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ECONOMIC CHANCES AND TECHNICAL RISKS OF THE INTERNAL DIRECT ABSORPTION RECEIVER (IDAR)

机译:内部直接吸收接收器(IDAR)的经济变化和技术风险

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Increased receiver temperatures of solar tower power plants are proposed to decrease the plants levelized electricity costs (LEC) due to the utilization of supercritical steam power plants and thus higher overall plant efficiency. Related to elevated receiver temperatures preliminary concept studies show a distinct LEC reduction potential of the internal direct absorption receiver (IDAR), if it is compared to liquid in tube (LIT) or beam down (BD) receiver types. The IDAR is characterized by a downwards oriented aperture of a cylindrical cavity, whose internal lateral area is illuminated from the concentrator field and cooled by a liquid molten salt film. The objective is the further efficiency enhancement, as well as the identification and assessment of the technical critical aspects. For this a detailed fluid mechanic and thermodynamic receiver model of the novel receiver concept is developed to be able to analyze the IDAR's operating performance at full size receiver geometries. The model is used to analyze the open parameters concerning the feasibility, functionality and performance of the concept. Hence, different system management strategies are examined and assessed, which lead to the proposal of a cost optimized lead-concept. This concept involves a rotating receiver system with inclined absorber walls. The spatial arrangements of the absorber walls minimize thermal losses of the receiver and enhance film stability. The centrifugal forces acting on the liquid salt film are essential to realize the required system criteria, which are related to the maximal molten salt temperature, film stability and droplet ejection. Compared to the state of the art at a 200 MW_(el) power level the IDAR concept can lead to a LEC reduction of up to 8 %. The cost assumptions made for the assessment are quantified with sensitivity analysis.
机译:提议提高太阳能塔式发电厂的接收器温度,以降低由于利用超临界蒸汽发电厂而使发电厂平准化的电费(LEC),从而提高发电厂的整体效率。与接收器温度升高有关,初步的概念研究表明,如果将其与管内液体(LIT)或射束向下(BD)接收器类型进行比较,则内部直接吸收式接收器(IDAR)的LEC降低潜力明显。 IDAR的特征是圆柱形腔体朝下的孔,其内部侧面区域从聚光器场照亮,并被液态熔融盐膜冷却。目的是进一步提高效率,以及识别和评估技术关键方面。为此,开发了新颖的接收器概念的详细的流体力学和热力学接收器模型,以便能够分析IDAR在全尺寸接收器几何形状下的运行性能。该模型用于分析有关该概念的可行性,功能性和性能的开放参数。因此,检查和评估了不同的系统管理策略,从而提出了成本优化的前导概念的建议。该概念涉及具有倾斜吸收器壁的旋转接收器系统。吸收器壁的空间布置使接收器的热损失最小化,并增强了薄膜的稳定性。作用在液态盐膜上的离心力对于实现所需的系统标准至关重要,该标准与最高熔融盐温度,膜稳定性和液滴喷射有关。与200 MW_(el)功率水平下的现有技术相比,IDAR概念可以使LEC降低多达8%。评估的成本假设通过敏感性分析进行量化。

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