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THE THERMAL IMPACT OF USING SYNGAS AS FUEL IN THE REGENERATOR OF REGENERATIVE GAS TURBINE ENGINE

机译:在再生燃气轮机发动机的再生器中使用SYNGAS作为燃料的热影响

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摘要

Environment and energy are driven force of human survival and development. Nowadays the use of primary energy comprises mostly mineral fuels, which have limited reserves and whose utilization may cause serious environmental impacts. Attention has been paid to discover clean and renewable resources such as syngas which is an important renewable source of energy and is environment friendly. The use of syngas from biomass gasification process as fuel in regenerative gas turbine causes an increase in turbine exhaust mass flow and a change in the gas composition due to a low heat value. As a result, the regenerator changes its size, thermal characteristics, weight and cost compared with the use of natural gas as fuel. The aim of this work is to assess the thermal performance, the size and the cost of the recuperator of 600 kW regenerative gas turbine engine when designed for syngas and natural gas. Two different types of surfaces, Cross-Corrugated and Undulated-Corrugated, are used for analysis. The results are shown, comparing heat transfer coefficient, effectiveness, pressure loss, size and cost for syngas and natural gas.
机译:环境和能源是人类生存与发展的动力。如今,一次能源的使用主要包括矿物燃料,矿物燃料的储量有限,其利用可能会对环境造成严重影响。已经关注发现清洁和可再生资源,例如合成气,合成气是重要的可再生能源并且对环境友好。在低热值的情况下,将来自生物质气化过程的合成气用作可再生燃气轮机的燃料会导致涡轮机排气质量流量的增加以及气体成分的变化。结果,与使用天然气作为燃料相比,再生器改变了其尺寸,热特性,重量和成本。这项工作的目的是评估当设计用于合成气和天然气时,600 kW再生式燃气涡轮发动机的同流换热器的热性能,尺寸和成本。分析使用了两种不同类型的表面:交叉波纹和不波纹波纹。显示了结果,比较了合成气和天然气的传热系数,有效性,压力损失,尺寸和成本。

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