首页> 外国专利> Method for automatic control of power plant and power plant of compressor station of gas pipeline system, wherein said method is effected

Method for automatic control of power plant and power plant of compressor station of gas pipeline system, wherein said method is effected

机译:燃气管道系统的发电厂自动控制方法和压缩机站发电厂的控制方法,其中实现了该方法

摘要

The proposed method for automatic control of a power plant is as follows. A control signal of the electric generator's electric load is applied to a first control element which controls the flow of gas supplied from the gas line to the high-pressure section of an expansion engine. This controls the amount of gas directed from the take-off chamber of the expansion engine to the gas pipeline. A control signal to control the pressure downstream of the expansion engine is applied to a second control element to control the flow rate of the gas flow directed from the low-pressure section of the expansion engine to the controlled counter-pressure line. A control signal to control the pressure downstream of the expansion engine is applied to a third control element to control the gas flow rate, which is installed in the line that bypasses the low-pressure section of the expansion engine, whereby the rest of the gas flow is directed to the controlled counterpressure line. The proposed power plant of a compressor station of a gas pipeline system with gas mains and gas pumping units including gas compressors and combustion chambers of gas turbine installations, wherein the proposed method is realized, comprises an electric generator intended to meet the power requirements of the compressor station and an expansion engine having a high-pressure section, a pressure chamber and a low-pressure section. The shaft of the expansion engine is coupled to that of said electric generator. The first control element is installed at the inlet of the high-pressure section of said expansion engine. A check valve is installed at the outlet of the take-off chamber of said expansion engine. The second control element is installed at the inlet of the low-pressure section of said expansion engine. In the line that bypasses the low- pressure section of said expansion engine there is installed the third control element. The power plant further includes a cooler of gas discharged from said take-off chamber of said expansion engine. The inlet of the high-pressure section of said expansion engine is connected through a heater and the first control element to the gas main; the outlet of the take-off chamber is connected through the check valve to another portion of the gas line; the outlet of the low-pressure section is connected to the combustion chambers.
机译:提出的用于电厂自动控制的方法如下。发电机的电负载的控制信号被施加到第一控制元件,该第一控制元件控制从气体管线供应到膨胀发动机的高压部分的气体的流量。这控制了从膨胀机的出口室到气体管道的气体量。将控制膨胀机下游压力的控制信号施加到第二控制元件,以控制从膨胀机低压段引向受控反压管线的气流的流量。将控制膨胀机下游压力的控制信号施加到第三控制元件,以控制气体流量,该气体流量安装在绕过膨胀机低压段的管路中,从而其余气体流量被引导至受控的反压管线。具有气体干线和气体抽吸单元的气体管道系统的压缩机站的拟议电厂,包括燃气压缩机和燃气轮机装置的燃烧室,其中实现了所提出的方法,该电厂包括旨在满足柴油机功率要求的发电机。压缩机站和具有高压段,压力室和低压段的膨胀机。膨胀发动机的轴联接至所述发电机的轴。第一控制元件安装在所述膨胀发动机的高压部分的入口处。在所述膨胀发动机的排出室的出口处安装有止回阀。第二控制元件安装在所述膨胀发动机的低压部分的入口处。在绕过所述膨胀发动机的低压部分的管线中,安装了第三控制元件。动力装置还包括从所述膨胀发动机的所述排出室排出的气体的冷却器。所述膨胀机的高压部分的入口通过加热器和第一控制元件连接到气体总管;取气室的出口通过止回阀连接到气体管线的另一部分。低压段的出口连接到燃烧室。

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