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Mathematical model of natural circulation biomass boilers during start-up

机译:自然循环生物质锅炉启动过程的数学模型

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A natural circulation biomass boiler is a highly dynamic system, especially during start-up where the entire system is initially cold and at rest. During the start-up procedure, swelling inside the steam drum is often experienced due to the evaporation and rapid volumetric expansion of water. A mathematical model describing the dynamics of a natural circulation evaporator is presented. The boiler system is divided into subsystems where the mass, momentum and energy equations are formulated and applied. The complex geometry of the boiler is simplified and discretized in one dimension. The model captures the transient evaporation of water and the dynamic instabilities affiliated with the phase transition. During the phase transition to the two-phase regime, the steam produced displaces water. The rapid volumetric expansion of water causes mass to be transferred to the steam drum, resulting in high water levels. It is concluded that in order to model the dynamic behaviour of a natural circulation boiler with a steam drum, the subcooled region and the phase transition needs to be considered, since the phase transitions in the evaporator tubes result in rapid swelling inside the steam drum. (C) 2019 Elsevier Ltd. All rights reserved.
机译:自然循环生物质锅炉是一个高度动态的系统,特别是在整个系统最初处于冷态和静止状态的启动过程中。在启动过程中,由于水的蒸发和体积快速膨胀,经常会在蒸汽鼓内发生膨胀。提出了描述自然循环蒸发器动力学的数学模型。锅炉系统分为子系统,在该子系统中制定并应用质量,动量和能量方程。锅炉的复杂几何形状在一维中得以简化和离散化。该模型捕获了水的瞬时蒸发以及与相变有关的动态不稳定性。在向两相状态的相变期间,产生的蒸汽驱替水。水的快速体积膨胀导致质量转移到蒸汽鼓中,从而导致高水位。结论是,为了模拟带有蒸汽鼓的自然循环锅炉的动态特性,需要考虑过冷区域和相变,因为蒸发器管中的相变会导致蒸汽鼓内部迅速膨胀。 (C)2019 Elsevier Ltd.保留所有权利。

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