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渗流速度的英文

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"渗流速度"怎么读用"渗流速度"造句

英文翻译手机手机版

  • seepage rate
  • seepage velocity
  • velocity, seepage

例句与用法

  • In addition , the definition of flowing velocity are modified and perfected , testifying the relationship between real velocity and flowing velocity
    此外,对渗流速度的定义进行了改正和完善,并证明了多相流中真实速度与渗流速度的关系。
  • Based on the nonlinear relationship of permeability velocity and hydraulic gradient , four non - darcy seepage models were summarized to investigate the permeability behavior of soft soil under consolidation pressure
    摘要针对传统固结理论不能考虑非达西渗流的不足,研究了渗流速度与水力梯度的非线性关系。
  • The quantitative relations between sand production and percolation flow velocity in horizontal well are described by the experimental study , which supplies a reference basis for horizontal well completion design
    通过试验结果定量分析和描述了水平井地层出砂与流体渗流速度的关系,为水平井完井设计提供了参考依据。
  • It is suggested that in the regions of aqueous soil with faster seepage velocity , either the tube - wells can be spaced adequately closer or for the same spacing the number of tube - wells and length of tubes can be reduced under the condition of assuring regular heat transfer effect
    渗流速度较大的富水地区,在保证常规换热效果的情况下,管井间距可适当减小,或在同样管井间距下,可减少管井数量或减小理管长度。
  • In this paper , high heat penetration into a moving particulate bed is described mathematically with a comprehensive heat and mass transfer model . the distribution of gas velocity and pressure , the temperature field of gas and solid in the moving particulate bed are examined for different conditions . the results show that thermal penetration into the moving packed - bed particles by fluid flow in porous media is high only in the position near the gas entrance . the thermal penetration thickness tends to increase with the fluid flow velocity and decrease with the particle moving velocity . in the region of thermal penetration , the porosity of solid bed has significant effect on gas field and pressure loss . it is feasible to reduce the gas pressure loss by a larger width / height packed bed in design and operation . the correspondence between thermal infection depth and particle bed height would be helpful to keep high oapacity of reactor and reduce the cost of operation
    针对移动颗粒床中物料层内的高温气体渗流传热现象,考虑渗流与传热的相互作用,采用局部非热平衡假设建立了多孔介质渗流传热物理数学模型并进行了数值计算.研究了不同情况下床内填充多孔介质中的流速、气固温度和床层压力损失.计算结果表明,高温热气对移动床颗粒料层的热渗透主要发生在渗流入口端区域,增大入口渗流速度以及减小床层物料下移速度将导致物料温度沿床高慢速下降,热渗透深度扩大,热渗透作用区域内的物料温度水平提高.在热渗透作用区域,孔隙率对流场和压力损失有很大的影响.研究结果对于移动颗粒床反应器的设计与运行具有一定的参考作用
  • The nonlinear exponent is a function of the radial distance from the pumping well . the two - regime well flow problems being in the steady state . in the fourth chapter , the problems of two - regime well flow have been discussed concentrating on a kind of special seepage law
    第四章对一种特殊的非线性渗流规律即充分紊流的情况,进行了全面、详细地讨论,推导出了该情况下井流问题的渗流速度、水头降深和井流函数的解析表达式,作出了些具有代表性的标准曲线。
  • Two typical examples analyses are conducted for the average conditions both of winter and summer climates under vapor diffusion and air leakage . a further discussion is set forth to determine the main factors that the moisture accumulation in wall is affected . it is found that the factors are the relative humidity at the wall surface , indoor temperature , permeability , air pressure difference and rate of the infiltrative or exfiltrative airflow
    本文首先研究了墙体内的湿气迁移过程,详细分析了湿积累现象形成的原因,通过对夏、冬两季平均气候下墙内温度、水蒸气压力、相对湿度及湿积累在仅有扩散、扩散与空气渗透同时存在等情况所作的具体计算,发现墙内、外表面的相对湿度、室内温度、渗透率、空气压差以及空气的渗流速度是影响墙内湿积累的主要因素。
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