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首页> 外文期刊>Chemical Engineering Science >IDENTIFICATION OF THE OPTIMAL PRESSURE LEVELS IN STEAM NETWORKS USING INTEGRATED COMBINED HEAT AND POWER METHOD
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IDENTIFICATION OF THE OPTIMAL PRESSURE LEVELS IN STEAM NETWORKS USING INTEGRATED COMBINED HEAT AND POWER METHOD

机译:热电联产法确定蒸汽网络的最佳压力水平

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The integration of the utility system with all the plants of an industrial site is a major task for targeting the Minimum Cost of the Energy Requirement (MCER). Defining the target in terms of cost rather than in terms of energy introduces the problem of integrating the combined heat and power systems and especially the steam network. Furthermore, the integration of the utility system defines the complete list of streams that has to be considered for the Heat Exchangers Network (HEN) design or retrofit. In this paper, we present a method for computing the Integrated Combined Heat and Power (ICHP) target of industrial processes. The approach is based on the analysis of the shape of the balanced Grand Composite Curve of the process and the utilities. The ICHP target is an improvement of the rules for the appropriate placement of the combined heat and power engines. The method proposed, based on the application of the Carnot cycle, allows estimation of the combined power production potential of the system and identification of the optimal pressure levels of the steam network. From these results, the Minimum Cost of Energy Requirement target is computed by considering a model (presented elsewhere) for the integration of the steam network. Using a simplified example which originated from an industrial application, we show the benefits in terms of energy costs that might be obtained from the ICHP approach and its incidence on the rules for energy efficiency optimization of industrial processes. (C) 1997 Elsevier Science Ltd. [References: 17]
机译:将公用事业系统与工业现场的所有工厂集成在一起是实现最低能耗要求(MCER)的一项主要任务。根据成本而不是能源来定义目标会带来整合热电联产系统,尤其是蒸汽网络的问题。此外,公用事业系统的集成定义了热交换器网络(HEN)设计或改造必须考虑的流的完整列表。在本文中,我们提出了一种用于计算工业过程的综合热电联产(ICHP)目标的方法。该方法基于对过程和公用程序平衡的Grand Composite Curve形状的分析。 ICHP的目标是改进热电联产发动机的适当布置规则。所提出的方法基于卡诺循环的应用,可以估算系统的综合发电潜力并确定蒸汽网络的最佳压力水平。根据这些结果,通过考虑蒸汽网络集成的模型(在其他地方介绍),可以计算出最低能耗要求目标。使用源自工业应用程序的简化示例,我们从ICHP方法可能获得的能源成本及其在工业流程能效优化规则中的发生率方面显示了收益。 (C)1997 Elsevier Science Ltd. [参考:17]

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