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Temperature-aware time-varying convection over a duty cycle for a given system thermal-topology

机译:给定系统热拓扑的占空比上的温度感知时变对流

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摘要

Smart dynamic thermal management (SDTM) is a key enabling technology for optimal design of the emerging transient heat exchangers/heat sinks associated with advanced power electronics and electric machines (APEEM). The cooling systems of APEEM undergo substantial transition as a result of time-varying thermal load over a duty cycle. Optimal design criteria for such dynamic cooling systems should be achieved through addressing internal forced convection under time-dependent heat fluxes. Accordingly, an experimental study is carried out to investigate the thermal characteristics of a laminar fully-developed tube flow under time-varying heat fluxes. Three different transient scenarios are implemented under: (ⅰ) step; (ⅱ) sinusoidal; and (ⅲ) square-wave time-varying thermal loads. Based on the transient energy balance, exact closed-form relationships are proposed to predict the coolant bulk temperature over time for the aforementioned scenarios. In addition, based on the obtained experimental data and the methodology presented in Fakoor-Pakdaman et al. (2014), semi-analytical relationships are developed to calculate: (ⅰ) tube wall temperature; and (ⅱ) the Nusselt number over the implemented duty cycles. It is shown that there is a 'cut-off angular frequency for the imposed power beyond which the heat transfer does not feel the fluctuations. The results of this study provide the platform for temperature-aware dynamic cooling solutions based on the instantaneous thermal load over a duty cycle.
机译:智能动态热管理(SDTM)是一项关键的启用技术,可用于优化设计与先进电力电子和电机(APEEM)相关的瞬态换热器/散热器。 APEEM的冷却系统由于在工作周期内随时间变化的热负荷而经历了实质性的转变。这种动态冷却系统的最佳设计标准应通过解决与时间有关的热通量下的内部强制对流来实现。因此,进行了实验研究以研究层流充分发展的层流在时变热通量下的热特性。在以下三种情况下实现了三种不同的瞬态方案:(ⅰ)步骤; (ⅱ)正弦曲线; (ⅲ)方波时变热负荷。基于瞬态能量平衡,提出了精确的闭合形式关系,以预测上述情况下随时间变化的冷却剂总体温度。此外,根据获得的实验数据和Fakoor-Pakdaman等人提出的方法。 (2014年),开发了半分析关系来计算:(ⅰ)管壁温度; (ⅱ)实施工作周期内的努塞尔特数。结果表明,对于所施加的功率,存在一个“截止角频率”,在该频率以上,传热不会感觉到波动。这项研究的结果为基于占空比的瞬时热负荷的温度感知型动态冷却解决方案提供了平台。

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  • 作者单位

    Laboratory for Alternative Energy Conversion (LAEC), School of Mechatronic Systems Engineering, Simon Fraser University, Surrey, BC, V3T 0A3, Canada;

    Laboratory for Alternative Energy Conversion (LAEC), School of Mechatronic Systems Engineering, Simon Fraser University, Surrey, BC, V3T 0A3, Canada;

    Laboratory for Alternative Energy Conversion (LAEC), School of Mechatronic Systems Engineering, Simon Fraser University, Surrey, BC, V3T 0A3, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Convection; Dynamic systems; Transient; Experiment; Duty cycle;

    机译:对流;动态系统;短暂的;实验;占空比;

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