首页> 外文会议>ASME Power Conference 2005: Includes Papers from the 2005 International Conference on Power Engineering(ICOPE) pt.A >Design of A Moderate Speed-High Capacity Centrifugal Compressor with Application to PSA And VPSA Air Separation Processes
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Design of A Moderate Speed-High Capacity Centrifugal Compressor with Application to PSA And VPSA Air Separation Processes

机译:中速大容量离心压缩机的设计及其在PSA和VPSA空分过程中的应用

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The performance of the PSA (Pressure Swing Adsorption) or VPSA (Vacuum Pressure Swing Adsorption) cycle in an oxygen air separation process is significantly dependent upon the working capacity and working selectivity afforded by the adsorbent. These parameters in turn are dependent on the adsorption pressures employed in the VPSA cycle. Despite the increasing demand for increased capacity and pressure in VPSA air separation plants, they have conventionally used rotary-type positive displacement blowers as the process machinery. These blowers, while most adapted to the oscillating nature of the pressure swing cycles, have increasing high cost per capacity at higher capacities and become very inefficient as the cycle pressures are increased. A new low cost and more efficient process machinery solution is introduced through the use of a moderate speed direct coupled integrated feed and vacuum centrifugal compressor with inlet guide vanes to achieve high efficiencies during the varying operating conditions of the VPSA cycle. In this paper the fundamentals of a VPSA cycle as it applies to a centrifugal compressor operation is presented. A model of the design and predicted performance of a feed and vacuum VPSA centrifugal compressor is presented. A discussion of the proposed design in comparison to a conventional blower is presented. The model and predictions indeed show the superiority of the new design concept to the conventional process machinery equipment in terms of power savings and capacity increase. This new design however requires a feedback control system for the inlet guide vanes.
机译:氧气空气分离过程中PSA(变压吸附)或VPSA(变压吸附)循环的性能在很大程度上取决于吸附剂提供的工作能力和工作选择性。这些参数又取决于VPSA循环中采用的吸附压力。尽管在VPSA空气分离设备中对增加容量和压力的需求不断增长,但它们通常使用旋转式容积式鼓风机作为加工机械。这些鼓风机虽然最适合于变压循环的振荡特性,但是在较高容量下每单位容量的高成本增加,并且随着循环压力的增加而变得非常低效。通过使用带有入口导向叶片的中速直连式集成进料和真空离心压缩机,引入了一种新型的低成本,高效率的过程机械解决方案,以在VPSA循环的各种运行条件下实现高效率。本文介绍了应用于离心式压缩机运行的VPSA循环的基本原理。提出了进料和真空VPSA离心压缩机的设计模型和预测性能。提出了与常规鼓风机相比所提出的设计的讨论。该模型和预测确实显示了新设计概念在节能和增加容量方面优于常规过程机械设备。但是,这种新设计需要进气导向叶片的反馈控制系统。

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