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Novel integrations of molten salt cavity tubular solar central receiver with existing gas-fuelled conventional steam power plants

机译:熔融盐腔管状太阳能中央接收器与现有的以气体为燃料的常规蒸汽发电厂的新型集成

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摘要

This paper introduces a new method to integrate the existing equipment of the AL-Hartha steam plant located in Basra, Iraq, using a molten salt cavity tubular solar central receiver (SCR). Cycle Tempo is used to simulate the existing natural gas-fuelled conventional steam power cycle with consideration of the heat and pressure losses. The heliostat field and the central receiver subsystems are coded using MATLAB. The model couples the heat balance with the temperature computation of the receiver walls for calculation and analysis of the thermal losses. The proposed modified codes are capable of calculating heat losses, evaluating the integrated power plant and satisfying a wide range of SCRs. The results are verified against plant data and previous works in the literature and good agreement is obtained. The results show the potential of using a molten salt cavity tubular for low-range temperature to integrate the economizer (EN) and air preheater, as well as the optimum scheme for the integration of the existing plant with an SCR. It is observed that the best improvement for the existing AL-Hartha steam plant and the integrated molten salt cavity tubular SCR can be achieved by integrating EN, and there is about 9.1% saving in gas fuel consumption.
机译:本文介绍了一种使用熔融盐腔管状太阳能中央接收器(SCR)集成位于伊拉克巴士拉的AL-Hartha蒸汽厂现有设备的新方法。 Cycle Tempo用于考虑热量和压力损失来模拟现有的以天然气为燃料的常规蒸汽动力循环。定日镜场和中央接收器子系统使用MATLAB进行编码。该模型将热平衡与接收器壁的温度计算耦合在一起,以计算和分析热损失。提出的修改后的代码能够计算热量损失,评估综合电站并满足各种SCR。对照植物数据和文献中的先前工作验证了结果,并获得了良好的一致性。结果表明,在较低温度范围内使用熔融盐腔管来集成省煤器(EN)和空气预热器的潜力,以及将现有工厂与SCR集成的最佳方案。可以看出,通过集成EN可以对现有的AL-Hartha蒸汽装置和集成的熔盐腔管状SCR进行最大的改进,并且可以节省约9.1%的气体燃料消耗。

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