渦旋紊流 的英文怎麼說

中文拼音 [guōxuánwènliú]
渦旋紊流 英文
eddying turbulence
  • : 渦名詞1. (漩渦) eddy; whirlpool; vortex 2. (酒窩) dimple
  • : 旋Ⅰ動詞1 (旋轉) whirl 2 (用車床切削或用刀子轉著圈地削) turn sth on a lathe; lathe; pare Ⅱ名詞...
  • : 形容詞(紊亂) disorderly; confused
  • : Ⅰ動1 (液體移動; 流動) flow 2 (移動不定) drift; move; wander 3 (流傳; 傳播) spread 4 (向壞...
  • 紊流 : burble
  1. By performing fourier transformation, the relationship between the turbulent intensity of the particle and that of the carrier fluid was obtained which makes clear that particle size, specific gravity, velocity gradient, and the characteristic frequency of energy - containing eddies are four basic influencing parameters. it is proven theoretically that under certain conditions, the stream - wise and transverse particle turbulent intensities exceed those of the carrier fluid. based on the equations of two - phase flow, the presence of fine sediment suspension is shown to attenuate the turbulent intensity of the water

    通過對細小顆粒在剪切場中運動方程的fourier分析,得到了顆粒脈動強度和體脈動強度之間的定量關系,表明顆粒粒徑、顆粒密度、速梯度以及動場含能的特徵頻率是影響顆粒脈動強度的主要因素,首次從理論上證明了在一定條件下,顆粒在縱、垂向的脈動強度均會超過相應的體脈動強度,為已有的實測資料提供了合理的解釋。
  2. Although the knowledge of wind effects on tall buildings has significantly improved over the last decades, an understanding of the mechanism that the atmospheric flow field to various wind include effects on structures has not been developed sufficiently for formulation of functional expressions. not only is the wind approaching a building complex, but the flow pattern generated around a building is complicated by the distortion of the mean flow field, the flow separation, the vortex formation, and the wake development

    在過去的幾十年裡,雖然人們對高層建築風效應的了解已有顯著提高,但對大氣場與結構物各種風致響應的關系還不能用解析表達式加以描述。由於平均場的奇變、動分離、形成以及的發展,不僅使得向建築物的風,而且使得繞建築物的譜變得十分復雜。
  3. The main reason of the stepped spillway having greater energy dissipation is tha there is big horizontal vortex in the inner angel of the steps and it makes momenbo exchange with outer mainstream then accelerates the theulence in the water

    由於階梯的存在,使得水在階梯凹角內產生強烈的水平橫軸滾水與外部主之間不斷進行的動量交換加劇了水內部的動,從而使階梯溢壩有較高的消能率。
分享友人