采用双闪热发电的地热发电厂的能源、能源、经济和环境分析(4E)

IF 4.3 3区 工程技术 Q2 ENERGY & FUELS
Mamdouh El Haj Assad, Yashar Aryanfar, Imen Ben Salem, Shek Atiqure Rahman, Laveet Kumar, Ahmad K. Sleiti, Mohammad Alhuyi Nazri
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引用次数: 0

摘要

地热能是一种可靠和可持续的可再生能源,因为它的持续可用性和消除了对储能系统的需求。在各种类型的地热发电厂中,双闪热(DF)地热发电厂是应用最广泛的。本文综合能源、火用、经济和火用环境(4E)评价,对DF地热发电厂进行了综合热力学分析。研究考察了高压分离器、地热采油井温度等关键参数对系统性能的影响。结果表明:高压分离器膨胀阀的火用破坏率(EDR)最高,其次是汽轮机,而高压分离器和低压分离器均无火用破坏。能源效率和火用效率分别为13.3%和51.23%。冷凝热率约为46.551 MW,表明可能用于区域供热应用。此外,研究结果表明,提高地流体源温度和高压分离器1的压力会降低单位能源成本,但会增加总成本,这突出了优化工厂性能的重要权衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Energy, Exergy, Economic, and Environmental Analyses (4E) of Geothermal Power Plant With Double Flash System for Power and Heat Production

Energy, Exergy, Economic, and Environmental Analyses (4E) of Geothermal Power Plant With Double Flash System for Power and Heat Production

Geothermal energy is a reliable and sustainable renewable energy source due to its continuous availability and eliminating the need for energy storage systems. Among various types of geothermal power plants, double flash (DF) geothermal plants are among the most widely utilized. This paper presents a comprehensive thermodynamic analysis of a DF geothermal power plant, integrating energy, exergy, economic, and exergoenvironmental (4E) evaluations. The study examines the influence of key parameters, including the high-pressure separator and geothermal production well temperature, on the system performance. The results indicate that the expansion valve of the high pressure separator exhibits the highest exergy destruction rate (EDR) followed by the steam trubine, while both high- and low-pressure separators experience no exergy destruction. The energy and exergy efficiencies are found to be 13.3% and 51.23%, respectively. The condensation heat rate is obtained around 46.551 MW, suggesting potential use for district heating applications. Additionally, the findings demonstrate that increasing the geofluid source temperature and the pressure of high-pressure separator 1 lead to a decrease in the unit exergy cost, but an increase in overall cost rate, highlighting important trade-offs for optimizing plant performance.

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来源期刊
International Journal of Energy Research
International Journal of Energy Research 工程技术-核科学技术
CiteScore
9.80
自引率
8.70%
发文量
1170
审稿时长
3.1 months
期刊介绍: The International Journal of Energy Research (IJER) is dedicated to providing a multidisciplinary, unique platform for researchers, scientists, engineers, technology developers, planners, and policy makers to present their research results and findings in a compelling manner on novel energy systems and applications. IJER covers the entire spectrum of energy from production to conversion, conservation, management, systems, technologies, etc. We encourage papers submissions aiming at better efficiency, cost improvements, more effective resource use, improved design and analysis, reduced environmental impact, and hence leading to better sustainability. IJER is concerned with the development and exploitation of both advanced traditional and new energy sources, systems, technologies and applications. Interdisciplinary subjects in the area of novel energy systems and applications are also encouraged. High-quality research papers are solicited in, but are not limited to, the following areas with innovative and novel contents: -Biofuels and alternatives -Carbon capturing and storage technologies -Clean coal technologies -Energy conversion, conservation and management -Energy storage -Energy systems -Hybrid/combined/integrated energy systems for multi-generation -Hydrogen energy and fuel cells -Hydrogen production technologies -Micro- and nano-energy systems and technologies -Nuclear energy -Renewable energies (e.g. geothermal, solar, wind, hydro, tidal, wave, biomass) -Smart energy system
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