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EFFECT OF FLUID PROPERTIES ON SLUG DISSIPATION IN ENLARGED IMPACTING TEE

机译:流体特性对加大冲击三通中团块消散的影响

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An experimental and theoretical investigation is conducted on the effect of inlet slug length and fluid properties on slug dissipation in an enlarged impacting tee-junction (EIT). The EIT is the building block of a multiphase manifold. Prediction of the slug dissipation length in the EIT provides a guideline for the optimum diameter and length of a manifold. A multiphase flow loop is utilized to investigate slug dissipation in an EIT. The EIT inlet pipe is inclined slightly upward at 5 degrees, in which stationary slugs of different lengths are formed. The generated slugs are pushed into the EIT branches by a pre-determined gas flow rate. Over 80 experimental runs are conducted with superficial gas velocities between 3 to 9 m/s and inlet slug lengths between 40d to 90d, for both air-water and air-oil flows. The experimental data confirm that increasing the superficial gas velocity, as well as the slug body length in the inlet pipe lead to increasing the slug dissipation length in the EIT branches. Furthermore, the data demonstrate that higher slug dissipation length is obtained with water as compared to oil. A mechanistic model is developed for the prediction of slug dissipation in an EIT. A comparison between the developed mechanistic model predictions and the experimental data show a discrepancy less than 20%.
机译:对入口塞段长度和流体特性对扩大的冲击三通(EIT)中塞段耗散的影响进行了实验和理论研究。 EIT是多相歧管的组成部分。 EIT中段塞消散长度的预测为歧管的最佳直径和长度提供了指导。多相流回路用于研究EIT中的段塞耗散。 EIT入口管略微向上倾斜5度,在其中形成了不同长度的固定块。产生的团块以预定的气体流速被推入EIT分支。对于空气-水和空气-油流,进行了80多次实验,表观气体速度在3至9 m / s之间,入口段塞长度在40d至90d之间。实验数据证实,增加表层气体速度以及进气管中的段塞体长度会导致EIT分支中段塞的散发长度增加。此外,数据表明,与油相比,水获得了更高的块状消散长度。开发了一种机械模型来预测EIT中的团块耗散。所开发的机械模型预测与实验数据之间的比较表明差异小于20%。

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