潮差
- tidal range
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天文潮是一个重要作用因子,在三个台风期间单独作用下高桥站潮差最大有3.5m~4m,而流速有约1.5m/s。
Astronomical tide is a significant factor . Under single effect of it , the maximum tidal range is about 3.5m to 4m during three typhoons , while the flow velocity is about 1.5m/s for the maximum .
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潮差这个术语什么意思?
What does it mean by the term " tidal range "?
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报告Al及Al合金在舟山海域的飞溅区、潮差区和全浸区3种试验条件下暴露2、4、8年的腐蚀结果及其在海水环境中的腐蚀行为。
Corrosion results of aluminium alloys exposed to tide zone ? splash zone and continuous immersion zone for 2 ? 4 ?
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但在厦门站潮差区暴露4a后,由于特殊的海水环境和试验设施,该合金局部发生海生物附着下的缝隙腐蚀。
After exposure in Xiamen tide station for 4a , the alloy locally generated crevice corrosion by marine biofouling .
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台湾海峡M2分潮潮位分布研究的主要分歧在于对台湾岛西岸潮时潮差的分布特征的解释;
The main controversies over the M_2 tidal level distributions are the interpretations of the tidal phase and range distribution characteristics along the west coast of Taiwan Island ;
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另外,计算得到的泉州湾内平均潮差约为4m,如此大的潮差是导致湾内浅滩和暗礁在落潮时干出、涨潮时重新被漫过的根本原因。
Besides , the large tidal range with a mean value of 4 m is responsible for the alternate wetting and drying of shoals and submerged rocks during the flood and ebb , respectively .
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按照爆炸复合材料的应用条件,将铝-铝-钢投放在青岛、舟山和厦门3个海域的潮差和飞溅区,暴露1a后研究了材料的腐蚀和力学性能。
Based on the using conditions of aluminium-steel joints , we exposed such samples in splash zone , ebb and flow zones in Qingdao , Zhoushan and Xiamen areas . After one year , s exposure , we studied their corrosions and mechanical performances .
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海洋钢结构浪溅区、潮差区防腐蚀方法的研究
Protection of marine steel construction from in splashing and tidal zone
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中国沿岸海域月平均潮差变化规律
Seasonal changes of the mean tidal range along the Chinese coasts
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沿海潮差带粘性土地基上的一种新型围埝结构
A New Type Cofferdam Structure on Clay Foundation at Coastal Tide Range
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水下、潮差段混凝土破损修补新技术
New Patching Technique for Underwater Concrete Damage on Tidal Reach
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钢桩潮差段防腐处理专用设备
Special Equipment for Corrosion-Prevention of Steel Piles in Tidal Region
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石油平台潮差区混凝土的耐久性
Durability of Concrete Used for Oil-platform in Tidal Zone
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码头钢管桩潮差段聚乙烯防腐层
The Polythylene Anticorrosive Layer for Tide Range Parts of Dock Steel Pipe Piles
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海水潮差带低合金钢局部腐蚀锈层结构的研究
Structure of localized corrosion rust layer on low alloy steels under marine tide condition
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中国黄海沿岸潮差的显著增大趋势
The Trend of Tidal Range Enlarging along the Coast of the Yellow Sea of China
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海底管道大都是由深水到浅水,经过潮差段登上陆地的。
Submarine pipelines land generally from deep water to shallow water , through tidal zone .
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但是最近的争论使双方的关系陷入了低潮。日较差大潮潮差大潮高高潮和大潮低低潮的潮高差大日较差
But the latest debate has brought relations to a low ebb . great diurnal range
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迳流和潮差是影响污水稀释扩散效果的主要因素。
Runoff and tidal range are the main factors influencing the effects of dilution and dispersion .
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钢在海水全浸、潮差区的腐蚀数据分析
Analysis of seawater corrosion of steels
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科氏效应对杭州湾南北岸潮差差异影响的讨论
Discussion on Coriolis Effect Bring about the Difference in the Tidal Range between Two Sides of Hangzhou Bay
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钢筋混凝土阴极保护技术在海洋飞溅与潮差区的应用研究
Research on the Application of the Cathodic Protection of Steel Reinforced Concrete in Marine Splash and Tidal Range Zone
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上浅旋回中的潮下带沉积和潮坪沉积的厚度可用来推测古水深和潮差。
The thickness of subtidal deposits and tidal-flat deposits can be used to estimate water depth and tidal range .
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小潮:出现在每个月上弦或下弦时期,潮差特别小的潮汐。
Neap tides : tides of small range occur when the moon is at its first or last quarter .
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漂浮性能好,不受潮差影响,护舷可保持在理想水位;
Good floating performance , doesn 't effected by tide scope , fender can be kept at an ideal waterline .
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潮差区及以空气中氯离子侵蚀为主的混凝土结构,结合氯离子占自由氯离子的相对值大致在0.11~0.37之间;
The amounts of bound chloride in tide range area and air environment is 0.11 ~ 0.37 times of free chloride ;
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宝钢原料码头钢管桩潮差段二次维护新工艺
A New Secondary Maintenance Technique for Steel Pipe Piles in Tidal Differential Area of Baoshan Iron and Steel Raw Materials Terminal
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钢筋表面完整的环氧涂层在实验室干湿交替循环以及实海潮差区环境中都表现出了良好的阻挡层性质,对钢筋基体提供了良好的保护。
The perfect epoxy coating shows good barrier properties and provides good protection for steel rebar both in laboratory and sea environment .
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研究结果表明,形成涌潮的基本条件是杭州湾平面喇叭口形态使潮差增大和沿程沙坎的抬升。
The research result shows that the basic conditions for tidal bore formation are the funnel-shaped Hangzhou Bay and sand bar rising .
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结果表明潮汐层偶的厚度变化与大小潮周期潮差旋回性变化密切相关。
The result shows that the variation of tidal-couplet thickness is closely related to the changes of tidal energy in neap-spring cycles .