• 其次本文单侧压边迷宫滴灌带液相颗粒相运动进行了数值模拟分析。

    We also performed numerical simulations to investigate the flow field and particle motion inside the channel of labyrinth emitter.

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  • 空气中湍动雾化的气液进行了数值模拟

    Simulation of turbulence atomization jet in the air-water two phase flow field was performed.

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  • 深入研究液-液水力机理采用LRR应力模型油水分离旋器的油水两相进行了数值模拟

    Further investigate the flow mechanism of the liquid-liquid hydrocyclone, and the oil and water phases flow field in hydrocyclone for oil water separation is simulated using LRR stress model.

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  • 本文针对仪元件工作原理提出了平面旋转测量液体速的方法,并测量了大型精馏塔液相单相三维

    In this paper, a new method of measuring liquid three dimensional flow velocity by rotaining the probe in the plane was submitted basing elaborate analyzing of hot film anemometer.

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  • 液相芯片检测研究了微流场系统设计控制方法。

    As detective area of suspension array, how to design a micro-fluidic system and control the flow velocity are discussed in detail.

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  • 然而由于灌水器内固液两相复杂性目前很难解析方法来描述整个流场特性。

    However, the two-phase flow field in drip emitter is too complex to be characterized using analytical approach now.

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  • 模拟结果实验结果得出混沌流场有利于共混物形成共连续、层以及直径较小且分布较均匀的液滴结构

    The combination of simulated and experimental results indicated that chaotic mixing facilitated to form thinner laminar, co-continuous and fine droplets phase morphology.

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  • 提出了模拟两相喷雾液滴弥散过程的模型

    In this paper, a computational model for simulating turbulent dispersion of droplets in two-phase flow spray field is presented.

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  • 通过吸收CFD模型,应用有限元方法对气液吸收过程中出现自然发生过程进行了数值计算,得到了液相自然对发生时的非稳态分布浓度分布信息。

    Unsteady flow and concentration fields in the liquid phase of a gas-liquid contacting system were simulated to show the natural convection by utilizing the finite-element CFD method.

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  • 压机提供气体通过一排微小直径的喷嘴进入静止水体形成水气单相PIVPTV技术的基础上,研究稀疏液两相情况下气泡的速度分布。

    The gas phase was produced by air compressor and entered into still water in the model by little diametical nozzle on line, and the gas-liquid two phase flow field was formed.

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  • 压机提供气体通过一排微小直径的喷嘴进入静止水体形成水气单相PIVPTV技术的基础上,研究稀疏液两相情况下气泡的速度分布。

    The gas phase was produced by air compressor and entered into still water in the model by little diametical nozzle on line, and the gas-liquid two phase flow field was formed.

    youdao

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