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Thermal Modeling of a Concentrator Pipe Composed with Direct Steam Generation

机译:直接产生蒸汽的选矿厂管的热模型

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摘要

Deflections along the pipes of solar concentrators used for direct steam generation in thermosolar plants lead to some structural problems, due to temperature gradients in radial and angular directions. In this work, a thermal analysis of an absorber copper-steel pipe is made, based on the solution of heat transfer equations in stable and transient state, for the solution of model was used the finite differences method. Radial and angular temperature distributions are presented, as well as the instant at which the system reaches the stationary state under the studied conditions. The considered absorber pipe is a composed walls system of 20% Cu and 80% Steel, constituted by commercial copper pipe of type k with 61.849 and 66.675 mm of internal and external diameter respectively; and a steel pipe of schedule 160 with 66.7 mm of internal diameter and 88.9 mm of external diameter. The properties in the composed wall are favorable because achieves an isothermal state with a maximum gradient of 50℃/m. Therefore, the composed pipe proposed offers greater resistance to the deflection provoked by the direct steam generation.
机译:由于在径向和角度方向上的温度梯度,用于太阳能直接发电的太阳能集热器沿管道的偏转会导致一些结构性问题。本文基于稳态和瞬态状态下的传热方程解,对吸收器铜钢管进行了热分析,对模型的求解采用了有限差分法。给出了径向和角温度分布,以及在研究条件下系统达到稳态的瞬间。所考虑的吸收器管是由20%的铜和80%的钢组成的壁系统,由k型商业铜管组成,其内径和外径分别为61.849和66.675 mm;规格为160的钢管,其内径为66.7毫米,外径为88.9毫米。组合墙的性能良好,因为它达到了等温状态,最大梯度为50℃/ m。因此,提出的组合管对由直接蒸汽产生引起的偏转具有更大的抵抗力。

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