A new analytical model of a radial turbine and validation by experiments

H. Pourfarzaneh, A. Hajilouy-Benisi, M. Farshchi
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引用次数: 2

Abstract

In the conceptual design phase of a turbocharger, where emphasis is mainly on parametric studies, before manufacturing and tests, a generalized and robust model that applies over a wide range properly, is unavoidable. 12The critical inputs such as turbine maps are not available during the conceptual design phase. Hence, generalized turbine models use alternate methods that work without any supplementary tests and can operate over wide ranges. One of the common and applicable modeling methods in design process is ‘Dimensionless Modeling’ using the constant coefficient scaling (CCS). This method can almost predict the turbine characteristics at the design point. However, at off-design conditions, the error goes up as mass flow and speed parameters increase. Therefore, the results are not reliable at these points. In this paper, a variable coefficient scaling (VCS) method is described. Then, a radial turbine is modeled using the VCS method. To evaluate the model and compare it with the experimental results, some supplementary experiments are performed. Experimental studies are carried out on the turbine of a S2B model of the Schwitzer turbocharger in the turbocharger Lab., at Sharif University of Technology. The comparison between the experimental results and those obtained by the VCS method indicates good agreement. It also suggests that the present model can be used as an effective design tool for all operating conditions.
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一种新的径向水轮机解析模型及实验验证
在涡轮增压器的概念设计阶段,在制造和测试之前,重点主要是参数研究,因此不可避免地需要一个适用于广泛范围的通用和健壮的模型。在概念设计阶段,涡轮机图等关键输入是不可用的。因此,通用涡轮模型使用替代方法,无需任何补充试验,可以在大范围内运行。设计过程中常用的建模方法之一是采用常系数缩放法(CCS)的“无量纲建模”。该方法几乎可以预测设计点的涡轮特性。在非设计工况下,误差随质量流量和速度参数的增大而增大。因此,在这些点上的结果是不可靠的。本文描述了一种变系数标度(VCS)方法。然后,利用VCS方法对径向水轮机进行建模。为了对模型进行评价并与实验结果进行比较,进行了一些补充实验。在涡轮增压器实验室对Schwitzer涡轮增压器的S2B型涡轮进行了实验研究。谢里夫理工大学的教授。将实验结果与VCS方法的结果进行了比较,结果吻合较好。这也表明,目前的模型可以作为一个有效的设计工具,为所有的操作条件。
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