Numerical simulation of change in flow resistance coefficient of underwater hammer
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TV131.2+2

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    Abstract:

    Change in the flow resistance coefficient of underwater hammers was analyzed through comparison of common types of hammers in multiple projects based on the LS-DYNA fluid-structure coupling numerical simulation method. The results show that, when the hydrostatic pressure on the bottom surface of the hammer is a fixed value, the flow resistance coefficient decreases with the increase of the hammer mass. The hammer fall velocity in the water increases with the drop distance, but the growth rate gradually decreases and tends toward a stable value. The energy usage ratio of the hammer decreases with the increase of the drop distance. When the hydrostatic pressure on the bottom surface is a fixed value, the energy dissipation rate increases with the decrease of the hammer mass.

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黄建生,梁邦炎,王小平.水下夯锤绕流阻力系数变化规律的数值模拟[J].水利水电科技进展,2017,37(4):14-18.(HUANG Jiansheng, LIANG Bangyan, WANG Xiaoping. Numerical simulation of change in flow resistance coefficient of underwater hammer[J]. Advances in Science and Technology of Water Resources,2017,37(4):14-18.(in Chinese))

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History
  • Received:August 15,2016
  • Revised:
  • Adopted:
  • Online: July 02,2017
  • Published: July 10,2017
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