首页> 外文会议>ASME Fluids Engineering Division Meeting;ASME Heat Transfer Conference;International Conference on Nanochannels, Microchannels and Minichannels >THERMAL PERFORMANCE OF SENSIBLE ENERGY STORAGE MODULE CONSISTING OF A CEMENTITIOUS MATRIX: THE EFFECT OF OPERATING CONDITIONS
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THERMAL PERFORMANCE OF SENSIBLE ENERGY STORAGE MODULE CONSISTING OF A CEMENTITIOUS MATRIX: THE EFFECT OF OPERATING CONDITIONS

机译:由水泥矩阵组成的明智能量存储模块的热性能:操作条件的效果

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摘要

The fluid flow and heat transfer inside a concrete thermal energy storage module is simulated for various heat transfer fluid flow rates and inlet temperatures. The storage performance of the module is characterized based on the volume-averaged temperature and normalized energy distribution through the block versus time. In the turbulent flow regime, induced mixing in the pipe strongly enhanced the performance of the module compared to the laminar regime. The block was able to fully charge and discharge in a turbulent flow regime, whereas that behavior was not present in the laminar flow regime.Varying the heat transfer temperature had an effect on the time rate of change of temperature as well as the charge times. As the thermal gradient increased, the initial time rate of temperature in the block increased as well as the charge time. Since the block has higher theoretical energy at a larger gradient, power over a longer duration is necessary to reach a saturation point. By characterizing the thermal performance of the module, the effect of material properties and operational parameters can be studied in order to design a module that can meet the needs of a power generation plant.
机译:混凝土热能存储模块内的流体流动和传热被模拟用于各种传热流体流速和入口温度。模块的存储性能基于体积平均温度和通过块与时间的归一化能量分布的特征。在湍流状态下,与层状制度相比,管道中的混合强烈增强了模块的性能。该块能够在湍流状态下完全充电和放电,而该行为不存在于层流状态中。传热温度对温度变化的时间率和充电时间具有效果。随着热梯度增加,块中的初始温度率增加以及充电时间。由于块在更大的梯度下具有较高的理论能量,因此需要更长持续时间的功率来达到饱和点。通过表征模块的热性能,可以研究材料特性和操作参数的效果,以设计一种能够满足发电厂需求的模块。

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