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首页> 外文期刊>International journal of energy research >Second law based thermoeconomic analysis of combined cycle power plants considering the effects of environmental temperature and load variations
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Second law based thermoeconomic analysis of combined cycle power plants considering the effects of environmental temperature and load variations

机译:考虑环境温度和负荷变化影响的联合循环发电厂的基于第二定律的热经济分析

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Cost analysis has a significant importance to obtain the optimum marketing price of the product of thermal systems to maximize the benefit and/or minimize the cost. Thus, this paper focuses on the investigation of the magnitude of the change in costs with respect to load and environmental temperature variations. To achieve the objective, a useful and simple second law based thermo-economic model with instant access to production costs is introduced and generalized. The presented exergy costing method indicates that the cost of reversible power is the theoretically minimum cost, where the reversible power is the theoretical maximum power that can be gained from a thermal system. The analysis has been applied to a combined cycle power plant, which is located in Bursa/Turkey. The effects of load and environmental temperature variations on costs are discussed and presented. Without considering the load effect, the cost of net electric power varied from 29 to 32 dollars MW"1 h"1, and about 40-45 percent of the cost of net electric power is composed of cost of irreversibility, while its 55-60 percent of it is the cost of reversible power. It is shown that the augmentation in the costs are not continuous with the environmental temperature decrease. In addition, there is an extremum at the temperature range between 5 and 10 deg C.
机译:成本分析对于获得热系统产品的最佳销售价格,以最大化收益和/或最小化成本具有重要意义。因此,本文着重研究与负载和环境温度变化有关的成本变化幅度。为了实现该目标,引入并归纳了一种实用且简单的基于第二定律的热经济模型,该模型可立即获得生产成本。提出的火用成本计算方法表明,可逆功率的成本是理论上的最小成本,而可逆功率是理论上可以从热力系统获得的最大功率。该分析已应用于位于布尔萨/土耳其的联合循环发电厂。讨论并介绍了负载和环境温度变化对成本的影响。在不考虑负载效应的情况下,净电力成本从29美元到32美元MW“ 1 h” 1不等,净电力成本的约40-45%由不可逆成本组成,而其55-60其中百分之一是可逆功率的成本。结果表明,随着环境温度的降低,成本的增加不是连续的。此外,在5至10摄氏度之间的温度范围内存在极值。

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