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Power Quality Evaluation in Autonomous Wastewater Treatment Plant

机译:自主污水处理厂的电力质量评价

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The power quality of a low-capacity domestic wastewater treatment plant with autonomous operation through automatic control of the technological process was analyzed by monitoring/recording the main electrical parameters. Determinations showed that, under concrete operating conditions (average effluent flow $9.8 m^{3}$/h, 5.9$^{circ}C$ water temperature in aerobic and anaerobic bioreactors), the average active power absorbed is $11.103 kW$ at an average power factor of 0.73- which leads to a specific consumption of 1.125 kWh/m3 treated water. The evolution of the active power, reactive power, apparent power, power factor, total harmonic distortion of the voltage (THD V), and total harmonic distortion of the current (THD A) parameters show fluctuations determined by the consumers’ operating sequences. The frequent starts/stops of inductive consumers by electromagnetic contactors produce transients reflected on the evolution diagrams of the power factor and THD (both in voltage and current).
机译:通过监测/记录主要电气参数,通过自动控制自动控制自动控制具有自动操作的低容量国内污水处理设备的电能质量。测定表明,在混凝土操作条件下(平均流出物流​​量为9.8米^ {3} $ / h,5.9 $ ^ { rIC} C $水温在有氧和厌氧生物反应器中),吸收的平均电力电力为11.103千瓦美元平均功率因数0.73-导致1.125千瓦时/米的特定消耗 3 处理后的水。电力功率,无功,表观功率,功率因数,电压(THD V)的总谐波失真的演变,以及电流(THD A)参数的总谐波失真,显示了消费者操作序列确定的波动。电磁接触器频繁开始/停止电感消费者产生瞬态反射在功率因数和THD的演化图上(电压和电流)。

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