This paper summarizes the results of the authors' 4 year experimental studies on the secondary flow losses in turbine cascades. Cascade wind tunnel experiments were carried out concerning the influence of aspect r...This paper summarizes the results of the authors' 4 year experimental studies on the secondary flow losses in turbine cascades. Cascade wind tunnel experiments were carried out concerning the influence of aspect ratios, incidence, turning angles and outer endwall divergent angles in order to unveil the evolution mechanism of secondary flow losses in turbine cascades without end clearance. Some methods for controlling the secondary flows are investigated including the blade leaning, blade cambering, endwall convergence and leading edge extension at two ends of the blade.展开更多
当前静止无功补偿器(static var generator,SVG)设备损耗参数仅标注额定功率下的稳态损耗,难以在不同运行状态下实现损耗的动态精细化管理。针对变电站无功补偿设备运行损耗过大的问题,在SVG动态运行损耗模型的基础上,提出一种考虑静止...当前静止无功补偿器(static var generator,SVG)设备损耗参数仅标注额定功率下的稳态损耗,难以在不同运行状态下实现损耗的动态精细化管理。针对变电站无功补偿设备运行损耗过大的问题,在SVG动态运行损耗模型的基础上,提出一种考虑静止无功补偿装置(static var compensator,SVC)损耗特征的协同经济运行策略,以提升变电站无功补偿设备的运行经济性。首先,对SVG动态运行损耗模型和SVC模型进行分析。然后,提出多台SVG协同经济运行的最优投运台数判据和实时功率分摊准则。最后,提出无功功率完全补偿和考虑无功补偿价值的变电站无功补偿设备协同经济运行策略。通过搭建Simulink仿真系统,验证了所提协同经济运行策略的有效性。展开更多
文摘This paper summarizes the results of the authors' 4 year experimental studies on the secondary flow losses in turbine cascades. Cascade wind tunnel experiments were carried out concerning the influence of aspect ratios, incidence, turning angles and outer endwall divergent angles in order to unveil the evolution mechanism of secondary flow losses in turbine cascades without end clearance. Some methods for controlling the secondary flows are investigated including the blade leaning, blade cambering, endwall convergence and leading edge extension at two ends of the blade.
文摘当前静止无功补偿器(static var generator,SVG)设备损耗参数仅标注额定功率下的稳态损耗,难以在不同运行状态下实现损耗的动态精细化管理。针对变电站无功补偿设备运行损耗过大的问题,在SVG动态运行损耗模型的基础上,提出一种考虑静止无功补偿装置(static var compensator,SVC)损耗特征的协同经济运行策略,以提升变电站无功补偿设备的运行经济性。首先,对SVG动态运行损耗模型和SVC模型进行分析。然后,提出多台SVG协同经济运行的最优投运台数判据和实时功率分摊准则。最后,提出无功功率完全补偿和考虑无功补偿价值的变电站无功补偿设备协同经济运行策略。通过搭建Simulink仿真系统,验证了所提协同经济运行策略的有效性。