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两级模化轴流压气机数值与试验研究
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作者 邓庆锋 孙勇 +1 位作者 吴迪 高思华 《热能动力工程》 CAS CSCD 北大核心 2024年第9期31-37,共7页
以缩尺模化后的某大功率压气机前两级轴流压气机为对象,采用试验及数值的方法对进口可转导叶无角度变化和变角度下的压气机特性进行了对比研究,通过激光多普勒测速(Laser Doppler Velocimetery,LDV)系统对两级压气机第1级动叶进、出口... 以缩尺模化后的某大功率压气机前两级轴流压气机为对象,采用试验及数值的方法对进口可转导叶无角度变化和变角度下的压气机特性进行了对比研究,通过激光多普勒测速(Laser Doppler Velocimetery,LDV)系统对两级压气机第1级动叶进、出口的绝对气流角和绝对气流速度进行测量并与数值结果进行了对比分析。结果表明:试验与数值结果吻合较好,验证了数值方法的准确性;数值计算获得的压气机效率略高于试验结果;两级压气机缩尺模化前、后的压气机特性具有很高的相似性,流场具有基本相同的分布规律;缩尺模化后的两级压气机效率下降了1.23%。 展开更多
关键词 轴流压气机 试验研究 数值模拟 模化缩放 激光多普勒测速
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Using a pressure controlled vortex design method to control secondary flow losses in a turbine stage
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作者 deng qingfeng Zheng Qun +2 位作者 Yue Guoqiang Zhang Hai Luo Mingcong 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2013年第5期1125-1134,共10页
A turbine design method based on pressure controlled vortex design (PCVD) is presented to design a small-size turbine stage. Contrary to the conventional controlled vortex design (CVD) method, the main objective o... A turbine design method based on pressure controlled vortex design (PCVD) is presented to design a small-size turbine stage. Contrary to the conventional controlled vortex design (CVD) method, the main objective of PCVD is to control the axial velocity and radial pressure in the sta- tor rotor gap. Through controlling axial velocity, the PCVD establishes a direct tie to meridional stream surface. Thus stream surface variation is induced, resulting in a large secondary flow vortex covering the full blade passage in the respective stator and rotor. This secondary flow vortex could be dedicated to control the secondary flow mitigation and migration. Through radial pressure, the PCVD is also associated with the macroscopic driving force of fluid motion. So the better benefit of CVD can be achieved. The core concept behind PCVD is to mainly control the spanwise pressure gradient by altering profile loading at various spanwise locations. Therefore not only the local pro- file lift is affected, but also the resulting throat widths, stage reaction degree, and massflow rate are altered or redistributed respectively. With the PCVD method, the global stage efficiency is increased successfully while the mass flow rate keeps constant. Additionally there is no endwall shape optimization, stacking optimization, or pitch/chord variations, concentrating solely on varying blade profile deflections and stagger. 展开更多
关键词 Pressure control Pressure controlled vortex design Secondary vortex Stream surface variation Turbine design
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