常规与低剪切阀对比试验结果及对水/油分离的影响

A. Monteiro, Fabricio Soares da Silva
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摘要

在过去的几年里,已经做了大量的工作,重点是开发低剪切阀解决方案,应用于石油一次加工装置。低剪切阀的主要目标是生成油包水(WiO)和水包油(OiW)乳液,与传统阀产生的乳液相比,分离过程更容易处理。本文介绍了商用低剪切阀与普通低剪切阀的对比实验结果。两个阀门平行安装在测试回路上,用于所有测试基质点的流体是混合了巴西石油公司Marlim原油的饮用水。测试矩阵包括阀压差、流量和水/油浓度的变化。样品在两个阀门的下游收集,并引导沉淀到几个停留时间。分析了两相在所有停留时间内的污染程度。在各种试验条件下,对应用低剪切阀的效益进行了量化,结果非常令人满意。阀间压降的选择考虑了巴西石油公司在节流阀和控制阀上观察到的典型值。对于几乎所有的测试基质点,低剪切阀产生的乳化液至少有轻微的好处,使得沉淀后的水质更好。低剪切阀解决方案是一种有前景的技术,但效益的大小受阀门工艺操作条件的影响很大。
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Test Results of a Comparison between a Conventional and Low Shear Valve and Its Effect on Water/Oil Separation
During the last years, a lot of work have been done focusing on development of low shear valves solutions to be applied on petroleum primary process plants. The main goal of the low shear valve is to generate water-in-oil (WiO) and oil-in-water (OiW) emulsions that can be easier treated by the separation process, when compared with emulsion generated by conventional valves. This paper presents experimental results of a comparison between a commercial low shear valve and a conventional valve. Both valves were installedin parallel on a test loop and the fluids used for all test matrix points were potable water mixed with Petrobras Marlim Crude Oil. The test matrix includes variation of differential pressure on valves, flowrates and concentration of water/oil. Samples were collected downstream of both valves and led to settle into several residence times. The degree of contamination of both phases were analyzed for all residence times. The benefit of the application of low shear valve was quantified for all test conditions and the results were very promissory. The pressure drops across valves were selected considering typical values observed at Petrobras choke valves and control level valves. For almost all test matrix's points the emulsion generated by the low shear valve showed at least a slight benefit, allowing have better water quality after settling. The low shear valve solution showed to be a promissory technology but the magnitude of the benefit is very influenced by valve process operation conditions.
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