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首页> 外文期刊>E3S Web of Conferences >Increasing electrical power output and fuel efficiency of gas engines in integrated energy system by absorption chiller scavenge air cooling on the base of monitoring data treatment
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Increasing electrical power output and fuel efficiency of gas engines in integrated energy system by absorption chiller scavenge air cooling on the base of monitoring data treatment

机译:通过吸收式制冷机在监测数据处理的基础上消除空气冷却,从而提高集成能源系统中燃气发动机的电力输出和燃油效率

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An advanced scavenge air cooling system for reciprocating gas engines of integrated energy system for combined electricity, heat and refrigeration generation has been developed. New method of deep scavenge air cooling and stabilizing its temperature at increased ambient air temperatures and three-circuit scavenge air cooling system with absorption lithium-bromide chiller and wet-type cooling tower was proposed. Such cooling method does not require essential constructive changes in the existing scavenge air cooling system but only an addition heat exchanger for chilling scavenge air cooling water of scavenge air low-temperature intercooler closed contour by absorption chiller. A chilled water from absorption chiller is used as a coolant. To evaluate the effect of gas engine scavenge air deeper cooling compared with its typical radiator cooling, data on the dependence of fuel consumption and power output of gas engine on ambient air temperature at the inlet of the radiator are analized. The efficiency of engine scavenge air deep cooling at increased ambient air temperatures was estimated by reducing the gas fuel consumption compared with radiator cooling.
机译:已经开发出一种先进的扫气冷却系统,该系统用于往复式燃气发动机,该燃气发动机是用于发电,供热和制冷的综合能源系统。提出了一种在环境空气温度升高时进行深扫气冷却并使其温度稳定的新方法,并提出了一种采用吸收式溴化锂制冷机和湿式冷却塔的三回路扫气冷却系统。这种冷却方法不需要在现有的扫气式空气冷却系统中进行必要的结构性改变,而仅需要一个附加热交换器,用于通过吸收式冷却器冷却扫气式低温中间冷却器封闭轮廓的扫气式冷却水。来自吸收式冷却器的冷却水用作冷却剂。为了评估与常规散热器冷却相比,燃气发动机清除更深层空气的效果,分析了燃气发动机的燃料消耗和功率输出与散热器入口周围环境温度的相关性数据。与散热器冷却相比,通过减少气体燃料消耗来估算在升高的周围空气温度下发动机清除空气深层冷却的效率。

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