为保证对旋风机正风运行性能的同时提高反风运行能力,采用平面叶栅法设计了一台功率55 k W的对旋轴流风机。以C-4翼型为基础,采用CFD方法研究了叶片前缘和尾缘形状变化对对旋风机正反风性能的影响。研究表明:正风整机性能,双头尖叶形风...为保证对旋风机正风运行性能的同时提高反风运行能力,采用平面叶栅法设计了一台功率55 k W的对旋轴流风机。以C-4翼型为基础,采用CFD方法研究了叶片前缘和尾缘形状变化对对旋风机正反风性能的影响。研究表明:正风整机性能,双头尖叶形风机压升和功率明显高于原始翼型,大流量时其内效率高于原始翼型和双头钝叶形,小流量时其内效率低于这2种叶形。双头钝叶形压升和功率略低于原始翼型,内效率略高于原始翼型。反风整机性能,双头尖叶形和双头钝叶形反风全压和功率相差不多,均优于原始翼型,双头钝叶形反风内效率略高于双头尖叶形和原始翼型,原始翼型和双头尖叶形反风内效率接近。正风级性能,两级叶轮级性能变化趋势均与整机类似。反风级性能,双头尖叶形两级反风性能均优于原始翼型。双头钝叶形第一级叶轮性能低于双头尖叶形和原始翼型,第二级叶轮性能优于这2种叶形。可见,大流量时双头尖叶形对旋风机可更好地满足正反风高效运行的目的。展开更多
Contra-rotating axial flow fan is a kind of the vital equipment in coal mines. Their work conditions directly affect the safety of staff and production. In the paper, the performance of the contra-rotating axial flow ...Contra-rotating axial flow fan is a kind of the vital equipment in coal mines. Their work conditions directly affect the safety of staff and production. In the paper, the performance of the contra-rotating axial flow fan is experi- mentally investigated. The study is focused on the fan performance, the shaft power and the match between the motor and fan efficiency at different blade angles. The results show that the blade angle 43°/26° has the best aerodynamic perfor- mance. The first engine has a greater impact on the fan than the second one. The blade angle with the best aerodynamic performance does not necessarily correspond to the one with the best match between the motor and fan efficiency. The blade angle 43°/24° is the best choice for the operation of the fan in the present study.展开更多
Different from the previous qualitative analysis of linear systems in time and frequency domains, the method for describing nonlinear systems quantitatively is proposed based on correlated dimensions. Nonlinear dynami...Different from the previous qualitative analysis of linear systems in time and frequency domains, the method for describing nonlinear systems quantitatively is proposed based on correlated dimensions. Nonlinear dynamics theory is used to analyze the pressure data of a contrarotating axial flow fan. The delay time is 18 and the embedded dimension varies from 1 to 25 through phase-space reconstruction. In addition, the correlated dimensions are calculated before and after stalling. The results show that the correlated dimensions drop from 1. 428 before stalling to 1. 198 after stalling, so they are sensitive to the stalling signal of the fan and can be used as a characteristic quantity for the judging of the fan stalling.展开更多
文摘为保证对旋风机正风运行性能的同时提高反风运行能力,采用平面叶栅法设计了一台功率55 k W的对旋轴流风机。以C-4翼型为基础,采用CFD方法研究了叶片前缘和尾缘形状变化对对旋风机正反风性能的影响。研究表明:正风整机性能,双头尖叶形风机压升和功率明显高于原始翼型,大流量时其内效率高于原始翼型和双头钝叶形,小流量时其内效率低于这2种叶形。双头钝叶形压升和功率略低于原始翼型,内效率略高于原始翼型。反风整机性能,双头尖叶形和双头钝叶形反风全压和功率相差不多,均优于原始翼型,双头钝叶形反风内效率略高于双头尖叶形和原始翼型,原始翼型和双头尖叶形反风内效率接近。正风级性能,两级叶轮级性能变化趋势均与整机类似。反风级性能,双头尖叶形两级反风性能均优于原始翼型。双头钝叶形第一级叶轮性能低于双头尖叶形和原始翼型,第二级叶轮性能优于这2种叶形。可见,大流量时双头尖叶形对旋风机可更好地满足正反风高效运行的目的。
文摘Contra-rotating axial flow fan is a kind of the vital equipment in coal mines. Their work conditions directly affect the safety of staff and production. In the paper, the performance of the contra-rotating axial flow fan is experi- mentally investigated. The study is focused on the fan performance, the shaft power and the match between the motor and fan efficiency at different blade angles. The results show that the blade angle 43°/26° has the best aerodynamic perfor- mance. The first engine has a greater impact on the fan than the second one. The blade angle with the best aerodynamic performance does not necessarily correspond to the one with the best match between the motor and fan efficiency. The blade angle 43°/24° is the best choice for the operation of the fan in the present study.
基金Supported by the Natural Science Foundation of Jiangsu Province(BK2005018)the Graduate Research and Innovation Plan of Jiangsu Province(CX07B-061Z)~~
文摘Different from the previous qualitative analysis of linear systems in time and frequency domains, the method for describing nonlinear systems quantitatively is proposed based on correlated dimensions. Nonlinear dynamics theory is used to analyze the pressure data of a contrarotating axial flow fan. The delay time is 18 and the embedded dimension varies from 1 to 25 through phase-space reconstruction. In addition, the correlated dimensions are calculated before and after stalling. The results show that the correlated dimensions drop from 1. 428 before stalling to 1. 198 after stalling, so they are sensitive to the stalling signal of the fan and can be used as a characteristic quantity for the judging of the fan stalling.