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压洗机液压站的故障判断
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作者 王庆富 王凤英 《人造纤维》 2008年第6期11-12,22,共3页
介绍了粘胶长丝后处理工序中压洗设备液压站的保养和故障分析判断方法。故障判断方法主要是直接检查法、元件对换法、仪器检测法。
关键词 粘胶长丝压洗机 系统 故障判断
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压洗机气电控制系统的改进
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作者 益冬 《人造纤维》 1989年第3期26-28,共3页
关键词 压洗机 气电控制系统 化学纤维
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Impco新型压板洗浆机介绍
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作者 吴俊成 《中华纸业》 CAS 2000年第1期33-34,共2页
关键词 置换 脱水 构造
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压洗压缩空气稳压及供气自动控制
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作者 段永炎 《人造纤维》 1997年第4期22-24,共3页
在压洗增设储罐是缓冲、减小压缩空气压力波动的重要手段,而自备机组的自动化运行则在关键时刻实现了自动开机切换供气保压洗的目的。
关键词 人造纤维 压洗机 缩空气 供气 自动控制
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希腊艾玛压洗生产线的应用
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作者 李树成 孙伟光 《人造纤维》 2005年第5期15-16,共2页
希腊艾玛(ETMA)公司离心纺丝饼后处理压洗机具有21个处理站位,丝饼洗涤效果好,单线生产能力10t/d,操作简便,可以处理700-1000g的大丝饼。介绍了该压洗生产线的技术性能、工艺参数、结构和特点。
关键词 压洗机 技术性能 工艺参数 特点 生产线 希腊 应用 涤效果 生产能力
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Gas Turbine Operation Offshore: Online Compressor Wash Operational Experience
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作者 StianMadsen Lars E. Bakken 《Journal of Mechanics Engineering and Automation》 2014年第12期945-959,共15页
Online compressor wash for six GE LM2500PE engines at a Statoil North Sea offshore field is analyzed. Three engines are generator drivers whilst three engines are compressor drivers. Two of the compressor drive engine... Online compressor wash for six GE LM2500PE engines at a Statoil North Sea offshore field is analyzed. Three engines are generator drivers whilst three engines are compressor drivers. Two of the compressor drive engines are running at peak load (T5.4-control), hence production rate is limited by the available power from these engines. All the six engines analyzed run continuously without redundancy, hence gas turbine uptime is critical for the field's production and economy. The performance and operational experience with on-line wash at different water-to-air ratios and engine loads, as well as economy potentials related to successful on-line wash are given. This work is based on long-term operation with on-line wash, where operational data are collected and performance analyzed, over a 4-5 year period. All engines are operated with four-month intervals between maintenance stops, where off-line crank-wash is performed as well as other necessary maintenance and repairs. On-line wash is performed daily between the maintenance stops at full load (i.e., normal operating load for the subject engine). To keep the engine as clean as possible and reduce degradation between maintenance stops, both an effective on-line water wash system as well as effective air intake filter system, are critical factors. The overall target is to maintain high engine performance, and extend the interval between maintenance stops through effective on-line wash. It is of vital importance to understand the gas turbine performance deterioration. The trending of its deviation from the engine baseline facilitates load-independent monitoring of the gas turbine's condition. Engine response to water injection at different loads and water-to-air ratios, as well as engine response to compressor deterioration is documented and analyzed. Instrument resolution and repeatability are key factors required in order to obtain reliable performance analysis results. Offshore instrumentation on older installations is often limited to the necessary instruments for machine control/protection, and additional instruments for effective performance monitoring and analysis are often missing or, if installed, have less accuracy. As a result of these analyses, a set of monitoring parameters is proposed for effective diagnosis of compressor degradation. Avenues for further research and development are proposed in order to further increase the understanding of the deterioration mechanisms and the gas turbine performance and response. 展开更多
关键词 Gas turbine performance water wash inlet air filter system.
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