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Development of the G16CM34 Engine as a High Efficiency Engine for Gas Transmission, Storage and Withdrawal Services

机译:开发G16CM34发动机,作为用于气体传输,存储和提取服务的高效发动机

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There is a new large horsepower engine available in North America and supported by a well-established network of authorized factory dealers. The driver is based on a reciprocating engine design delivering 7670 to 8180 HP depending on site conditions. The 16-cylinder prime mover is specially engineered for gas transmission, storage and withdrawal service. Built on a diesel engine designed block, crankshaft, bearings, rods, and gear train, it provides long service intervals and 120,000 hours before major overhaul. Electronic ignition and combustion controls help conserve fuel, minimize emissions and keep the engine operating at peak capability under a variety of ambient and loading conditions. Electronic monitoring protects critical components and systems while greatly simplifying maintenance. The electronic control tightly regulates the combustion process, cylinder by cylinder, to optimize efficiency. It also controls the main cylinder and prechamber fuel delivery. Using sensor data based on ambient and turbocharged-aftercooled air intake temperatures, the microprocessors in the control system continuously monitor available engine power. With this information, the PLC controlling the compressor has the ability to load or unload the compressor to match the available engine output. Fuel efficiency is less than 5900 Btu/bhp-hr and NOx emissions of 0.50 grams/bhp-hr. The mechanical efficiency of the engine is greater than 43 %. The mechanical refinements designed into the prime mover, are behind the high efficiency. For instance, the long stroke design maximizes fuel efficiency. A solenoid operated gas admission valve for each cylinder provides precise fuel metering. A calibration ring in the upper part of the cylinder liner helps reduce CO and NMHC emissions. Combustion gases do not collect in the gap between the piston and the liner wall, where most of these gases form. Instead, piston action forces them back into the combustion chamber for complete burning. In the event of a decline in fuel quality, a three-piece connecting rod enables a quick change in compression ratio without changing the piston. The paper will also cover details on maintenance intervals and costs, with additional features on the product along with construction details.
机译:北美有一种新型的大马力发动机,并由完善的授权工厂经销商网络提供支持。该驱动程序基于往复式发动机设计,可根据现场情况提供7670至8180 HP。 16缸原动机是专门设计用于气体传输,存储和提取服务的。它以柴油发动机设计的缸体,曲轴,轴承,杆和齿轮系为基础,可提供较长的维修间隔,并且需要12万小时进行大修。电子点火和燃烧控制有助于节省燃料,减少排放并在各种环境和负载条件下使发动机保持在最高性能。电子监控在保护重要组件和系统的同时,大大简化了维护工作。电子控制系统严密调节气缸的燃烧过程,以优化效率。它还控制主缸和前室燃料的输送。使用基于环境和涡轮增压后冷进气温度的传感器数据,控制系统中的微处理器连续监控可用的发动机功率。利用此信息,控制压缩机的PLC可以加载或卸载压缩机以匹配可用的发动机输出。燃油效率低于5900 Btu / bhp-hr,NOx排放量为0.50克/ bhp-hr。发动机的机械效率大于43%。原动机设计的机械改进落后于高效率。例如,长冲程设计使燃油效率最大化。每个气缸的电磁操作进气阀可提供精确的燃油计量。气缸套上部的校准环有助于减少CO和NMHC排放。燃烧气体不会聚集在大部分形成这些气体的活塞和衬里壁之间的间隙中。相反,活塞的作用迫使它们返回燃烧室以完全燃烧。在燃油质量下降的情况下,三件式连杆可在不更换活塞的情况下快速改变压缩比。本文还将介绍维护间隔和成本的详细信息,以及产品的其他功能以及构造细节。

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