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The effect on pressure drop across horizontal pipe and control valve for air/palm oil two-phase flow

机译:空气/棕榈油两相流对水平管和控制阀上压降的影响

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Studies on operating characteristics of control valves with two-phase flow have not been given much attention in the literature despite its industrial importance during design and selection as well as during plant operation. However, literature shows considerable work with two-phase flow through pipes and different geometrical shapes of flow ducts. The present work attempts to study experimentally the effect of two-phase flow on pressure drop across the control valve for different volume fractions of the fluids. A typical fluid system of palm oil (liquid phase) and air (gas phase) has been used for the studies. The pressure drop in a horizontal straight pipe upstream of the valve is also considered to test the correlations from the literature on two-phase pressure drop. The same is extended to represent the pressure drop across the valve. The operating characteristics are obtained from the pressure drop relationship and valve opening. It is found that Lockhart-Martini (L-M) parameter and the quality (fraction of liquid) are found to correlate well with the two-phase multiplier defined based on pressure drop with gas phase. The installed characteristics of the valve for varying pressure drop and quality is presented.
机译:尽管在设计和选择以及工厂运行期间具有工业重要性,但对两相流控制阀的运行特性的研究在文献中并未得到足够的重视。然而,文献显示了两相流经管道和不同几何形状的流道的大量工作。本工作试图通过实验研究两相流对不同体积分数的流体通过控制阀的压降的影响。棕榈油(液相)和空气(气相)的典型流体系统已用于研究。还考虑了阀门上游水平直管中的压降,以测试文献中有关两相压降的相关性。相同的扩展表示阀上的压降。从压降关系和阀门开度获得运行特性。发现洛克哈特-马丁尼(L-M)参数和质量(液体分数)与基于气相压降定义的两相乘数很好地相关。提出了用于变化压降和质量的阀门安装特性。

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