The design and construction of Submerged Floating Tunnels (SFTs) require an in-depth understanding of how marine environmental dynamics affect these structures and the ability to predict the impact of SFTs on the marine environment. Theoretical computational analysis often falls short of desired outcomes because of these complex challenges. Numerical simulation techniques still require substantial computational resources, and the development of reliable algorithms is ongoing.

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Theory of Submerged Floating Tunnels Model Experiment

  • Hao Ding,
  • Ke Li,
  • Liang Cheng

摘要

The design and construction of Submerged Floating Tunnels (SFTs) require an in-depth understanding of how marine environmental dynamics affect these structures and the ability to predict the impact of SFTs on the marine environment. Theoretical computational analysis often falls short of desired outcomes because of these complex challenges. Numerical simulation techniques still require substantial computational resources, and the development of reliable algorithms is ongoing.