• In two-phase oil and gas flow, the calculation of pressure drop and liquid holdup plays an important rule in technological calculation.

    油气两相管中,液率计算在工艺计算中占有重要的地位。

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  • This article mainly introduces the prediction method of the flow pattern, pressure gradient and liquid holdup of two phase flow in horizontal pipelines.

    本文着重介绍水平这种流动流动型态压力梯度液率预测方法

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  • Through the statistical analysis of the test results, it was found that we could obtain the liquid slug frequency from the fluctuation of the slug liquid holdup.

    通过试验结果统计分析可以得出:①可以利用率的波动情况来确定频率

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  • Technological calculation in a hilly multiphase pipe flow includes flow pattern prediction , liquid holdup and pressure drop calculation and temperature prediction.

    多相管路工艺计算包括判别液率、温降的计算。

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  • The theoretical analyses of the hydrodynamics under a strong interaction flow regime were conducted and data of the bed averaged dynamic liquid holdup were obtained.

    对气相互作用滴流反应器内流体动力学进行了分析讨论。

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  • Liquid holdup plays an important role in the technology calculation of multi - phase flow. All kinds of correlations always are concluded by the experiment data or field data.

    计算多相工艺计算中占有重要地位各种相关是依赖于实验现场数据得出的经验或半以验相关式。

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  • During the operation, the gas holdup and liquid movement velocity could be regulated and controlled using the models to keep the reactor in high-efficiency and steady state.

    实际运行中,通过所建模型反应器中的含率液体运动速率进行有效调控实现反应器的高效稳定运行。

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  • Conical degree spiral packing has the advantage in the handling ability, pressure drop and dynamic holdup liquid and so on.

    填料具有处理能力大,阻力降小液量大、制作简易等优点

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  • Hydrodynamics and mass transfer of triplet loop biological fluidized bed reactors were studied in terms of gas holdup, liquid circulation velocity and volumetric mass transfer coefficient.

    相含率液体循环速度体积氧系数方面研究自行设计新型结构三重环流生物流化床流体力学传质特性。

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  • Determination methods of parameters which involved gas holdup, liquid circulation velocity, solid holdup, bubble behaviors etc in the loop reactor were introduced.

    介绍了环流反应器流体力学参数测定方法这些参数包括率、循环含率、气泡大小及速度。

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  • Gas holdup and liquid circulation velocity are the mostly important hydrodynamic characters and state parameters of internal-loop airlift reactor.

    含率液体循环速率气升式内环流反应器的主要流体力学特征,也是反应器运行过程中的重要状态参数

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  • The influences of the superficial gas velocity, solid holdup and flowing resistance on gas holdup, bubble size, bubble rise velocity and liquid velocity were systematically studied.

    考察表观流动阻力气含率、气泡大小、气泡上升速度速的影响

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  • Solids holdup distribution and liquid backmixing coefficients are fundamental to the scale-up design and optimization of liquid-solid magnetically stabilized reactors.

    含率分布液相返混系数稳定反应器放大优化所必需的基础数据。

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  • And then, the bubble diameter, bubble number and gas holdup in the bubble group were also measured by bubble and liquid drop auto-surveying instrument.

    随后又采用气泡液滴、泡沫微机自动测量仪测定气泡的组成,包括测定了每个气泡团内的气泡直径、气泡个数和气含率等。

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  • The effects of superficial gas velocity, catalyst loading and liquid properties on gas holdup were investigated in a slurry reactor.

    淤浆床反应器考察了表观催化剂率、液体种类气含率影响

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  • Argon bubbles distribute unevenly and the gas holdup of liquid steel in the upper region is far higher than that of the lower region.

    氩气分布不均匀回流的含大大高于回流区。

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  • A drift flux model and an energy dissipation model were set up and were used to describe the gas holdup in the riser and the circulating liquid velocity, respectively.

    分别“漂流通量模型能量耗散模型”描述率和循环的变化情况。

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  • A new airlift loop reactor(ALLR) was introduced in this paper. The correlation among liquid phase flowing model, gas holdup and operating conditions of this reactor was investigated.

    本文报导了一新型环流反应器反应器液相、气含率操作条件之间关系进行实验考察。

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  • Liquid circulation rate and gas holdup in an air-lift loop reactor were experimentally investigated as changing with the superficial gas velocity for the system of air-water.

    浆液循环速度外环流浆态床反应器研究个重要流体力学参数,流体的流动行为相间传质重要的影响。

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  • Liquid circulation rate and gas holdup in an air-lift loop reactor were experimentally investigated as changing with the superficial gas velocity for the system of air-water.

    浆液循环速度外环流浆态床反应器研究个重要流体力学参数,流体的流动行为相间传质重要的影响。

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