首页> 外文会议>ASME Turbomachinery Technical Conference and Exposition >AN INVESTIGATION ON THE LOSS GENERATION MECHANISMS INSIDE DIFFERENT CENTRIFUGAL COMPRESSOR VOLUTES FOR TURBOCHARGERS
【24h】

AN INVESTIGATION ON THE LOSS GENERATION MECHANISMS INSIDE DIFFERENT CENTRIFUGAL COMPRESSOR VOLUTES FOR TURBOCHARGERS

机译:涡轮增压器不同离心压缩机蜗壳内丧失发电机制的研究

获取原文

摘要

In centrifugal compressor design, the volute plays a key role in defining the overall efficiency and operating range of the stage. The flow at the impeller outlet is indeed characterized by a high kinetic energy content, which is first converted to potential energy in the diffuser downstream. The compressed gas is then collected by the volute at the cylindrical outlet section of the diffuser and directed to the intake piping, possibly with a further pressure recovery to enhance the stage performance. Due to the high flow speed at the volute inlet, the capability of ensuring the lowest amount of total pressure loss is pivotal to prevent a detriment of the machine efficiency. Moreover, the flow conditions change when the volute operates far from its design point: at mass flow rates lower than the design one, the flow becomes diffusive, while at higher mass flow rates the fluid is accelerated, thus leading to different loss-generation mechanisms. These phenomena are particularly relevant in turbocharger applications, where the compressor needs to cover a wide functioning range; moreover, in these applications the definition of the volute shape is often driven also by space limitations imposed by the vehicle layout, leading to a variety of volute types. The present paper reports an analysis on the sources of thermodynamic irreversibilities occurring inside different volutes applied to a centrifugal compressor for turbocharging applications. Three demonstrative geometrical configurations are analyzed by means of 3D numerical simulations using common boundary conditions to assess the overall volute performance and the different loss mechanisms, which are evaluated in terms of the local entropy generation rate. The modification of the loss mechanisms in off-design conditions is also accounted for by investigating different mass flow rates. It is finally shown that the use of the entropy generation rate for the assessment of the irreversibilities is helpful to understand and localize the sources of loss in relation to the various flow structures.
机译:在离心式压缩机设计中,蜗壳在定义阶段的整体效率和操作范围内起着关键作用。叶轮出口处的流动确实是高动能含量的特征,其首先将扩散器下游的势能转换成势能。然后,压缩气体通过速度在漫射器的圆柱形出口部分处收集并向进气管引导,可能具有进一步的压力恢复以增强阶段性能。由于蜗壳入口处的高流速,能够确保总压力损失的最低量是关键的,以防止损害机器效率。此外,当蜗壳远离其设计点时,流动条件会改变:在低于设计的质量流速下,流量变得漫反射,而流体加速流体较高,从而导致不同的损耗机构。这些现象在涡轮增压器应用中特别相关,其中压缩机需要覆盖宽的功能范围;此外,在这些应用中,蜗壳形状的定义通常也通过车辆布局施加的空间限制来驱动,导致各种蜗壳类型。本文举报了在适用于涡轮增压应用的离心压缩机的不同蜗壳内发生的热力学不义的源的分析。使用共同的边界条件通过3D数值模拟分析三种示范性几何配置,以评估整体蜗壳性能和不同损耗机制,这些损耗机制在局部熵产生率方面评估。通过研究不同的质量流量,还考虑了非设计条件中的损耗机制的修改。终于表明,使用熵产生率进行评估,有助于理解和定位与各种流动结构相关的损失源。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号