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DESIGN AND DEVELOPMENT OF A NEW LANDFILL/BIOGAS ENGINE OIL FOR MODERN, HIGH BMEP NATURAL GAS ENGINES

机译:用于现代,高BMEP天然气发动机新垃圾填埋场/沼气发动机油的设计与开发

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The use of higher brake mean effective pressure (BMEP) engines in landfill or alternative gas applications has increased dramatically in the past few years. Operators are using these engines due to their ability to provide lower emissions coupled with improved economics for the end user due to the higher density or power output capability compared to an engine of similar size and displacement. Landfill gas (LFG) quality can vary greatly as well as the contaminant level due to the composition of the landfill. This environment poses unique challenges to both the engine and the engine oil, including shorter oil drain intervals, corrosive attack of engine components, with increased piston and combustion chamber deposits, to name but a few. Maintaining longer oil drain intervals minimizes unscheduled oil drains which can decrease the overall cost of the landfill operation. High BMEP engines provide higher power output but at the cost of increased maintenance in severe fuel applications. Excessive piston crown and combustion chamber deposits from landfill gas impurities can have a deleterious effect on engine emissions, which may lead to the inability to meet local emissions regulations. Engine lubricants must provide adequate oil life as well as minimizing deposit related issues that may negatively impact regular scheduled maintenance cycles, thus reducing engine downtime and increasing revenues. Traditionally, the approach has been that oils formulated for landfill applications used excess base reserve to sufficiently neutralize the acids being formed during the combustion process. Unfortunately, this approach increases the sulfated ash content of the lubricant which lends itself to increased ash deposits and negatively impacts the combustion dynamics of these high BMEP engines, which are sensitive to ash deposition. Based on requests for a longer life lubricant without compromising deposit control characteristics in serve landfill applications, a new product development project was specifically targeted for late model, high BMEP engines, which are prone to detonation and sensitive to ash related deposits. This paper presents the development bench testing, and proof of performance field evaluations of a new generation, low ash landfill gas engine oil.
机译:在过去几年中,使用更高的制动器平均有效压力(BMEP)发动机在垃圾填埋场或替代气体应用中的发动机急剧增加。由于其能够提供与最终用户的改进的经济学的能力提供较低的排放来使用这些引擎,而与相似尺寸和位移的发动机相比,由于更高的密度或功率输出能力而导致最终用户的改进的经济性。由于垃圾填埋场的组成,垃圾填埋气体(LFG)质量可以大大和污染水平变化。这种环境对发动机和发动机油构成了独特的挑战,包括较短的排水区间,发动机部件的腐蚀性攻击,以及增加的活塞和燃烧室沉积物,而且少数。保持较长的排水漏极间隔最大限度地减少了可以降低垃圾填埋场操作的总成本的未调度的油排水。高BMEP发动机提供更高的功率输出,但在严重燃料应用中的维护增加的成本上提供了更高的功率输出。过量的活塞冠和垃圾填埋气体杂质的燃烧室沉积物可以对发动机排放产生有害影响,这可能导致无法满足当地排放法规。发动机润滑油必须提供足够的油生物,以及最小化可能对定期预定维护周期产生负面影响的存款相关问题,从而减少发动机停机时间和增加收入。传统上,该方法是为垃圾填埋应用配制的油使用过量的碱基储备来充分中和在燃烧过程中形成的酸。遗憾的是,这种方法增加了润滑剂的硫酸化灰分含量,该润滑剂含有增加的灰分沉积,对这些高BMEP发动机的燃烧动力产生负面影响,这对灰分沉积敏感。根据寿命较长的润滑剂的要求,在没有损害垃圾填埋场应用中的存款控制特性的情况下,新产品开发项目专门针对后期模型,高BMEP发动机,其易于爆炸和对灰分相关沉积物敏感。本文介绍了新一代低灰填埋燃气发动机油的开发台测试,以及性能现场评估证明。

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