DOI QR코드

DOI QR Code

Effects of the Lift Valve Opening Area on Water Hammer Pump Performance and Flow Behavior in the Valve Chamber

  • Saito, Sumio (Department of Mechanical Engineering, Tokyo National College of Technology) ;
  • Dejima, Keita (Environmental Systems Engineering Course, Nagaoka University of Technology) ;
  • Takahashi, Masaaki (Mechanical and Computer Systems Engineering, Advanced Engineering Course, Tokyo National College of Technology) ;
  • Hijikata, Gaku (Mechanical and Computer Systems Engineering, Advanced Engineering Course, Tokyo National College of Technology) ;
  • Iwamura, Takuya (Mechanical and Computer Systems Engineering, Advanced Engineering Course, Tokyo National College of Technology)
  • Received : 2011.08.29
  • Accepted : 2012.05.17
  • Published : 2012.09.30

Abstract

Water hammer pumps can effectively use the water hammer phenomenon for water pumping. They are capable of providing an effective fluid transport method in regions without a well-developed social infrastructure. The results of experiments examining the effect of the geometric form of water hammer pumps by considering their major dimensions have been reported. However, these conventional studies have not fully evaluated pump performance in terms of pump head and flow rate, common measures of pump performance. The authors have focused on the effects on the pump performance of various geometric form factors in water hammer pumps. The previous study examined how the hydrodynamic characteristics was affected by the inner diameter ratio of the drive and lift pipes and the angle of the drive pipe, basic form factors of water hammer pumps. The previous papers also showed that the behavior of water hammer pump operation could be divided into four characteristic phases. The behavior of temporal changes in valve chamber and air chamber pressures according to the air volume in the air chamber located downstream of the lift valve was also clarified in connection with changes in water hammer pump performance. In addition, the effects on water hammer pump performance of the length of the spring attached to the drain valve and the drain pipe angle, form factors around the drain valve, were examined experimentally. This study focuses on the form of the lift valve, a major component of water hammer pumps, and examines the effects of the size of the lift valve opening area on water hammer pump performance. It also clarifies the behavior of flow in the valve chamber during water hammer pump operation.

Keywords

References

  1. Kagami, K., Ide, T., and Ushiyama, I., 2001, "Water hammer pump production handbook (in Japanese)," POWERSHA Inc., pp. 47.
  2. Yunoki, T., 2004, "Production of a Hydraulic Ram Pump and its Research on its Characteristic," Japan Society for Science Education, (in Japanese), Vol. 28, No .2, pp. 94-100.
  3. Tessema, A. A., 2000, "Hydraulic Ram Pump System Design and Application," Proceedings ESME 5th Annual Conference on Manufacturing and Process Industry, 2000-9, pp. 1-8.
  4. Hasegawa, S., Suehiro, H., and Yamaguchi, K., 1984, "Trial of Hydraulic Ram and Its Performance Characteristics," Research Reports of Toyota College of Technology (in Japanese), No. 17, pp. 15-20.
  5. Taye, T., 1998, "Hydraulic Ram Pump," Journal of the ESME, Vol. II, No.1 (1998-7), pp. 1-11.
  6. Okada, T, Uetsuki, H, and Takenaka, T., 1982, "Research on Water Hammer Pump (1st Rep. Mathematical Model on Water Hammer Pump)," Turbomachinery (in Japanese), Vol. 10, No. 6, pp. 323-334.
  7. Saito, et al., 2010, "Relationship between the Basic Geometric Form and Hydraulic Characteristics of Water Hammer Pump," Transactions of the Japan Society of Mechanical Engineers, Series B, No. 09-1092 (in Japanese), Vol. 76, No.767 (2010-7), pp.1028-1034.
  8. Saito, S., Nagata, Y., Takahashi, M., Inoue, D., Hoshino, Y., 2010, "Relationship between the Basic Geometric Form and Hydrodynamic Characteristics of Water Hammer Pump," Journal of Fluid Science and Technology, Vol. 5, No. 3, pp. 491-502. https://doi.org/10.1299/jfst.5.491
  9. Saito, S., Takahashi, M., and Nagata, Y., 2010, "Effects of the Air Volume in the Air Chamber on the Performance of Water Hammer Pump System," Turbomachinery (in Japanese), Vol. 39, No. 2 (2010-2), pp. 87-94.
  10. Saito, S., Takahashi, M., Nagata, Y., 2011, "Effects of the Air Volume in the Air Chamber on the Performance of Water Hammer Pump System," International Journal of Fluid Machinery and Systems, Vol. 4, No. 2 (April-June 2011), pp. 255-261. https://doi.org/10.5293/IJFMS.2011.4.2.255
  11. Saito, S., Takahashi, M., Nagata, Y., Dejima K., 2010, "Effects of the Geometry of Components Attached to the Drain Valve on the Performance of Water Hammer Pumps," Turbomachinery (in Japanese), Vol. 39, No. 6 (2010-6), pp. 323-331.