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Enhancing the Utilization of Gas Engine Module Exhaust Heat by Two-stage Chillers for Combined Electricity, Heat and Refrigeration

机译:通过两级冷却器来增强燃气发动机模块废热的利用,用于组合电力,热和制冷

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The efficiency of utilization of cogeneration gas engine module exhaust heat into the cold by the absorption Li-Br chiller was analyzed. The presence of significant heat losses caused by contradictory conditions of joint performance of absorption Li-Br chiller and cogenerative gas engine module on the temperature of return heat fluid (heating water) at the outlet of absorption Li-Br chiller and its temperature at the inlet of cooling system of cogenerative gas engine was revealed. The two-stage chillers with absorption Li-Br chiller as a high-temperature stage and adsorption chiller or refrigerant ejector chiller as a low-temperature stage of heat utilization (according to the temperature of heating water) was considered. The application of an adsorption chiller to transform the heat of return heating water after the absorption Li-Br chiller was proposed. The possibility of applying a refrigerant ejector chiller to transform a low potential heat of return heating water after the absorption Li-Br chiller is considered. A two-stage transformation of the heat by refrigerant ejector chiller as the first stage and absorption chiller as the second stage was proposed.
机译:通过吸收Li-Br冷冻机分析了热电化气体发动机模块的利用效率进入寒冷。在吸收Li-Br冷却器的接头性能和加工燃气发动机模块的接头性能矛盾条件下存在显着的热量损失,并在吸收的返回热流体(加热水)温度下的返回热流体(加热水)和入口处的温度揭示了发电机发动机的冷却系统。考虑了具有吸收Li-Br冷却器的两级冷却器作为高温阶段和吸附冷却器或制冷剂喷射器冷却器,作为低温热利用率(根据加热水的温度)。施加吸附冷却器在提出吸收后改变返回加热水中的热量。考虑在考虑吸收Li-Br冷却器之后,将制冷剂喷射器冷却器施加制冷剂喷射器冷却器以在吸收的吸收液中转换返回加热水的低电位热量。提出了制冷剂喷射器冷却器作为第二阶段作为第一阶段和吸收冷却器的热量的两阶段变换。

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