首页> 外文会议>International Conference on Offshore Mechanics and Arctic Engineering >EFFECTS OF GEOMETRIC AND OPERATING PARAMETERS ON THE SEPARATION PERFORMANCE OF AIR-INJECTED DE-OIL HYDROCYCLONE
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EFFECTS OF GEOMETRIC AND OPERATING PARAMETERS ON THE SEPARATION PERFORMANCE OF AIR-INJECTED DE-OIL HYDROCYCLONE

机译:几何和运行参数对空气注入的脱油水力旋流器分离性能的影响

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A new type hydrocyclone, air-injected de-oil hydrocyclone (AIDOH), was developed. Basic separation principle of the AIDOH, prototype structure, experimental technical process and facilities are introduced. The effect of different geometric parameters, including vortex finder diameter and length, micro-pore diameter, and different operating conditions, such as flowrate, split ratio, gas-liquid ratio, and air-injecting position, were studied. Laboratory experiments were carried out first to provide basis for field tests. The field research indicates that, for around 1000 mg/1 polymer-flooding oily produced-water, the optimum flowrate is 4.20 m~3/h for the testing prototype, the split ratio should be 30%; gas-liquid ratio 0.45. It also shows that 20-40 μm micro-pore materials are optimum diameter for hydrocyclonic separation enhancement Research indicates that the AIDOH has satisfied separation effect, which is feasible for emulsified oil treatment. The AIDOH will have better application prospect in petrochemical, environmental field, especially for offshore application, to reduce space occupied by normal water treatment facilities.
机译:开发了一种新型水力旋流器,空气注入的脱油水力旋流器(Aidoh)。介绍了辅助,原型结构,实验技术工艺和设施的基本分离原理。研究了不同几何参数,包括涡旋发现器直径和长度,微孔直径和不同的操作条件,例如流量,分流比,气液比和空气注入位置。首先进行实验室实验以提供现场测试的基础。现场研究表明,对于约1000mg / 1聚合物泛滥的油性生产 - 水,测试原型为4.20 m〜3 / h,分流比应为30%;气液比0.45。它还表明,20-40μm微孔材料是用于氢胞间分离增强研究的最佳直径,表明辅助乳化效果满意,这是乳化油状物的可行性。 Aidoh将在石化,环境领域具有更好的应用前景,特别是对于海上应用,以减少正常水处理设施所占用的空间。

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