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Heat Transfer to Supercritical Water in Advanced Power Engineering Applications: An Industrial Scale Test Rig

机译:先进动力工程应用中超临界水的热传递:工业规模的试验台

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Heat transfer to supercritical water in heated tubes and channels is relevant for steam generators in conventional power plants and future concepts for supercritical nuclear and solar-thermal power plants. A new experimental facility, the high pressure evaporation rig, setup at the Institute for Energy Systems (Technische Universitat Munchen) aims to provide heat transfer data to fill the existing knowledge gaps at these conditions. The test rig consists of a closed-loop high pressure cycle, in which de-ionized water is fed to an instrumented test section heated by the application of direct electrical current. It is designed to withstand a maximum pressure of 380 bar at 580 degrees C in the test section. The maximum power rating of the system is 1 MW. The test section is a vertical tube (material: AISI A213/P91) with a 7000mm heated length, a 15.7mm internal diameter, and a wall thickness of 5.6 mm. It is equipped with 70 thermocouples distributed evenly along its length. It enables the determination of heat transfer coefficients in the supercritical region at various steady-state or transient conditions. In a first series of tests, experiments are conducted to investigate normal and deteriorated heat transfer (DHT) under vertical upward flow conditions. The newly generated data and literature data are used to evaluate different correlations available for modeling heat transfer coefficients at supercritical pressures.
机译:传热到加热管和通道中的超临界水的传热与常规电厂的蒸汽发生器以及超临界核能和太阳能热电厂的未来概念有关。能源系统研究所(慕尼黑工业大学)建立了一个新的实验设施,即高压蒸发台,旨在提供传热数据,以填补这些条件下现有的知识空白。该试验台由一个闭环高压循环组成,在该循环中,将去离子水送入通过直流电加热的仪器化测试部分。它设计为在测试区域中在580摄氏度下承受380 bar的最大压力。系统的最大额定功率为1 MW。测试部分是垂直管(材料:AISI A213 / P91),加热长度为7000mm,内径为15.7mm,壁厚为5.6mm。它配备有70个沿其长度均匀分布的热电偶。它使得能够确定各种稳态或瞬态条件下超临界区域的传热系数。在第一批测试中,进行了实验以研究垂直向上流动条件下的正常传热和传热传热(DHT)。新生成的数据和文献数据用于评估可用于建模超临界压力下的传热系数的不同相关性。

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