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CAPACITY CALCULATION METHOD STUDY ON THE EMERGENCY DIESEL GENERATOR APPLIED IN HTR-PM

机译:HTR-PM施用应急柴油发电机的能力计算方法研究

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The paper introduces the capacity calculation method of emergency diesel generator sets applied in the HTR-PM, which is a demonstration project in China. This project is currently in the construction design stage. The designed reactor power is 250MW. Totally two class 1E emergency diesel generator sets are required for the safety of reactors. Due to the inherent safety feature of the reactor, the amount of safety related loads is comparatively less than regular PWRs in China. Therefore, the capacity calculation method basing on the composition of the shaft power of each electrical device is no longer suitable for this project. According to the loading features and loading sequence of the generator sets, the paper proposes a new method which uses conversion coefficient method in the load statistical process and analyzes the required capacity values for the generator sets in both steady and transient states. Basing on those values, by considering the performances of diesel engine and generator respectively, the ultimate capacity of two emergency diesel generator sets is able to be determined. In the process of load statistics, emergency loads of the generator sets are divided into several categories such as static loads, motor loads, power electronic loads, et al. In order to guarantee the accuracy of the calculation, several major parameters of the equation set are verified by targeted experiments. In order to ensure the power quality and safety of the emergency power system of the project, the voltage deviation caused by the startup of large capacity motor is verified as well.
机译:本文介绍了在HTR-PM中应用的紧急柴油发电机组容量计算方法,这是中国的示范项目。该项目目前处于施工设计阶段。设计的反应堆功率为250mW。完全两级紧急柴油发电机需要电抗器的安全性。由于反应堆的固有安全性,安全相关载荷量比中国的普通PWR相对较低。因此,基于每个电气装置的轴功率组成的容量计算方法不再适用于该项目。根据发电机组的加载特征和加载顺序,本文提出了一种在负载统计过程中使用转换系数方法的新方法,并分析了稳态和瞬态状态的发生器集的所需容量值。基于这些值,通过考虑柴油发动机和发电机的性能,可以确定两个紧急柴油发生器组的最终容量。在负载统计过程中,发电机组的紧急载荷分为几个类别,例如静电负载,电动机负载,电力电子负载等等。为了保证计算的准确性,通过有针对性的实验验证了等式集的几个主要参数。为了确保项目的紧急电力系统的电能质量和安全性,验证了由大容量电机启动引起的电压偏差。

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