主要成果 | 张博然,男,1994年生,陕西西安人,2021年毕业于浙江大学,获水利工程博士学位,后在剑桥大学、新加坡南洋理工大学从事微流体研究。现主要从事计算流体力学与微流控技术相关研究工作,通过理论推导、数值仿真、试验测试相结合的研究模式对水力学管道系统瞬变流机理、微流体粘弹性微粒操控以及跨尺度超滤系统技术难题开展研究。共发表高水平论文40余篇,2024年获批江苏省省级人才计划。 代表性论著 Zhang B., Yang F., Wu W., Wan W., Zhao. W., Zhao Q., "Investigation of particle manipulation mechanism and size sorting strategy in a double-layered microchannel", Lab on a Chip, 2022. (Q1, IF: 6.97) Zhang B.*, Zhao W., Wang Z., Zhao Q., Wu W., "Assistance of inertial microfluidics in membrane-based microfiltration", Journal of Water Process Engineering, 2023. (Q1, IF: 7.01) Zhang B.*, Wan W., Wang Y., Ran Q., Chen X., Fang Y., Yuan S., Zhang H., "Dual-objective optimization strategy of self-adaptive transient pressure controller in water delivery engineering", Engineering Applications of Computational Fluid Mechanics, 2024. (Q1, IF: 6.10) Zhang B.*, Zhao W., Yuan D., Wang T., Wu W., "A novel microparticle size sorting technology based on sheath flow stable expansion regimes", Physics of Fluids, 2023. (Q1, IF: 4.98) Zhang B., Wu W., Zhao Q., Yan S., " Geometric Optimization of Double Layered Microchannel with Grooves Array for Enabling Nanoparticle Manipulation", Physics of Fluids, 2023. (Q1, IF: 4.98) Zhang B., Zou S., Wu W., Yang F., Mehmood K., Wan W., Zhao Q., "Mechanism and Effects of Cellular Creep in a Microfluidic Filter", ACS Journal of Physical Chemistry Letters, 2022. (Q1, IF: 6.475) Wu W., Suo Y., Zhao Q, Cai G., Liu Y., Jin W., Mu Y., Zhang B.*, "Inoculum size-insensitive susceptibility determination of urine sample based on in-situ measurement of inducible enzyme activity after 20 min of antibiotic exposure.", Analytica Chimica Acta, 2023. (Q1, IF: 6.2) Zhao W., Wu W., Dan Y., Zou S., Yang F., Zhao Q., Mehmood K., Zhang B.*, "Experimental Exploration on Stable Expansion Phenomenon of Sheath Flow in Viscous Microfluidics", Physics of Fluids, 2022. (Q1, IF: 4.98) Wan W., Wang Y., Chen X., Zhan H., Wang T.,Zhang B.*,"Investigation of Partially Expanded Surge Tank with Self-adaptive Auxiliary System Controlling Water Hammer in Pipelines", Engineering Science and Technology, an International Journal, 2023. (Q1, IF:5.155) Wu W., Goh S., Cai G., Feng S., Zhang B.*, "Digital metabolic activity assay enables fast assessment of 2D materials bactericidal efficiency.", Analytica Chimica Acta, 2023. (Q1, IF: 6.2)
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