程泽东  (副教授)

博士生导师 硕士生导师

电子邮箱:

所在单位:能源与动力工程学院

办公地点:兴庆校区能动学院北二楼8810室
西咸办公:创新港能动1号巨构敏行楼3093室

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代表性项目成果

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科研项目:

  • 超临界 CO2 太阳能热发电关键基础问题研究 - 高温吸热器工作原理及设计方法. 国家重点研发计划课题. 1514W/4992W
  • 工业废盐无害化处理及其作为储热材料再利用中的基础问题研究. 国家自然科学基金联合基金重点项目. 256W
  • 太阳能甲醇蒸汽重整制氢中空型双金属协同催化与多维调控机制研究. 国家自然科学基金面上项目.  49+14.5W
  • 线性聚光太阳能甲醇蒸汽重整制氢过程微观机理与调控方法研究. 国家自然科学基金面上项目. 63+11W
  • 太阳能利用中的能量传递与转换 - 太阳能能量传输、转换特性与调控方法. 国家自然科学基金重大项目课题. 150W/2005W
  • 太阳能塔式电站高效聚光集热传热机理及新型动力循环热物理基础问题研究. 国家自然科学基金重点项目. 395W
  • 线性菲涅尔式太阳能聚焦集热系统复杂聚光传热机理及综合性能研究. 国家自然科学基金青年项目. 25W
  • 高效规模化太阳能热发电的基础研究 - 吸热过程光-热耦合特性及复杂非稳态传热机理研究. 国家重点基础研究发展973计划课题. 618W
  • 1MWt 熔融盐蒸汽发生系统数值模拟研究. 国家高技术研究发展863计划子课题. 47.5+25W
  • 颗粒滤层内高温含尘烟气多相传输和流固作用机制. 国家重点研发计划子课题. 550W

期刊论文:

  • Experimental and numerical study on steady-state thermal performance of a kilowatt-scale chloride salt receiver prototype for the next-generation solar power tower. Energy Conversion and Management.
  • Study on a novel dual heat transfer fluid central receiver based on two-level division of non-uniform solar flux. Applied Thermal Engineering.
  • Dynamic study on the solar-driven methanol steam reforming process in novel heat-storage parabolic trough solar receiver-reactors. Renewable Energy.
  • Optical-thermal-mechanical comprehensive performance of the concentrating and collecting subsystem for the next-generation solar power tower based on heliostat field layouts optimization. Solar Energy.
  • Numerical study on novel parabolic trough solar receiver-reactors with double-channel structure catalyst particle packed beds by developing actual three-dimensional catalyst porosity distributions. Chemical Engineering Science.
  • Comprehensive study on parabolic trough solar receiver-reactors via a novel efficient photo-thermal- chemical model of catalyst packed bed characteristics. International Journal of Hydrogen Energy.
  • Study on solar-driven methanol steam reforming process in parabolic trough solar receiver-reactors by developing an optical-thermal-chemical model of realistic porosity distributions. Applied Energy.
  • Numerical study on a novel parabolic trough solar receiver-reactor and a new control strategy for continuous and efficient hydrogen production. Applied Energy.
  • Three-dimensional numerical study on a novel parabolic trough solar receiver-reactor of a locally-installed Kenics static mixer for efficient hydrogen production. Applied Energy.
  • A comprehensive study on parabolic trough solar receiver-reactors of methanol-steam reforming reaction for hydrogen production. Energy Conversion and Management.
  • Novel optical efficiency formulas for parabolic trough solar collectors: Computing method and applications. Applied Energy.

专利软件:

  • 基于模块化微通道级联的太阳能驱动甲醇重整制氢系统. ZL 202311825960.7
  • 一种塔式光热电站高低温双工质吸热器及其设计方法. ZL 202211669339.1
  • 一种高温氯化盐光热与储能循环模拟实验平台及实验方法. ZL 202111372371.9
  • 一种二元氯化盐的高温光热循环模拟实验平台及实验方法. ZL 202111329333.5
  • 一种中低温线性太阳能制氢电热模拟实验平台及实验方法. ZL 202011629868.X
  • 一种太阳能集热管束式海水淡化装置及系统. ZL 201920609470.6
  • 基于动画堆积三维重构与数字车削的颗粒堆积孔隙特性分析软件. 2024SR0349651
  • 塔式太阳能聚光集热系统定日镜场优化分析软件. 2023SR0146130