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工作细菌——胃中的酸碱攻防战
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作者 曾森海 陈芳俊 +1 位作者 陈子涵 陈建成 《大学化学》 CAS 2021年第10期192-196,共5页
讲述了主人公小明感染幽门螺旋杆菌、检测幽门螺旋杆菌到治疗的全过程。介绍了胃壁细胞抵御胃酸伤害的方法,幽门螺旋杆菌在胃酸中的生存方式、检测手段以及治疗幽门螺旋杆菌感染的方法。
关键词 幽门螺旋杆菌 检测手段 治疗方法 化学原理
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CFD investigation of structural effects of internal gas intake on powder conveying performance in fuel supply systems for aerospace engines 被引量:3
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作者 Guanlong Ren Haijun Sun +6 位作者 fangjun chen Wen Shen Yunzhen Cai Yihua Xu Henrik Ström Bilainu Oboirien Qingang Xiong 《Particuology》 SCIE EI CAS CSCD 2024年第9期140-154,共15页
Optimal design of gas intake in powder fuel supply systems is crucial for performance of aerospace engines.There is little research on the impact of intake structure on powder conveying performance.Three novel interna... Optimal design of gas intake in powder fuel supply systems is crucial for performance of aerospace engines.There is little research on the impact of intake structure on powder conveying performance.Three novel internal intakes were proposed,which are spherical,cube-shaped,and dome-shaped.After validation,CFD simulations demonstrate that fluctuation of mass flow rate of powders in the dome-shaped intake is reduced by about 73.3%compared with the annular external one.Variation trends of phase velocities are similar for the spherical and cube-shaped intakes,while those are similar for the annular external and dome-shaped internal intakes.Fluctuation of area of gas zone for the annular external and spherical internal intakes is larger than that for the cube-shaped and dome-shaped internal intakes.Pressure and relative pressure drop in the fluidization chamber have a stable stage,and fluctuation of relative pressure drop is small when dome-shaped internal intake is used. 展开更多
关键词 Powder supply system Intake structure Dense gas-solid flow Two-fluid model Powder fluidization Pressure drop
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