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ВИЗНАЧЕННЯ РАЦІОНАЛЬНОГО ТЕПЛОВОГО НАВАНТАЖЕННЯ ГРАДИРЕНЬ ВІДВЕДЕННЯ ТЕПЛОТИ У ПРОЦЕСАХ КОНДИЦІЮВАННЯ ПОВІТРЯ НА ВХОДІ ЕНЕРГОУСТАНОВОК

机译:电力厂输入中空调过程中加热热负荷的合理热负荷

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摘要

The air conditioning processes (heat-humidity treatment) at the inlet of energy units by heat-energized refrigeration mechanisms with heat removal cooling towers of the cooling system are studied on the example of a gas turbine unit. Two-stage air cooling is considered applying a two-stage combined type heat-energized refrigeration mechanism, which applies the exhaust gas heat of a gas turbine unit and which includes absorption lithium-bromide and refrigerant ejector refrigeration mechanism as steps to convert waste heat into cold. Based on the results of modeling the operation of the cooling complex of a gas turbine unit, data was obtained on current heat loads on heat-energized refrigeration mechanisms and cooling towers in accordance with the climatic conditions of operation with different distribution of project heat loads on the air cooling stages and, accordingly, on the transformation of waste heat into cold. Due to the fact that the heat load on the cooling towers depends on the efficiency of transformation of waste heat into cold (heat coefficients) by absorption lithium-bromide and refrigerant ejector refrigeration mechanisms, a rational distribution of the project heat loads to the absorption and ejector stages of a combined type heat-energized refrigeration mechanisms that provides reduce heat load on cooling towers. It is demonstrated that due to this approach to determining the rational heat load on the cooling towers of the cooling system, which consists of calculation the redistribution of heat load between the  absorption lithium-bromide and refrigerant ejector cooling stages with different efficiency and transformation of waste heat (different heat coefficients) in accordance with current climate conditions, is possible to minimize the number of cooling with a corresponding reduction in capital expenditures on the air conditioning system at the inlet of gas turbine unit
机译:空气调节处理(热高湿处理)以能量单位入口通过热激励制冷机制与除热冷却的冷却系统的塔研究了一种燃气涡轮机单元的例子。两级空气冷却被认为是施加两级组合式热通电制冷机构,它适用燃气轮机单元的排气热,并且包括吸收溴化锂和制冷剂喷射器制冷机制步骤转换废热成寒冷的。基于建模燃气轮机单元的冷却复杂的操作的结果,于当前热负荷在根据操作与项目热负荷的不同分布的气候条件下获得对热通电制冷机制和冷却塔数据空气冷却阶段,因此,在废热转化为冷。由于这样的事实,在冷却塔的热负荷取决于废热转化效率到冷(热系数)通过吸收溴化锂和制冷剂喷射制冷机制,该项目的热负荷的合理分布的吸收和的,其提供减少对冷却塔的热负荷的组合型热通电制冷机制喷射阶段。已经证明,由于这种方法来确定在冷却系统,它由计算的吸收溴化锂和制冷剂排出管的冷却阶段具有不同的效率和废物转化之间的热负载的重新分配的冷却塔的合理热负荷热根据当前气候条件(不同的热系数),可以最小化在燃气轮机单元的入口与在资本支出的空调系统上的相应减少冷却的数目
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