增水

zēng shuǐ
  • surge;anstau
增水增水
增水[zēng shuǐ]
  1. 胶州湾风暴潮增水重现值的长期预测

    Long-term Prediction of Return Extreme Storm Surge Elevation in Jiaozhou Bay

  2. 日照地区风暴潮增水重现值计算

    Return Values Calculation of Storm Surge Elevation in Rizhao Area

  3. 应用GIS可视化技术模拟了台风影响区域的海岸动力环境(流场、增水分布)及其变化过程。

    GIS visualization technology is applied to simulate coastal dynamic environments ( like flow field and storm-surge water accretion distributing ) and their transformation process in typhoon-affected region .

  4. 分析表明,在杭州湾滩浒岛附近海域,因风暴潮增水导致张网作业CPUE平均增幅为9。

    The results showed that CPUE of stow net fishing was increased average of9 .

  5. 黑龙江省云水资源比较丰富,据专家分析,每年通过人工影响天气作业平均增水约为5×108m3左右,仅占空中可利用水资源的0.2%,空中云水资源的开发潜力十分巨大。

    The cloud-water resource is comparative rich . According to the experts ' analyses , the average water that gain from artificial rainfall is about five hundred million stere in one year . It is less than 0.2 % of air available water resource .

  6. 高山增水效应及其水资源意义

    Water Increasing Effect of Mountains and Its Value of Water Resources

  7. 钱塘江河口台风暴潮增水预报及可视化

    Prediction and visualization of typhoon surge in Qiantang River estuary

  8. 克拉玛依山区人工增水效果的再评价

    New Evaluation of Effect of Orographic Cloud Seeding in Karamay

  9. 对以后类似地质条件下的地热井增水处理提出了建议。

    The suggestions to increase water output in similar well was made .

  10. 台风过程最大增水与台风路径的关系密切,较大的台风暴潮发生在台风接近时;

    The highest typhoon surge is closely related to the paths of typhoon ;

  11. 台风增水及台风潮水位的概率分析

    Probability analysis of typhoon surge and typhoon storm tide

  12. 大峡谷地热井增水技术措施分析

    An Analysis on Measures to Increase Discharge of Grand Canyon Deep Geothermal Well

  13. 考虑季节变化的风暴增水随机统计分析

    Statistical analysis of storm surge elevation considering seasonal variation

  14. 湛江港风暴增水特征分析

    Characteristic analysis of Zhanjiang harbor 's storm surge

  15. 分析了在不同天气形势下影响增水过程的一般特点;

    The general characteristics of the storm surge processes under different weather conditions are studied .

  16. 台风特征参数对风暴增水的影响分析

    Effects of Typhoon Parameters on Storm Surge

  17. 云区催化增水的数值模拟试验

    Numerical simulations of seeding in cloud area

  18. 近岸波浪增水与近岸流的计算方法研究Ⅱ.数值模式与模拟计算

    Study on Calculation of Wave Set-up and Nearshore Current ⅱ . Numerical Model and Simulation

  19. 石灰岩地层机井综合洗井增水技术研究与应用

    Research & application on the comprehensive Technology of well washing and water increase in limestone Stratum

  20. 本文讨论了由于天文潮潮高和潮时的预报误差可能引起的风暴潮增水值的误差范围;

    The Storm-surge error range due to the tidal hour and tidal level prediction error is discussed .

  21. 本文最后还讨论共振现象对湛江港增水的影响。

    Finally , this paper discusses the influence of the resonance on the surge at Zhanjiang Harbor .

  22. 这种方法首先定出导致本站增水的主导风向和增水区域,然后建立增水与本站风力的相关关系。

    The prevailing wind direction for surges at this station and the area of surges are first determined .

  23. 可见,新的台风风场模型更适用于台风暴潮增水的数值计算。

    Thus , the new typhoon wind field model is demonstrated be applicable in the storm surge simulation .

  24. 风暴增水随机分析的过阈法及其统计计算模式

    On the Peak over Threshold Method in the Statistical Analysis of Storm Surge Elevation and Its Probability Model

  25. 珠江河口台风最大增水规律的研究

    The Research on the Law of the Maxium Rising-stage due to the Typhoon Surge in the Pearl River Estuary

  26. 钱塘江河口杭州湾由于独特的海湾地理位置和形态,引起台风暴潮强烈增水。

    Duo to special geographical site and configuration , the magnitude of typhoon surge in Qiantang river estuary is violent .

  27. 将近八点钟,暴风骤雨开始向小船袭来。台风特征参数对风暴增水的影响分析

    The storm of rain and wind descended upon them towards eight o'clock . Effects of Typhoon Parameters on Storm Surge

  28. 影响湛江的热带气旋路径、登陆地点和增水关系探讨

    Discussion on relation between surge and such elements as landing location and path of tropical cyclone effected on Zhanjiang Harbor

  29. 滩海地区风暴增水的季节变化对极端高水位确定的影响

    Influence of Storm Surge Seasonal Variation on Determination of Extreme High Water Level in tidal zone and shallow water area

  30. 人工增水作业是开发利用空中水以缓解水资源短缺的途径之一。

    Artificially inducing precipitation is one of the ways to alleviate the shortage of water resources by developing and utilizing air water .