DOI QR코드

DOI QR Code

CFD Analysis of Pressure Pulsation and Internal Flow for a Positive Displacement Hydraulic Turbine

CFD에 의한 용적형수차의 압력맥동 및 내부유동 해석

  • 최영도 (한국해양대학교 산학협력단) ;
  • 김유택 (한국해양대학교 해사대학 기관시스템공학부) ;
  • 이영호 (한국해양대학교 공과대학 기계.정보공학부)
  • Published : 2007.09.30

Abstract

It has been known that one of the main obstacles of improving the performance of positive displacement hydraulic turbine is pressure pulsation which occurs at the regions upstream and downstream of the turbine. In order to suppress the pressure pulsation. occurrence reason of the pressure pulsation should be understood in detail Therefore. this study aims to establish a CFD analysis method by which the phenomena of unsteady pressure pulsation can be examined with high accuracy. Internal flow field of the turbine is modeled simply to generalize the relation between the pressure pulsation and internal flow. The results show that the Present CFD method adopting unsteady calculation can be applied successfully to the analysis of the Phenomena of Pressure Pulsation. Occurrence of the Pressure pulsation is due to the difference of the rotational speed of turbine rotors When driving rotor rotates by uniform speed and fellowing rotor rotates by variable speed, very large Pressure pulsation occurs within the turbine periodically.

Keywords

References

  1. N. Kassai, S. Miyauchi, A. Takahashi, 'Development of Hydraulic Turbines to be Installed in Pipelines,' Proc. 23rd IAHR Symposium on Hydraulic Machinery and Systems, CD-ROM Paper No. : F312, 2006
  2. 塚本直史, 'マイクロチュプラ水車の広帯域化に 関する開発研究,'九州工業大学 大学院 博士学位論文, 2004
  3. D. Scott, Microhydro : Clean Power from Water, New Society Publishers, Canada, pp. 57-66, 2003
  4. 최영도, 이영호,'마이크로 용적형수차의 개발에 관한 연구,' 한국마린엔지니어링학회지, 제 30 권, 제 2호, pp. 284-290, 2006
  5. 최영도,'마이크로 용적형 수차의 측면누설손실 이 성능에 미치는 영향,' 한국마린엔지니어링학회지, 제 30권, 제 2호, pp. 291-295, 2006
  6. ANSYS Inc.,'ANSYS CFX Documentation,' Ver. 11, http://www.ansys.com, 2007

Cited by

  1. Numerical Simulations of Cavitation Flow in Volumetric Gear Pump vol.9, pp.4, 2011, https://doi.org/10.5407/JKSV.2011.9.4.028
  2. Pressure distribution near truncated POD attached on hydrofoil vessel vol.38, pp.9, 2014, https://doi.org/10.5916/jkosme.2014.38.9.1106
  3. Flow Analysis for Optimal Design of Small Gear Pump vol.24, pp.1, 2015, https://doi.org/10.5855/ENERGY.2015.24.1.088
  4. Numerical Simulation of External Gear Pump Using Immersed Solid Method vol.38, pp.1, 2014, https://doi.org/10.3795/KSME-B.2014.38.1.095
  5. 용적형수차의 압력맥동 발생기구 및 특성에 관한 연구 vol.31, pp.8, 2007, https://doi.org/10.5916/jkosme.2007.31.8.947
  6. 회전용적형 기어펌프 유동의 2차원 수치해석 vol.13, pp.5, 2007, https://doi.org/10.5293/kfma.2010.13.5.017