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ENERGY SAVING AND OPTIMIZATION RESEARCH ON THE CONDENSATION-STEAM SYSTEM OF A SUPERCRITICAL THERMAL POWER PLANT

机译:超临界火力发电厂冷凝蒸汽系统节能与优化研究

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The efficiency and reliability of thermal power plant directly depends on conditions of the condensation-steam system. The key of energy-saving and optimal operation in condensation-steam system is to adjust the circulating cooling water flow with different operation conditions to get the optimal vacuum. This paper presents the optimal mathematical model of circulating water flow of a 600MW supercritical thermal powerplant using Matlab/Simulink. And this model has comprehensively considered the coupling influence of many parameters on the optimal vacuum, including circulating cooling water temperature, cooling water flow, vacuum pump output, condenser cleanness, and makeup water. This model can not only simulate the thermodynamic parameters of the condensation-steam system on operation conditions, but also simulate the influence of the health status of condensation-steam equipments on the operating performance. The accuracy of this model is validated by comparing the simulation results with design parameters under different conditions. We studied the optimal vacuum on off-design conditions using the model. The research shows that the change of the vacuum pump output will affect the results of the optimum circulating water flow, so the net power of the unit should be calculated with consideration of the change of the vacuum pump output in order to get the more practical optimal circulating water flow. The cleanliness of heat transfer surface has a great influence on the optimum circulating water flow. When the cleanliness is poor, the unit needs larger circulating flow to maintain the optimal vacuum. We should estimate the cleanliness of heat transfer surface to arrange suitable cleaning interval time according to the operation conditions of the unit.
机译:热电厂的效率和可靠性直接取决于冷凝蒸汽系统的条件。冷凝蒸汽系统中节能和最佳操作的关键是调节具有不同操作条件的循环冷却水流以获得最佳真空。本文采用MATLAB / Simulink的600MW超临界热动力装置循环水流的最佳数学模型。该模型已综合考虑对最佳真空许多参数,包括循环冷却水温度,冷却水流量,真空泵输出,冷凝器清洁,和化妆水的耦合影响。该模型不仅可以模拟冷凝蒸汽系统的热力学参数,还可以模拟冷凝蒸汽设备的健康状况对操作性能的影响。通过将模拟结果与不同条件下的设计参数进行比较来验证该模型的准确性。我们使用该模型研究了在非设计条件下的最佳真空。该研究表明,真空泵输出的变化会影响最佳循环水流的结果,因此应考虑到真空泵输出的变化来计算单位的净功率,以便获得更实用的最佳优化循环水流。传热表面的清洁度对最佳循环水流具有很大的影响。当清洁度差时,该单位需要更大的循环流动以保持最佳真空。我们应该估计传热表面的清洁度,以根据装置的操作条件安排合适的清洁间隔时间。

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