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Application of Thermo-chemical Technologies for Conversion of Associated Gas in Diesel-Gas Turbine Installations for Oil and Gas Floating Units

机译:热化学技术在柴油汽轮机浮动装置柴油机装置中携带的相关气体转换的应用

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The paper considers the issue of thermo-chemical recovery of enginea??s waste heat and its further use for steam conversion of the associated gas for oil and gas floating units. The characteristics of the associated gas are presented, and problems of its application in dual-fuel medium-speed internal combustion engines are discussed. Various variants of combined diesel-gas turbine power plant with thermo-chemical heat recovery are analyzed. The heat of the gas turbine engine exhaust gas is utilized in a thermo-chemical reactor and a steam generator. The engines operate on synthesis gas, which is obtained as a result of steam conversion of the associated gas. Criteria for evaluating the effectiveness of the developed schemes are proposed. The results of mathematical modeling of processes in a 14.1 MW diesel-gas turbine power plant with waste heat recovery are presented. The effect of the steam/associated gas ratio on the efficiency criteria is analyzed. The obtained results indicate relatively high effectiveness of the scheme with separate high and low pressure thermo-chemical reactors for producing fuel gas for both gas turbine and internal combustion engines. The calculated efficiency of such a power plant for considered input parameters is 45.6%.
机译:本文考虑了Enginea的热化学回收问题的废热和其进一步用于油气浮动单元的相关气体的蒸汽转换。讨论了相关气体的特性,讨论了其在双燃料中速内燃机中的应用的问题。分析了具有热化学热回收的组合柴油燃气涡轮发电厂的各种变体。燃气轮机发动机废气的热量用于热化学反应器和蒸汽发生器。发动机在合成气体上操作,这是由于相关气体的蒸汽转换而获得的。提出了评估发达方案的有效性的标准。提出了14.1 MW柴油燃气汽轮机发电厂中工艺数学建模的结果。分析了蒸汽/相关气体比对效率标准的影响。所得结果表示该方案的相对高的有效性,具有单独的高压和低压热化学反应器,用于生产燃气涡轮机和内燃机的燃料气体。用于考虑输入参数的这种发电厂的计算效率为45.6%。

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