高级检索

基于累积直方图拟合的核电站温排水基准温度自适应提取方法

An adaptive method for extracting reference temperature of nuclear power plant thermal discharge based on cumulative histogram fitting

  • 摘要: 核电站温排水会造成局部海域海水温度急剧升高,对区域海洋生态系统造成深远影响。针对当前传统基准温度提取方法主观性强、区域适用性受限的不足,本研究提出一种核电站温排水基准温度自适应提取方法——累积直方图二阶梯度法。该方法利用Landsat 9 海表温度(sea surface temperature, SST)热红外卫星数据,以福清核电站(半封闭式海域)和防城港核电站(开放式海域)所在的两种典型海域为研究区域。首先,通过广义逻辑函数对核电站温排水所在海域的SST累积直方图进行拟合。然后,结合核电站温排水的温升分布空间特征,通过拟合函数的二阶导数自动确定基准温度。研究结果表明,累积直方图二阶梯度法提取的基准温度与《滨海核电厂温排水卫星遥感监测技术规范(试行)》建议的海湾平均法(适用于半封闭式海域)和离散多点平均法(适用于开放式海域)提取的基准温度具有很好的一致性,绝对差值 ≤0.15 ℃,平均差值分别为0.12 ℃ (福清核电站)和0.05 ℃ (防城港核电站)。相对于传统的基准温度提取方法,本研究方法无需人为设定阈值或选择温度参考区域,有效克服了传统方法的局限,为核电站温排水遥感监测提供了更便捷可靠的技术支撑。

     

    Abstract: Thermal discharge from a nuclear power plant (NPP) can cause a sharp rise in local sea surface temperature (SST), exerting profound impacts on regional marine ecosystems. To address the limitations of traditional baseline temperature extraction methods, which are highly subjective and have limited regional applicability, this study proposes an adaptive reference temperature extraction method for thermal discharge from nuclear power plant thermal discharge: the cumulative histogram second-gradient method. Using Landsat 9 SST thermal infrared satellite data, this method was applied to two typical sea areas: the Fuding nuclear power plant (a semi-enclosed sea area) and the Fangchenggang nuclear power plant (an open sea area). First, the cumulative histogram of sea surface temperature (SST) in the discharge area was fitted using a generalized logistic function. Then, based on the spatial characteristics of the temperature-rise distribution of the thermal discharge, the reference temperature was automatically determined from the second-order derivative curve. The results show that the reference temperatures extracted by the cumulative histogram second-gradient method are in good agreement with those obtained by the bay average method (suitable for semi-enclosed sea areas) and the discrete multi-point average method (suitable for open sea areas), as recommended in the Technical specification to thermal discharge monitoring for coastal nuclear power plants based on satellite remote sensing(on trial). The absolute differences are ≤0.15 ℃, with mean differences of 0.12 ℃ (for Fuqing NPP) and 0.05 ℃ (for Fangchenggang NPP). Compared with conventional methods, the proposed method requires no manual threshold setting or selection of temperature reference areas, effectively overcoming their limitations and providing more convenient and reliable technical support for remote sensing monitoring of thermal discharge from NPPs.

     

/

返回文章
返回