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Compressed Air Quality, A Case Study In Paiton Coal Fired Power Plant Unit 1 And 2

机译:压缩空气质量,Paiton燃煤电厂1和2的案例研究

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The compressed air system becomes part of a very important utility system in a Plant, including the Steam Power Plant. In PLN'S coal fired power plant, Paiton units 1 and 2, there are four Centrifugal air compressor types, which produce compressed air as much as 5.652 cfm and with electric power capacity of 1200 kW. Electricity consumption to operate centrifugal compressor is 7.104.117 kWh per year. Compressed air generation is not only sufficient in quantity (flow rate) but also meets the required air quality standards, compressed air at Steam Power Plant is used for; service air, Instrument air, and for fly Ash. This study aims to measure some important parameters related to air quality, followed by potential disturbance analysis, equipment breakdown or reduction of energy consumption from existing compressed air conditions. These measurements include counting the number of dust particles, moisture content, relative humidity, and also compressed air pressure. From the measurements, the compressed air pressure generated by the compressor is about 8.4 barg and decreased to 7.7 barg at the furthest point, so the pressure drop is 0.63 barg, this number satisfies the needs in the end user. The measurement of the number of particles contained in compressed air, for particle of 0.3 micron reaches 170,752 particles, while for the particle size 0.5 micron reaches 45,245 particles. Measurements of particles conducted at several points of measurement. For some point measurements the number of dust particle exceeds the standard set by ISO 8573.1-2010 and also NACE Code, so it needs to be improved on the air treatment process. To see the amount of moisture content in compressed air, it is done by measuring pressure dew point temperature (PDP). Measurements were made at several points with results ranging from -28.4 to 30.9 °C. The recommendation of improving compressed air quality in steam power plant, Paiton unit 1 and 2 has the potential to extend the life of instrumentation equipment, improve the reliability of equipment, and reduce the amount of energy consumption up to 502,579 kWh per year.
机译:压缩空气系统成为植物中非常重要的公用事业系统的一部分,包括蒸汽发电厂。在PLN的燃煤发电厂,PAITON单元1和2中,有四种离心式空气压缩机类型,生产压缩空气,高达5.652 CFM,电力容量为1200 kW。电力消耗用于操作离心式压缩机每年7.104.117千瓦时。压缩空气不仅足够的数量(流量),而且还满足所需的空气质量标准,蒸汽发电厂的压缩空气用于;服务空气,仪器空气,以及粉煤灰。本研究旨在衡量与空气质量相关的一些重要参数,其次是潜在的扰动分析,设备故障或降低现有压缩空气条件的能耗。这些测量包括计数粉尘颗粒,水分含量,相对湿度以及压缩空气压力的数量。从测量开始,压缩机产生的压缩空气压力约为8.4驳杆,并且在最远点下降至7.7巴格,因此压降是0.63百耳,该数字满足最终用户的需求。对于0.3微米的颗粒含有0.3微米的颗粒含有的颗粒的数量达到170,752颗粒,而粒径为0.5微米达45,245颗粒。在几个测量点进行的粒子的测量值。对于某些点测量,灰尘粒子的数量超过ISO 8573.1-2010和NACE码设置的标准,因此需要改善空气处理过程。为了看到压缩空气中的水分含量的量,通过测量压力露点温度(PDP)来完成。测量以几个点进行,结果从-28.4至30.9℃的结果范围。提高蒸汽发电厂,PAITON单元1和2中压缩空气质量的建议具有延长仪器设备的寿命,提高设备的可靠性,每年将能耗量降低至502,579千瓦时。

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