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Thermoeconomic approach for the analysis of control system of energy plants

机译:电厂控制系统分析的热经济学方法

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In this paper a thermoeconomic approach is applied to the dynamic model of a Power System in order to investigate the effects of the control system on the primary energy consumption and on the economic costs of the product. To achieve this objective, various control strategies are compared when variations of the operation condition, due to some internal or external causes, are produced. These variations cause the intervention of the control system, which rearranges the operating condition in order to have the controlled quantities within acceptable ranges. Generally the plant efficiency changes, depending on the selected strategy. A microturbine is considered as the case study. The analysis here proposed allows one to quantify the effect of the control on the performance variation of the components. The approach associates an exergetic cost and a thermoeconomic cost to the control system operation, which expresses the additional resource (primary energy and economic resources) consumptions that may be associated to the control. The impact on the initial and final steady states as well as the transient evolution are considered. This can be usefully applied to improve energy system operation acting on the control system, both in the off-design steady states and transient operations. In the particular application considered in this paper, reductions of about 8% in fuel consumption and 5% in the total costs are achieved. Concerning transient operation, it is shown that the control system can produce large variation in the operation costs.
机译:本文将热经济学方法应用于电力系统的动态模型,以研究控制系统对一次能源消耗以及产品经济成本的影响。为了实现该目的,当由于某些内部或外部原因而导致运行条件发生变化时,将比较各种控制策略。这些变化会引起控制系统的干预,控制系统会重新调整运行条件,以使受控量处于可接受的范围内。通常,工厂效率会根据所选策略而变化。微型涡轮机被视为案例研究。此处提出的分析允许量化控件对组件性能变化的影响。该方法将过多的成本和热经济成本与控制系统操作相关联,该控制系统操作表示可能与控制相关的额外资源(主要能源和经济资源)消耗。考虑对初始和最终稳态的影响以及瞬态演化。这可以有效地用于改善作用在控制系统上的能量系统在非设计稳态和瞬态运行中的运行。在本文考虑的特定应用中,可实现约8%的油耗降低和5%的总成本降低。关于瞬态运行,表明控制系统会在运行成本上产生很大的变化。

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