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Sim2Cool: A Two-Phase Cooling System Simulator and Design Tool

机译:Sim2Cool:两阶段冷却系统模拟器和设计工具

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摘要

The development of two-phase cooling for both two-dimensional (2D) and three-dimensional (3D) integrated circuits using pumped dielectric coolant has gained recent attention due to the ability to manage high heat densities, compatibility with electronics and low cooling energy usage. Development of this approach requires high fidelity and computationally manageable conjugate thermal models both at the device level as well as the system level. Recent studies have shown micro-scale modeling of in-situ thermal and hydrodynamic phenomena (e.g. boiling and bubble dynamics) of two-phase flow boiling with good accuracy. This paper describes a simulation tool named Sim2Cool which addresses the need for macro-scale system level design simulation for two-phase cooling. The Sim2Cool simulation tool uses an enthalpy-based / energy balance model for the system components and a reduced order model for device-level model. The system simulator tool allows system component parameters to be quickly analyzed including; condenser, reservoir and tubing diameter as well as heat dissipation and flow rate to quantify the impact on the system coefficient of performance (COP). Such tools are critical to accelerating the integration of two phase cooling with microelectronics to realize performance gains by way of high density electronic packaging as Moore's law on silicon technology advancement reaches physics limits.
机译:由于能够管理高热密度,与电子设备兼容以及冷却能量消耗低的能力,使用抽运的介电冷却剂为二维(2D)和三维(3D)集成电路开发两相冷却已引起了近期的关注。 。这种方法的发展要求在设备级别以及系统级别都需要高保真度和可计算管理的共轭热模型。最近的研究表明,两相流沸腾的原位热和流体动力学现象(例如沸腾和气泡动力学)的微观模型具有良好的准确性。本文介绍了一种名为Sim2Cool的仿真工具,该工具可满足两相冷却的宏观系统级设计仿真需求。 Sim2Cool仿真工具对系统组件使用基于焓/能量平衡的模型,对设备级模型使用降阶模型。系统模拟器工具允许快速分析系统组件参数,包括:冷凝器,储液器和油管直径以及散热和流速,以量化对系统性能系数(COP)的影响。当摩尔定律对硅技术的发展达到物理极限时,此类工具对于加速两相冷却与微电子学的集成以通过高密度电子封装实现性能提升至关重要。

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