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Mathematical modelling and design of an advanced once-through heat recovery steam generator

机译:先进的一次式余热回收蒸汽发生器的数学建模和设计

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The once-through heat recovery steam generator (HRSG) design is ideally matched to very high temperature and pressure, well into the supercritical range. Moreover this type of boiler is structurally simpler than a conventional one, since no drum is required. In a conventional design, each tube plays a well-defined role: water preheating, vaporisation, superheating. Empirical equations are available to predict the average heat transfer coefficient for each region. For once-through applications, this is no more the case and mathematical models have to be adapted to account for the disappearance of the conventional economiser, boiler and superheater. General equations have to be used for each tube of the boiler, and the actual heat transfer condition in each tube has to be identified. The mathematical complexity as well as the number of equations is increased. A thermodynamic model has been selected and implemented to suit very high pressure (up to 240 bar), sub- and supercritical steam properties. Model use is illustrated by two case studies: a 180 bar once-through boiler (OTB) and a conventional boiler superheater and reheater.
机译:直通式热回收蒸汽发生器(HRSG)的设计与非常高的温度和压力完美匹配,并且可以进入超临界范围。此外,这种类型的锅炉在结构上比传统的锅炉简单,因为不需要鼓。在常规设计中,每个管子都扮演着明确定义的角色:水预热,汽化,过热。经验公式可用于预测每个区域的平均传热系数。对于一次性应用,情况不再如此,必须改编数学模型以解决传统节能器,锅炉和过热器的消失问题。锅炉的每个管子必须使用通用方程式,并且必须确定每个管子的实际传热条件。数学复杂度以及方程式数量增加。已选择并实现了一个热力学模型,以适应非常高的压力(最高240 bar),亚临界和超临界蒸汽性能。通过两个案例研究来说明模型的使用:一个180 bar的直流锅炉(OTB)和一个常规的锅炉过热器和再热器。

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