首页> 外文会议>American Society of Mechanical Engineers(ASME) Turbo Expo vol.5 pt.B; 20040614-17; Vienna(AT) >INSERTION OF ELECTROSTATICALLY CHARGED FUEL ATOMIZATION TECHNOLOGY INTO A US NAVY SHIPBOARD GAS TURBINE ENGINE
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INSERTION OF ELECTROSTATICALLY CHARGED FUEL ATOMIZATION TECHNOLOGY INTO A US NAVY SHIPBOARD GAS TURBINE ENGINE

机译:将静电带电的原子化技术插入美国海军的船用燃气轮机引擎中

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Recent breakthroughs in the field of hydrocarbon fuel electrostatic charging techniques have now permitted the opportunity for the Navy to consider implementing this technology into shipboard gas turbines. This research effort is focused toward electrostatic atomization insertion into a U.S. Navy Shipboard Rolls Royce Corporation 501-K research engine at the Naval Surface Warfare Center, Carderock Division (NSWCCD). Specific milestones achieved thus far include: (a) Spray demonstration of an electrostatically boosted 501-K gas turbine fuel injector prototype at fuel flows from 40 PPH to 250 PPH. (b) Electrostatic charging effect measurements on the droplet size and patternation of a 501-K simplex atomizer configuration. (c) Numerical modeling of the influence electrostatic charging has on secondary atomization breakup and predicted particulate emissions. This paper documents results associated with injector conceptual design, electrode integration, atomization measurements, numerical modeling and fuel injection system integration. Preliminary results indicate electrostatic boosting may be capable of reducing particulate emissions up to 80% by inserting the appropriate fuel injector.
机译:碳氢燃料静电充电技术领域的最新突破现已为海军提供了机会,考虑将这种技术应用于舰载燃气轮机。这项研究工作的重点是将静电雾化插入美国海军舰船劳斯莱斯公司501-K研究引擎中,该引擎位于卡德罗克海军水战中心(NSWCCD)。迄今为止取得的具体成就包括:(a)在燃油流量从40 PPH到250 PPH的情况下,进行静电助力501-K燃气轮机燃油喷射器原型的喷雾演示。 (b)对501-K单工雾化器配置的液滴尺寸和图案的静电充电效果测量。 (c)数值模拟对静电荷对二次雾化破裂和预计的颗粒物排放的影响。本文记录了与喷油器概念设计,电极集成,雾化测量,数值建模和燃油喷射系统集成相关的结果。初步结果表明,通过插入合适的喷油嘴,静电增强可能最多可将颗粒物排放降低80%。

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