New Procedure for Optimal Integration of Steam Power Plant With Process Site Utility to Produce Power, Steam, and Freshwater

Author:

Ghiasi Mahdi1,Khosgoftar Manesh Mohammad Hasan2,Lari Kamran1,Salehi Gholam Reza3,Torabi Azad Masoud1

Affiliation:

1. Department of Energy System Engineering, North Tehran Branch, Islamic Azad University, Tehran 1651153311, Iran

2. Energy, Environmental and Biological Systems Research Lab (EEBRlab);, Division of Thermal Sciences and, Energy Systems;, Department of Mechanical Engineering;, Faculty of Technology & Engineering, University of Qom, Qom 15875–4416, Iran

3. Mechanical Engineering Group;, Faculty of Engineering, Central Tehran Branch, Islamic Azad University, Tehran 123456, Iran

Abstract

Abstract Steam power plants are usually used for producing electricity and can simultaneously work as a multigeneration plant to produce steam, freshwater, and power. This study performed the optimal combination of a steam power station as the source and a site utility system as the sink of power and steam. Approximating the potential of the cogeneration before designing a central utility system for site utility systems is vital to set goals for onsite fuel demand along with power, freshwater, and steam production. For this purpose, a precise and efficient cogeneration targeting strategy was utilized to couple a site utility of a process and a steam power plant. This study proposed a novel strategy for optimal designing integrated steam power plants and site utility consisting of process station industries. Accordingly, exergy, exergoenvironmental, and exergoeconomic analyses were conducted. The environmental impacts of life cycle assessment (LCA) in exergoenvironmental analysis were apportioned to the exergy streams, pointing out the key factors of the system with the most significant impact on the environment and possible improvements related to them. Besides, the water cycle algorithm (WCA) was employed to optimize the integrated plant. The capabilities of the proposed procedure were implemented to the petrochemical complex site utility and steam power plant. The results showed that an optimum solution was achieved using the new procedure with significantly reduced computation time.

Publisher

ASME International

Subject

Geochemistry and Petrology,Mechanical Engineering,Energy Engineering and Power Technology,Fuel Technology,Renewable Energy, Sustainability and the Environment

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