local Nu and average wall shear stress. The understanding of flow and heat transfer characteristics of microalgae slurry in non-uniform heat flux will be beneficial to the design and optimization of the solar-driven hydrothermal pretreatment system.
机译:太阳能驱动的水热预处理是一种有效的方法,用于生物燃料生产的微藻生物质的预处理。太阳能驱动的水热预处理系统中微藻浆料的流动和传热特性,尚不清楚,尚未透明,尚未透明,由于复杂的热物理性质和不均匀的热通量,显着影响了水热预处理的性能。这里,研究了具有非均匀热通量的微藻浆料的流动和传热模型,研究了微藻生物质对流动和传热特性的直接正常辐射和体积分数的影响。结果表明,吸收管的横截面发生了二次流动。随着直接正常照射的增加,局部NU首先下降并在轴向上增加,而平均壁剪切应力首先增加,然后在轴向上降低。随着体积分数的增加,局部元减少,而墙面剪切应力增加。壁附近的微藻浆料的平均粘度对局部NU和平均壁剪应力具有显着影响。对非均匀热通量微藻浆料的流动和传热特性的理解是有利于太阳能驱动的水热预处理系统的设计和优化。

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