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Performance Based Cost Modeling of Phase Change Thermal Energy Storage for High Temperature Concentrating Solar Power Systems

机译:基于性能的高温聚光太阳能系统相变储热成本模型

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Sizing and cost models were developed for thermal energy storage (TES) systems utilizing cascaded phase change materials (PCM) as the storage media in a variety of configurations. The sizing model is based on an energy balance around a characteristic fundamental element of the system, consisting of a steel pipe embedded in a matrix of phase change material. Due to the transient behavior PCM system, the sizing model requires time and space integrations. The model accounts for decreases in thermal performance caused by precipitate formation on the surface of the pipe and predicts the resulting transient power output. The model calculates the required tank and pipe sizes, the amounts of heat transfer fluid and PCM, as well as the land area for the configuration. Using a cost metric approach, the cost of each system component is estimated. Furthermore, the effect of several technological pitfalls, including: pinch point heat transfer, precipitate buildup, and transient energy output have been investigated. Prices are shown to depend heavily on system configuration. Specifically, prices are shown to be most dependent on precipitate formation during discharge and consequently the size of the necessary heat transfer area of heat exchangers. The cost of different configurations vary from $40/kWh to $100/kWh.
机译:为热能存储(TES)系统开发了尺寸和成本模型,这些系统利用级联相变材料(PCM)作为各种配置的存储介质。尺寸模型基于围绕系统特征基本元素的能量平衡,该基本元素由嵌入相变材料矩阵中的钢管组成。由于瞬态行为PCM系统,尺寸模型需要时间和空间的集成。该模型说明了由于在管道表面形成沉淀而导致的热性能下降,并预测了产生的瞬态功率输出。该模型计算所需的储罐和管道尺寸,传热流体和PCM的量,以及配置的占地面积。使用成本度量方法,可以估算每个系统组件的成本。此外,还研究了几种技术陷阱的影响,包括:夹点传热,沉淀物积聚和瞬态能量输出。价格显示在很大程度上取决于系统配置。具体而言,价格显示出最依赖于排放过程中沉淀物的形成,因此取决于热交换器必要的传热面积的大小。不同配置的成本从$ 40 / kWh到$ 100 / kWh不等。

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