风热系统的火用与能量分析

N. Norouzi
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引用次数: 0

摘要

目前的风力发电系统是间歇性的,不能作为基本负荷的能源。利用直接热能转换和热能储存的风力发电概念的研究,称为风力热能系统(WTES),打开了一扇名为风-热的新能源系统的大门,这是发展基本负荷风力发电系统的战略。热能由热发生器直接在塔顶旋转能量产生,它是一种简单轻便的电动制动器。系统的其余部分与塔式聚光太阳能(CSP)相同。研究结果表明,WTES的能量和火用性能(62.5%和29.8%)与常规风电相当,必须有备用火电厂和电网增强的支持。WTES系统的热电联产特性使得该系统适合在一些需要热量的过程中使用风能作为直接热源,例如化学生产。此外,光热发生器还减少了风力发电的一些问题,如噪音和振动,这是风力发电技术的两个主要瓶颈。
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Exergy and Energy Analysis of Wind-Thermal System
Current wind systems are intermittent and cannot be used as the baseload energy source. The research on the concept of wind power using direct thermal energy conversion and thermal energy storage, called wind powered Thermal Energy System (WTES), opened the door to a new energy system called Wind-thermal, which is a strategy for developing baseload wind power systems. The thermal energy is generated from the rotating energy directly at the top of the tower by the heat generator, which is a simple and light electric brake. The rest of the system is the same as the tower type concentrated solar power (CSP). This paper’s results suggest that the energy and exergy performance of the WTES (62.5% and 29.8%) is comparable to that of conventional wind power, which must be supported by the backup thermal plants and grid enhancement. This cogeneration nature of the WTES system makes this system suitable for using wind power as a direct heat source in several heat-demanding processes such as chemical production. Also, the light heat generator reduces some issues of wind power, such as noise and vibration, which are two main bottlenecks of the wind power technology.
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