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Evaluation of a Rich Burn, Quick Mix, Lean Burn Combustion System Operated in a Vitiated Air Stream

机译:评估丰富的烧伤,快速混合,瘦燃烧燃烧系统在失去气流中操作

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Increased interest in distributed power generation has lead to increased interest in combined heating cooling and power (CCHP). One significant issue in implementing a CCHP is that electrical loads and heating or cooling loads are rarely synchronized. Duct burners are frequently used to provide additional heat when the waste heat available from the prime mover does not meet the needs of the heat recovery device. Duct burners are required to operate on vitiated oxidizer streams which can result in poor stability, poor emissions, or both. Rich-burn, quick-mix, lean-burn (RQL) style combustors have been shown to provide low emission and high stability in lean gas turbine applications. An experiment was performed to assess the merits of using a RQL style combustor in a duct burner application. Several burner configurations were tested and it was found that an RQL combustor showed greatly improved stability over a single stage combustor when operating under vitiated conditions without adversely effecting emissions.
机译:增加了分布式发电的兴趣导致对组合加热冷却和功率(CCHP)的兴趣增加。实施CCHP的一个重要问题是电负载和加热或冷却负载很少是同步的。当从原动机的废热不符合热回收装置的需要时,导管燃烧器经常用于提供额外的热量。导管燃烧器需要在具有稳定性,排放不良或两者的稳定性,差,或两者均匀的氧化剂流中操作。已经证明了丰富的燃烧,快速混合,瘦燃烧(RQL)样式燃烧器在贫燃气轮机应用中提供低发射和高稳定性。进行实验以评估在管道燃烧器应用中使用RQL样式燃烧器的优点。测试了几种燃烧器配置,发现RQL燃烧器在在无生命条件下操作时,RQL燃烧器在单个级燃烧器上显而易见地提高了稳定性,而不会产生不利影响排放。

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