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香港全年免费资料大全
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米沙

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米沙,男,俄罗斯族,中共党员,博士,副教授

自治区天池英才青年博士


教育经历

2008-2012 中南大学 本科

2013-2016 中南大学 硕士

2017-2021 中南大学 博士


工作经历

20217-20246 香港全年免费资料大全 讲师

20247-至今 香港全年免费资料大全 副教授


讲授课程

1. 传热学

2. 热工基础

3. 新能源科学与工程导论

4. 计算流体力学

5. 流动与数值传热计算


研究方向

1.热质传递与系统节能

2.多相流理论与分离技术

3.计算流体力学与传热学

4.氢能与燃料电池关键技术研究


科研项目

1           冻干过程热质传递对超微粉体颗粒形成及影响机理研究,自治区科技厅自然科学基金面上项目,2023.01-2025.12

2           涡发生器诱导旋流强化非牛顿流相变储能材料热质传递机理研究,克拉玛依市-创新人才专项,2024.02-2025.11

3           波纹管强化相变浆体热质传递机理及多目标优化研究,克校区基金-引进人才项目,2023.01-2025.01

4           国网博尔塔拉供电公司基于双碳形势下电网支撑能力和空间布局技术服务,横向非财政-技术服务,2024.01-2024.12.

5           锂电池高精度状态估计模型及故障特性分析,横向非财政-技术服务,2024.01-2024.12.

6           多场耦合作用下旋风分离器升气管外壁动态结焦机理,自治区科技厅自然科学基金,2022.01-2024.12


代表性论文

[1]   Mi Sha, Huang Jinxia, Cai Lingling*, Xu Chao. Multi-objective optimization of heat transfer of ice slurry in corrugated tubes using response surface methodology method and genetic algorithm [J]. International Journal of Heat and Mass Transfer, 2024, 220, 124984.

[2]   Mi Sha, Xu Feiyan, Cai Lingling*, Xu Chao. Study on convective melting heat transfer of a solid-liquid phase change slurry in U-shaped curved tubes [J]. International Communications in Heat and Mass Transfer, 2024, 154, 107377.

[3]   Mi Sha, Liu Jing, Cai Lingling*, Xu Chao. Multi-objective optimization of two-phase ice slurry flow and heat transfer characteristics in helically coiled tubes with RSM and NSGA-II [J]. International Journal of Thermal Sciences, 2024, 199, 108942.

[4]   Mi Sha, Geng Sasha, Cai Lingling*, Xu Chao. Investigation on the thermal-fluidic characteristics of ice slurry in sinusoidal corrugated plate heat exchangers [J]. Case Studies in Thermal Engineering, 2024, 55, 104176.

[5]   Mi Sha, Geng Sasha, Cai Lingling*, Xu Chao. Investigation on the flow characteristics of a phase change material slurry in horizontal and U-shaped tubes based on CFD-PBM [J]. Chemical Engineering Research and Design, 2024, 201, 409-424.

[6]   Mi Sha, Cai Lingling*, Huang Jinxia. Experimental investigation on the particle size distribution characteristics of ice slurry in double‑tube heat exchanger [J]. Heat and Mass Transfer, 2023, 59, 2231-2240.

[7]   Mi Sha, Cai Lingling*, Luo Chun. Analysis on flow resistance of two-phase ice slurry in pulsating flow [J]. Chemical Engineering Research and Design, 2022, 186: 486-496.

[8]   Mi Sha, Cai Lingling, Ma Kebo, Liu Zhiqiang. Investigation on flow and heat transfer characteristics of ice slurry without additives in a plate heat exchanger [J]. International Journal of Heat and Mass Transfer, 2018, 127, 11-20.

[9]   Mi Sha, Liu Zhiqiang, Luo Chun, Cai Lingling, et al. A review on preparing new energy ultrafine powder materials by freeze-drying [J]. Drying Technology, 2020, 38(12): 1544-1564.

[10] Cai Lingling, Mi Sha*, Luo Chun. Study on enhanced heat transfer of a phase change material slurry in transverse corrugated tubes [J]. Applied Thermal Engineering, 2023, 226, 120293.

[11] Cai Lingling, Mi Sha*, Luo Chun, Liu Zhiqiang. Numerical investigation on heat and mass transfer characteristics of ice slurry in pulsating flow [J]. International Journal of Heat and Mass Transfer, 2022, 189, 122722.

[12] Cai Lingling, Mi Sha*, Luo Chun, Liu Zhiqiang. Numerical investigation of hydraulic and heat transfer characteristics of two-phase ice slurry in helically coiled tubes [J]. Energy and Buildings, 2022, 256, 111773.

[13] Chun Luo, Sha Mi, Naijun Zhou, Zhiqiang Liu, Lingling Cai. Modelling the primary drying stage of the spray freeze drying process based on the non-equilibrium formulation. International Journal of Heat and Mass Transfer, 2022, 188, 122659.

[14] Cai Lingling, Liu Zhiqiang, Mi Sha, Luo Chun, Ma Kebo, Yang Sheng. Investigation on flow characteristics of ice slurry in horizontal 90° elbow pipe by a CFD-PBM coupled model. Advanced Powder Technology, 2019, 30(10): 2299-2310.

[15] 蔡玲玲, 米沙*, 刘志强. 冰浆流动过程中冰晶粒径演化规律的实验研究 [J]. 制冷学报, 2023, 44(5): 131-138.

[16] 蔡玲玲, 米沙, 刘志强. 过冷器表面冰层分离模型研究[J]. 工程热物理学报, 2019, 40(05): 1160-1168.

[17] 蔡玲玲, 米沙, 刘志强.管内脉动层流动力学特性研究[J].大连理工大学学报, 2018, 58(05): 464-470.


联系方式

E-mail[email protected]

办公电话:0990-6633320