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液-液水力旋流器内轻相浓度场的非稳态模拟
引用本文:琚选择,倪浩,曾树兵,余智,张立平,李自力. 液-液水力旋流器内轻相浓度场的非稳态模拟[J]. 计算机与应用化学, 2010, 27(2)
作者姓名:琚选择  倪浩  曾树兵  余智  张立平  李自力
作者单位:1. 海洋石油工程股份有限公司,天津,300451
2. 中海石油研究中心,北京,100027
3. 中国石油大学储运与建筑工程学院,山东,东营,257061
摘    要:为了更好地掌握液-液水力旋流器内油水流动和分离特性与结构的关系,采用计算流体力学的有限体积法(FVM),对其轻相分离过程进行了非稳态的数值计算,得到了轻相(油)在旋流器内的逐渐分离、聚积和运移的过程,分析发现,大锥段和小锥段的分离效果明显,尤其在小锥段的中心区轻相(油)聚积的浓度最高。因此,对大锥段和小锥段优化设计是提高旋流器分离效率的最重要的方面之一,可以进一步研究锥段的过渡型式,如采用高次曲线。

关 键 词:液-液分离  水力旋流器  非稳态过程  数值模拟

Unsteady numerical simulation of concentration field of light phase in the liquid-liquid hydrocyclone(LLHC)
Ju Xuanze,Ni Hao,Zen Shubing,Yu Zhi,Zhang Liping,Li Zili. Unsteady numerical simulation of concentration field of light phase in the liquid-liquid hydrocyclone(LLHC)[J]. Computers and Applied Chemistry, 2010, 27(2)
Authors:Ju Xuanze  Ni Hao  Zen Shubing  Yu Zhi  Zhang Liping  Li Zili
Abstract:In order to better master the flow and separation character of oil and water in the liquid-liquid hydrocyclone,by unsteady numerical simulation of light phase separating process which used the method of the finite volume method(FVM),the process of separating,aggregating and shifting of the light phase(oil)is gained.Though further analysis of the process we found that the separation in the large conical section and the small conical section is evident,especially that the concentration of light phase(oil)was highest in the central region of the small conical section.Therefore,optimized design of the big conical section and the small conical section is a main aspect to improve separating efficiency,the transitional type of conical sections may be further studied,for example,use the highorder curve.
Keywords:liquid-liquid separation  hydrocyclone  unsteady process  numerical simulation
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