Effects of motive flow temperature on holding steam ejector Performance under Condenser temperature change by considering Entropy generation and Non-equilibrium condensation

IF 6.1 2区 工程技术 Q2 ENERGY & FUELS
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Abstract

The condenser plays a crucial role as one of the key components in a power plant, directly influencing its overall efficiency. Any alteration in the power plant’s efficiency has a substantial impact on both energy consumption and the environment. The holding steam ejector (HSE) is essential for condenser operation by creating a vacuum and effectively removing air. The primary objective of this study is to evaluation the motive flow temperature (MFT) by considering various parameters such as steam price, production entropy, air suction, and entrainment ratio (ER). The investigation focuses on different temperatures within the power plant condenser. The study examines the changes in MFT within the range of 350 ˚C to 400 ˚C, as well as the variation in condenser temperature (CDT) spanning from 47 ˚C to 67 ˚C. The results demonstrate that varying the MFT impacts the functional parameters of the HSE. As the MFT increases, there is an increasing trend in the ER. Simultaneously, there is a decreasing trend observed in the cost of steam production, production entropy, and air suction. When the MFT increased from 350 ˚C to 400 ˚C, the suction air mass flow rate for temperatures of 47 ˚C, 57 ˚C and 67 ˚C decreases by 2.22%, 2.09% and 1.99%, respectively. These results highlight the influence of temperature on various parameters, showcasing how adjustments in the MFT and CDTs can affect the flow characteristics and associated factors in the system.

通过考虑熵生成和非平衡冷凝,分析动机流温度对冷凝器温度变化下保温蒸汽喷射器性能的影响
冷凝器是发电厂的关键部件之一,直接影响发电厂的整体效率。发电厂效率的任何改变都会对能源消耗和环境产生重大影响。保压蒸汽喷射器(HSE)可产生真空并有效排除空气,对冷凝器的运行至关重要。本研究的主要目的是通过考虑各种参数,如蒸汽价格、生产熵、空气吸入量和夹带率 (ER) 等,来评估动机流温度 (MFT)。调查的重点是电厂凝汽器内的不同温度。研究考察了 350 ˚C 至 400 ˚C 范围内 MFT 的变化,以及 47 ˚C 至 67 ˚C 范围内冷凝器温度 (CDT) 的变化。结果表明,改变 MFT 会影响 HSE 的功能参数。随着 MFT 的增加,ER 呈上升趋势。同时,蒸汽生产成本、生产熵和空气吸入量也呈下降趋势。当 MFT 从 350 ˚C 增加到 400 ˚C 时,温度为 47 ˚C、57 ˚C 和 67 ˚C 的吸入空气质量流量分别减少了 2.22%、2.09% 和 1.99%。这些结果突出了温度对各种参数的影响,展示了 MFT 和 CDT 的调整如何影响系统中的流动特性和相关因素。
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来源期刊
Applied Thermal Engineering
Applied Thermal Engineering 工程技术-工程:机械
CiteScore
11.30
自引率
15.60%
发文量
1474
审稿时长
57 days
期刊介绍: Applied Thermal Engineering disseminates novel research related to the design, development and demonstration of components, devices, equipment, technologies and systems involving thermal processes for the production, storage, utilization and conservation of energy, with a focus on engineering application. The journal publishes high-quality and high-impact Original Research Articles, Review Articles, Short Communications and Letters to the Editor on cutting-edge innovations in research, and recent advances or issues of interest to the thermal engineering community.
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