并联式太阳能混合微型燃气轮机建模与性能分析

M. Arifin, A. Rajani, Kusnadi, T. D. Atmaja
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引用次数: 2

摘要

微型燃气轮机(mGT)与太阳能相结合,是一种非常有前途的技术,用于偏远地区的小规模发电。在mGT最先进的循环开发中,系统稳态和瞬态工作点的模拟有利于通过近似的质量流量、压力和温度数据来预测性能。此外,通过对mGT系统中部件性能的敏感性进行分析,有利于支持周期优化工作。本文在GT-Suite软件环境下,以太阳能热能和沼气为燃料,通过系统分析,研究了基于抛物面盘的并联式太阳能混合微型燃气轮机(SHGT)的性能。通过将涡轮增压器的性能数据放大到商用mGT Turbec T100的可用性能数据,验证了SHGT的热力学模型。在并联配置系统中,采用节流角阀来控制不同的空气质量流量和不同的燃烧器-太阳能接收器出口温度,该温度受标准管道材料的最高允许温度的限制。仿真结果表明,由于并联配置系统具有提高电效率的变化特性,采用并联配置系统比传统配置系统具有更大的应用前景
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling and Performance Analysis of a Parallel Solar Hybrid Micro Gas Turbine
Micro Gas Turbine (mGT) combined with solar energy, is a highly promising technology for small-scale electric power generations in remote areas. In mGT state-of-the-art cycle development, system simulations of steady and transient operation points are favorable for predicting the performance by approximating mass flow, pressure, and temperature data. Moreover, the control system analysis is a benefit to support cycle optimization efforts by evaluating the sensitivity of component performance on mGT system. In this paper, the performance of a Parallel Solar Hybrid Micro Gas Turbine (SHGT) based on parabolic dish is studied through system analyses using Solar Heat and Biogas as a fuel in GT-Suite software environment. A thermodynamic model of the SHGT has been validated using performance data of a turbocharger scaled up to the available performance data of the commercial mGT Turbec T100. In the parallel configuration system using a throttle angle valve to control for different air mass flow rates and different combustor-solar receiver outlet temperature, which is limited by the maximum permissible temperature of the standard piping material. The simulation result shows that using parallel configuration system has a highly promising than the conventional one, due to the parallel configuration system has a variation to enhance an electrical efficiency
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