首页> 外文会议>International conference on nuclear engineering;ICONE-16 >EVALUATION OF COUPLING DESALINATION WITH PWR NUCLEAR POWER PLANT WITH PINCH, EXERGY AND THERMOECONOMIC ANALYSIS
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EVALUATION OF COUPLING DESALINATION WITH PWR NUCLEAR POWER PLANT WITH PINCH, EXERGY AND THERMOECONOMIC ANALYSIS

机译:压水,热能和热经济学分析与压水堆核电厂脱盐耦合度的评价

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Exergy concept combined with pinch based approach is used for studying the optimal integration of energy conversion systems. The analysis first considers the representation of the hot and cold composite curves of the process and defines the energy and the exergy requirements. Strength of pinch analysis is that system information can be represented using simple diagrams and thus targets for the system under consideration can be readily obtained prior to design. In contrast, the power of exergy analysis is that it can identify the major causes of thermodynamic imperfection of thermal and chemical processes and thus promising modifications can be determined effectively. By combining the strengths of both methods, the proposed method can represent a whole system, including individual units on one diagram, which helps to screen the promising modifications quickly for improving a base case design. This method is Energy Level Analysis. We have developed energy level analysis to energy destruction level as a strategy for energy integration that uses power plant simulation tools to define the interaction between the various subsystems in the plant and a graphical technique to help the engineerinterpret the results of the simulation with physical insights that point towards exploring possible integration schemes to increase energy efficiency. In this paper, 1000 MW PWR nuclear steam power plant is considered. Simulation of power plant is performed in STEAM PRO software. Computer code is developed to exergy calculation and generation of exergy destruction level representation. In addition, thermoeconomic analysis is performed to generation of other new graphical representation related to exergy destruction that helps us to consider cost rate of destruction in each component.
机译:火用概念与基于捏的方法相结合,用于研究能量转换系统的最佳集成。该分析首先考虑过程的热和冷复合曲线的表示形式,并定义能量和火用要求。夹点分析的优势在于,可以使用简单的图表表示系统信息,因此可以在设计之前轻松获得所考虑系统的目标。相比之下,火用分析的能力在于,它可以识别热过程和化学过程的热力学缺陷的主要原因,因此可以有效地确定有希望的修饰。通过结合这两种方法的优势,所提出的方法可以代表一个整个系统,包括一张图上的各个单元,这有助于快速筛选出有希望的修改,以改善基础案例设计。此方法为“能级分析”。我们已经将能量水平分析开发到能量破坏水平,作为能量集成的策略,该策略使用电厂模拟工具来定义电厂中各个子系统之间的交互作用,并使用图形化技术来帮助工程师 通过具有物理洞察力来解释仿真结果,这些洞察力旨在探索可能的集成方案以提高能源效率。本文考虑了1000 MW压水堆核电站。在STEAM PRO软件中执行电厂仿真。开发了计算机代码以进行火用计算和火用破坏等级表示的生成。此外,还进行了热经济分析,以生成与火用破坏相关的其他新图形表示,这有助于我们考虑每个组件的破坏成本率。

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