MED-TVC两级真空喷射泵模型分析及设计
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TH36

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国家自然科学基金(61773240)资助项目


Model analysis and design of the twostage vacuum ejector used in MED-TVC system
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    摘要:

    提出了一种两级真空喷射泵模型,应用于低温多效蒸馏海水淡化系统中,可以有效提高系统真空度与运行效率。在喷射器结构设计中,提出前后两级喷射泵的关键尺寸比为1∶2,为验证这一结构并同时研究喷射泵内部复杂流场,使用计算流体力学(CFD)仿真软件对喷射泵进行了建模和性能分析,展现了其内部流场特征。为研究一次流压力变化对喷射泵性能的影响,将二次流压力与背压固定,一次流压力从550 kPa增加到630 kPa,发现喷射泵引射比是一个先上升后下降的过程,引射比最大值为0073。固定一次流压力600 kPa,背压100 kPa,两级喷射泵可实现接近58 kPa的高真空度,表明此结构可有效提升海水淡化的系统运行效率,降低能耗。

    Abstract:

    In this paper a twostage vacuum ejector model is proposed, which is applied in the multieffect distillation with thermal vapor compressor (MEDTVC) system, and can improve the vacuum degree and operating efficiency of the system. A scale ratio of 1∶2 between the key dimensions of the two stage ejectors is proposed in the ejector structure design. In order to verify the structure and investigate the complex flow field inside the twostage ejector, the computational fluid dynamics (CFD) simulation software is adopted to carry out the modeling and simulation analysis of the ejector, and the inner flow field characteristics are presented. In order to investigate the influence of primary flow pressure on the performance of the ejector, the primary flow pressure was increased from 550 kPa to 630 kPa while the suction pressure and back pressure were fixed. It was found that the entrainment ratio of the ejector rises firstly, and then reaches a maximum value of 0073; after the maximum point, it begins to decrease with the increasing of the primary flow pressure. The twostage ejector can achieve a vacuum degree of around 58 kPa under the condition of primary flow pressure of 600kPa and back pressure of 100 kPa, which indicates that the proposed structure can effectively improve the operating efficiency and reduce energy consumption of the MEDTVC system.

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薛浩渊,王雷,贾磊. MED-TVC两级真空喷射泵模型分析及设计[J].仪器仪表学报,2019,40(7):114-120

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  • 在线发布日期: 2022-02-17
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