解决110 k V阳山变电站两台主变压器并列运行时产生环流的问题。基于主变压器并列运行时环流产生的机理,对阳山变电站两台并列运行主变压器的运行台账、负荷数据、技术参数等进行分析,得出环流产生的主要原因是两台变压器35k V侧电压档...解决110 k V阳山变电站两台主变压器并列运行时产生环流的问题。基于主变压器并列运行时环流产生的机理,对阳山变电站两台并列运行主变压器的运行台账、负荷数据、技术参数等进行分析,得出环流产生的主要原因是两台变压器35k V侧电压档位不一致使得电压变比不同。现场检查结果显示:1号、2号主变压器35 k V侧电压档位分别处于5档和3档位置,由此验证了分析的准确性。在运行过程中,如发现两台并列运行的主变压器中压侧档位不一致,应尽快将主变压器分列运行或转检修后进行档位调整,以及时消除环流。展开更多
The numeric al simulation study on the temperature distribution of underground field for the ground coupled heat pump (GCHP) with vertical spira l coil was carried out by using finite element. The distribution and rec...The numeric al simulation study on the temperature distribution of underground field for the ground coupled heat pump (GCHP) with vertical spira l coil was carried out by using finite element. The distribution and recovery of undergroun d field temperature under different operation ratio and the optimal operation ratio were simulated.The performance parameters, i.e. inlet and outlet temperature of the ground spiral coil in heating and cooling modes were tested, the heat extracted or emitted by the heat pump to the ground was calculated, and the coefficients of performance (COP) of GCHP at heat ing and cooling modes were analyzed.展开更多
文摘解决110 k V阳山变电站两台主变压器并列运行时产生环流的问题。基于主变压器并列运行时环流产生的机理,对阳山变电站两台并列运行主变压器的运行台账、负荷数据、技术参数等进行分析,得出环流产生的主要原因是两台变压器35k V侧电压档位不一致使得电压变比不同。现场检查结果显示:1号、2号主变压器35 k V侧电压档位分别处于5档和3档位置,由此验证了分析的准确性。在运行过程中,如发现两台并列运行的主变压器中压侧档位不一致,应尽快将主变压器分列运行或转检修后进行档位调整,以及时消除环流。
文摘The numeric al simulation study on the temperature distribution of underground field for the ground coupled heat pump (GCHP) with vertical spira l coil was carried out by using finite element. The distribution and recovery of undergroun d field temperature under different operation ratio and the optimal operation ratio were simulated.The performance parameters, i.e. inlet and outlet temperature of the ground spiral coil in heating and cooling modes were tested, the heat extracted or emitted by the heat pump to the ground was calculated, and the coefficients of performance (COP) of GCHP at heat ing and cooling modes were analyzed.