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Evaluate the validity of the empirical correlations of clearance and friction coefficients to improve a scroll expander semi-empirical model

机译:评估清除和摩擦系数的经验相关性的有效性,以改善卷轴膨胀机半经验模型

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摘要

This study presents a scroll expander modelling methodology for small scale power generation systems by combining scroll geometry and semi-empirical model. Although the semi-empirical model is quite popular, its dependence on several experimentally-determined scroll geometrical and operational parameters makes this approach inflexible for different capacities and operating conditions. Some studies have sought to improve its flexibility in terms of using different working fluids and more accurate empirical parameters, however, those improved models still depend on a considerable number of experimentally-obtained scroll parameters. Therefore, in this study, a practical methodology for a simpler semi-empirical model combined with the operational flexibility of the scroll geometry is presented. Firstly, the flow rates of mainstream and leakage flows are analysed, where a correlation between scroll clearance and pressure ratio is determined. Secondly, a simpler approach to the semi-empirical model of scroll expander is proposed, whereby dependent parameters have been reduced to two parameters by using scroll geometrical calculations. The model is further improved to predict the rotational speed and electricity output by considering the overall friction coefficient of the coupled expander-generator unit. The findings are then compared with the results of an experimental study. The results show that the effective clearance values between scrolls vary according to pressure ratios, increasing from 20 μm to 34 μm. Mass flow rate can be predicted within 10% deviation from the experimental results for the same inlet conditions and rotational speed at a transient state. Additionally, considering steady state conditions, modelling results show that the rotational speed and electricity output can also be predicted within 8% and 7.5% of deviation, respectively.
机译:本研究通过组合滚动几何和半经验模型来提出针对小型发电系统的滚动扩展器建模方法。虽然半经验模型非常受欢迎,但它对若干实验确定的滚动几何和操作参数的依赖性使得这种方法对不同的容量和操作条件产生了不灵活的。一些研究要求在使用不同的工作流体和更准确的经验参数方面提高其灵活性,然而,这些改进的模型仍然取决于相当数量的实验所获得的滚动参数。因此,在本研究中,提出了一种与涡旋几何形状的操作灵活性结合的更简单的半实验模型的实用方法。首先,分析主流和泄漏流的流速,其中确定滚动间隙和压力比之间的相关性。其次,提出了一种更简单的滚动膨胀机模型的方法,从而通过使用滚动几何计算已经减少到两个参数。通过考虑耦合的扩展器发生器单元的总摩擦系数,进一步改善了该模型以预测转速和电力输出。然后将研究结果与实验研究的结果进行比较。结果表明,涡旋盘之间的有效间隙值根据压力比而变化,从20μm增加到34μm。可以预测质量流量在与瞬态状态相同的入口条件和旋转速度的实验结果的10%偏差范围内。另外,考虑到稳态条件,建模结果表明,旋转速度和电力输出也可以分别在8%和7.5%以内预测。

著录项

  • 来源
    《Energy》 |2020年第2期|117723.1-117723.14|共14页
  • 作者单位

    Department of Architecture and Built Environment Faculty of Engineering University of Nottingham Nottingham NG7 2RD UK;

    Department of Mechanical Engineering Tarsus University 33400 Mersin Turkey;

    School of Engineering and Computer Science University of Hull Hull HU6 7RX UK;

    Department of Architecture and Built Environment Faculty of Engineering University of Nottingham Nottingham NG7 2RD UK;

    Department of Thermal Science and Energy Engineering University of Science and Technology of China 96 Jinzhai Road Hefei 230027 China;

    Department of Thermal Science and Energy Engineering University of Science and Technology of China 96 Jinzhai Road Hefei 230027 China;

    Department of Architecture and Built Environment Faculty of Engineering University of Nottingham Nottingham NG7 2RD UK;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Clearance; Empirical correlation; Leakage area; Friction coefficient; Scroll geometry; Semi-empirical model;

    机译:清除;经验相关;泄漏面积;摩擦系数;滚动几何;半经验模型;

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