深度回聲器 的英文怎麼說

中文拼音 [shēnhuíshēng]
深度回聲器 英文
echo depth sounder
  • : Ⅰ形容詞1 (從上到下或從外到里的距離大) deep 2 (深奧) difficult; profound 3 (深刻; 深入) thor...
  • : 度動詞[書面語] (推測; 估計) surmise; estimate
  • : 回構詞成分。
  • : 名詞1. (器具) implement; utensil; ware 2. (器官) organ 3. (度量; 才能) capacity; talent 4. (姓氏) a surname
  • 深度 : 1. (深淺程度) degree of depth; depth 2. (觸及事物本質的程度) profundity; depth
  1. On the premise that the basal transducer layout was designed according to the requirements of deep - sea exploring surroundings and technology on the basis of the hardware structure and data collecting ways of interferometric sonar, the echo signal by energy relativity search is analyzed and calculated, altitude data of the tiny terrain on the seabed under real - time irradiation of ultrasonic is gained as to provide parameters of best cutting depth for intellectualization of the seabed mining vehicle timely and promptly

    摘要在相干納硬體結構及數據採集方式的基礎上,結合具體的海鈷結殼探測環境和技術要求,確定了換能基本布局,探討了信號採集與處理方法,利用能量相關搜索法對波信號進行分析和計算,得出超波實時照射下的海底表面微地形高程數據,為海底采礦車智能化開采提供實時、快速的最佳切削參數。
  2. Echo depth - recorder

    記錄
  3. To get the stability of shallow structure foundation and adjacent seabed in cheng dao shallow sea area, we have made an investigation on high resolution echo depth side sonar and shallow strata section etc. and made use of experiment analysis of core, in situ, indoor to compute, analyze and assess the stability on new computing method

    為了得到埕島海域淺水區構築物地基及周邊底床穩定性,本文通過高解析、旁側納及淺地層剖面等學儀勘查,並結合鉆孔、現場和室內的實驗分析,採用新的計算方法,對埕島海域淺水區人工構築物地基及周邊底床穩定性進行了計算、分析和評價。
  4. The authors use a ultrasonic transducer emit ultrasonic to simulated seabed tiny terrain, then analyze and calculate the relativity of amplitude according to the time, phase and amplitude etc included in echo signal and making using of the relativity of amplitude characteristics, at last gain the real - time altitude data of tiny terrain for deep - sea cobalt crusts mining in order to provide the parameter of best cutting depth for the intellectualized mining of excavating head

    摘要通過超波換能向模擬海底微地形發射超波,根據波信號包含的時間、相位和幅等信息,利用幅特徵相關性進行分析和計算,得出海鈷結殼開采所需要的實時微地形高程數據,為採掘頭智能化開采提供最佳切削參數。
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