海底坡度 的英文怎麼說

中文拼音 [hǎide]
海底坡度 英文
underwater gradient
  • : 底助詞(用在定語后, 表示定語和中心詞之間是領屬關系, 現在多寫作「的」)
  • : Ⅰ名詞(地面傾斜的地方) slope Ⅱ形容詞(傾斜) sloping; slanting
  • : 度動詞[書面語] (推測; 估計) surmise; estimate
  • 坡度 : falling gradient; slope; inclination; declivity; pitch; batter
  1. The sea declivity was so small, that i walked near a mile before i got to the shore, which i conjectured was about eight o'clock in the evening.

    很小,我們向前走了一英里多路,就來到岸上,我想那時大約是晚上8點鐘。
  2. Gpr is a newly developed hi - tech survey technique used to detect shallow ground electric differences. we applied gpr to more than 100 projects in zhujiang river delta and hongkong, and obtained good reputations. the application scope involves stratigraphics division, outining of filled stones in the muddly beach, geotechnical prospecting of old wall, karst detecting in the limestone terrain, caving detecting, landslide and slop surveing, the division of wea - thering zone, onion weathering zone, fracture zone and fau - lted zone in the granite area, detecting of buried objects cable, metal nonmetal pipe, channel, air raid she - lter etc. underground in the urban city, archaeology, tracing of orebody, coal measures strata division, testing of the dam and grouting site, quality checking of the surface and foundation of the highway

    的一種高新技術。我公司運用世界最先進的探地雷達設備在珠江三角洲地區和香港開展了百余項探地雷達檢測項目,獲得了良好的聲譽,並被作為深圳市建設局1998年建設科技成果推廣項目。它主要應用於:山體土石方檢測路基不同回填物界面檢測填回填物巖溶檢測樁基無損檢測地下管道探測地下隱蔽物探測考古斜滑體探測地質結構探測湖探測高速公路路面及路基檢測。
  3. In this paper, the marine route survey factors, such as water depth, bottom slope, soil shearing strength, tidal current and thunderstorm and their roles in the submarine fibre - optic cable engineering are introduced, and their roles and necessities in the cable construction are also appraised, which will make the combination of marine route survey with construction demand closer and the marine route survey be aimed at the cable engineering practice

    摘要介紹了水深、海底坡度、土壤剪切張以及潮流、雷暴等洋路由各勘測要素及其在光纜通信施工中的作用,並對它們在施工中的作用及其必要性進行了評價,從而使洋路由勘測與施工的需要結合得更緊密,更具有針對性。
  4. This kind of instability bulk movement is induced by wave cyclic loading, as a result the slope of bottom bed decrease, water depth increase, and instability bulk movement has the character of subregion, regularity and head erosion, thus it will influence evolvement of region of interest landform, and change flow field and bottom stratum condition continually, so will lead to dynamic influence on structure foundation soil

    這種不穩定塊體運動由波浪循環荷載誘發,其結果使床整體減緩,水深加大,而且不穩定的塊體運動具有小區域、多發性和溯源侵蝕的特點,將繼續影響著域以後的水深地形的發展演化,並不斷改變著該區的流場與床地層條件,對構築物地基土的穩定性產生著動態的影響。
  5. Through analyzing bed ' s response to wave, in the condition that super - stratum is more hard and second - stratum is more soft in region of interest, super static interstitial hydraulic pressure amplitude die away rapidly between stratums, before in sight of boundary between hard and soft stratum, plane effective pressure increase to max. shear stress reach peak value when bed thickness is approximately 2. 7 meters, then it will decrease to the minimum on the place where the flexible soil has a common boundary with the rigidity, so the boundary is the most destroy plane on engineering. on the basis of reconnaissance in situ, in normal situation of sea, the structure slides to the basin along the boundary

    通過對床在波浪下的響應分析,對于研究區床上層較硬而第二層較軟的情況,超靜孔隙水壓力幅值在層間交界處迅速衰減,在臨近硬、軟地層交界處前,水平有效應力增至最大,剪切應力在床厚大約2 . 7米左右達到峰值,然後減小,到硬、軟層土交界位置,達到最小,因此這個界面就是最容易發生破壞的工程軟弱面,現場勘查證明,即使在正常況下,構築物也會沿以此交界面為滑動面,緩慢向「盆」滑動。
  6. Through analysis, we conclude that washing action of wave and flow is main power of evolvement of region of interest landform, structure lead to the fact that water area around shallow structure in cheng dao sea field has an increase about 0. 3m / a through actual measurement, water depth increase rate around foundation is 0. 25m / a, slope gradient of side slope averagely has a decrease of 5 % o a year, however marine hydropower wash rate through compute is 0. 2m / a on underwater bottom, the wash rate on structure foundation is 0. 35m / a

    分析認為,浪流的沖刷作用是研究區水深地形演化的主要動力,構築物的存在,使埕島域淺水區人工構築物周邊水域實測年水深增加幅約0 . 3m a ,地基附近水深增加速率0 . 25m a ,邊平均每年以5減緩,而計算得出的洋水動力沖蝕速率在水下為0 . 2m a ,在構築物地基沖蝕速率達0 . 35m a 。
  7. Under the influence of dynamical factors such as earthquake and storm surge, the sediment failure on the submarine slope might be triggered to make considerable damage to the submarine structures, so more and more attention has been drawn to the submarine slope stability in recent years

    摘要物質受地震、風暴潮等動力因素的影響,其強變弱,發生失穩破壞,對工程設施具有較大的破壞性,引起人們的廣泛關注。
分享友人