首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >DEVELOPMENT OF A RECUPERATED FLAMELESS COMBUSTOR FOR AN INVERTED BRAYTON CYCLE MICROTURBINE USED IN RESIDENTIAL MICRO-CHP
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DEVELOPMENT OF A RECUPERATED FLAMELESS COMBUSTOR FOR AN INVERTED BRAYTON CYCLE MICROTURBINE USED IN RESIDENTIAL MICRO-CHP

机译:居住用微型热电联产中逆布雷顿循环微涡轮增压换热无焰燃烧器的研制

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The paper presents recent work in the development of a clean and efficient natural gas combustor for a micro-CHP system based on a gas turbine for the residential sector. The large scale deployment of natural gas micro-CHP systems represents a great opportunity to contribute to a reduction of CO2 emissions by a substantial increase of the efficiency of primary energy source conversion. A micro-CHP system, well designed for a residential application, which means a power of 1kWe output and high efficiency (larger than 20%), may reduce annual household emissions up to factors close to 2.5. The micro-CHP system developed in this work uses a small gas turbine and an inverted Brayton cycle which advantageously allows the use of substantially larger turbomachinery components than a conventional pressurized Brayton cycle. The paper presents a new coun-terflow recuperator. Its design has been thoroughly studied by advanced 3D CFD to obtain compactness and high efficiency at low cost. A new flameless combustor has been developed in order to reduce to single digits the emissions of pollutants (NOx and CO) and obtain a highly efficient and stable combustion for various gases. The design methodology based on 3D CFD modelling is presented as well as experimental results demonstrating the performance of the recuperated flameless combustor for various operationg conditions.
机译:本文介绍了在住宅用燃气轮机的基础上,为微型热电联产系统开发清洁高效的天然气燃烧器的最新工作。天然气微型CHP系统的大规模部署为通过大幅提高一次能源转换效率来减少二氧化碳排放量提供了巨大的机会。微型热电联产系统是为住宅应用精心设计的,这意味着功率为1kWe的输出和高效率(大于20%)可以将家庭年排放量降低近2.5。在这项工作中开发的微型热电联产系统使用小型燃气轮机和反向布雷顿循环,与传统的加压布雷顿循环相比,有利地允许使用大得多的涡轮机械组件。本文提出了一种新的顺流换热器。其设计已通过先进的3D CFD进行了深入研究,从而以低成本获得了紧凑性和高效率。为了减少污染物(NOx和CO)的排放并将各种气体高效稳定地燃烧,已开发出一种新型无焰燃烧室。提出了基于3D CFD建模的设计方法以及实验结果,证明了该换热无焰燃烧器在各种运行条件下的性能。

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