...
首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Second Law Efficiency of the Rankine Bottoming Cycle of a Combined Cycle Power Plant
【24h】

Second Law Efficiency of the Rankine Bottoming Cycle of a Combined Cycle Power Plant

机译:联合循环电厂兰金底循环的第二定律效率

获取原文
获取原文并翻译 | 示例

摘要

A significant portion of the new electrical generating capacity installed in the past decade has employed heavy-duty gas turbines operating in a combined cycle configuration with a steam turbine bottoming cycle. In these power plants approximately one-third of the power is generated by the bottoming cycle. To ensure that the highest possible combined cycle efficiency is realized it is important to develop the combined cycle power plant as a system. Doing so requires a solid understanding of the efficiency entitlement of both, topping and bottoming, cycles separately and as a whole. This paper describes a simple but accurate method to estimate the Rankine bottoming cycle power output directly from the gas turbine exhaust exergy, utilizing the second law of thermodynamics. The classical first law approach, i.e., the heat and mass balance method, requires lengthy calculations and complex computer-based modeling tools to evaluate Rankine bottoming cycle performance. In this paper, a rigorous application of the fundamental thermodynamic principles embodied by the second law to the major cycle components clearly demonstrates that the Rankine cycle performance can be accurately represented by several key parameters. The power of the second law approach lies in its ability to highlight the theoretical entitlement and state-of-the-art design performances simultaneously via simple fundamental relationships. By considering economically and technologically feasible upper limits for the key parameters, the maximum achievable bottoming cycle power output is readily calculable for any given gas turbine from its exhaust exergy.
机译:在过去十年中安装的新发电能力中,有很大一部分都采用了重型燃气轮机,该燃气轮机以联合循环的方式运行,并具有蒸汽轮机的底部循环。在这些发电厂中,大约三分之一的功率是由谷底循环产生的。为了确保实现最高的联合循环效率,将联合循环发电厂作为一个系统进行开发非常重要。这样做需要对顶部和底部,两个周期以及整个周期的效率要求有深刻的了解。本文介绍了一种简单而准确的方法,利用热力学第二定律直接估算燃气轮机排气火用的朗肯底循环功率输出。经典的第一定律方法,即热量和质量平衡方法,需要冗长的计算和复杂的基于计算机的建模工具来评估兰金底循环的性能。在本文中,第二定律所体现的基本热力学原理对主要循环组分的严格应用清楚地表明,朗肯循环性能可以由几个关键参数准确表示。第二定律方法的强大之处在于它能够通过简单的基本关系同时突出理论权利和最新设计性能。通过考虑关键参数在经济和技术上的可行上限,对于任何给定的燃气轮机,从其排气能级出发,都可以容易地计算出最大可达到的底循环功率输出。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号