熊浩云, 吴长春, 玉德俊. 适用于输气管道运行方案优化的压缩机功率拟合函数[J]. 油气储运, 2017, 36(6): 734-738. DOI: 10.6047/j.issn.1000-8241.2017.06.019
引用本文: 熊浩云, 吴长春, 玉德俊. 适用于输气管道运行方案优化的压缩机功率拟合函数[J]. 油气储运, 2017, 36(6): 734-738. DOI: 10.6047/j.issn.1000-8241.2017.06.019
XIONG Haoyun, WU Zhangchun, YU Dejun. The fitting function of compress power suitable for optimization of gas pipeline operation scheme[J]. Oil & Gas Storage and Transportation, 2017, 36(6): 734-738. DOI: 10.6047/j.issn.1000-8241.2017.06.019
Citation: XIONG Haoyun, WU Zhangchun, YU Dejun. The fitting function of compress power suitable for optimization of gas pipeline operation scheme[J]. Oil & Gas Storage and Transportation, 2017, 36(6): 734-738. DOI: 10.6047/j.issn.1000-8241.2017.06.019

适用于输气管道运行方案优化的压缩机功率拟合函数

The fitting function of compress power suitable for optimization of gas pipeline operation scheme

  • 摘要: 完成一次大型天然气管网运行方案优化预计需要数十小时的计算机运算时间,其中绝大部分时间用于压缩机组功率计算,基于此,提出利用拟合函数简化压缩机的功率计算,但该方法未考虑压缩机进口温度对功率的影响。为提高拟合精度,引入压缩机进口温度对拟合函数加以改进,并以国内某输气管道系统配置的3种型号压缩机为例检验其效果。结果表明:改进前的最大偏差在10% 以上,而改进后的最大偏差低于5%,平均偏差低于1%。将改进的拟合函数应用于某虚拟管道的工艺运行方案优化过程,其结果与常规方法计算结果的绝对偏差低于0.67 MW,相对偏差低于1.1%,且拟合函数法比常规方法节省了大量计算时间。

     

    Abstract: It is expected to take dozens of hours' computer running time to complete the operation scheme optimization of large-scale natural gas network, and most of the time is spent on the computation of compressor power. It is proposed to simplify the computation of compressor power by using the fitting function, but this method doesn't take into consideration the effect of inlet temperature on compressor power. To increase the fitting precision, the fitting function was modified by introducing the inlet temperature of compressor. Then, three types of compressors installed in a domestic gas pipeline were used to test the performance of the fitting function. It is indicated that the maximum deviation of the fitting function is higher than 10% before the modification and lower than 5% after the modification and the average deviation is lower than 1%. When the modified fitting function is applied to the operation scheme optimization of a virtual gas pipeline, the absolute deviation of the calculation results between the conventional method and fitting function method is less than 0.67 MW and the relative deviation is less than 1.1%. The fitting function method saves much more time than the conventional method.

     

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