PART LOAD PERFORMANCE AND OPERATING STRATEGIES OF A NATURAL GAS - BIOMASS DUAL FUELLED MICROTURBINE FOR CHP GENERATION

被引:0
|
作者
Camporeale, Sergio Mario [1 ]
Fortunato, Bernardo [1 ]
Torresi, Marco [1 ]
Turi, Flavia [1 ]
Pantaleo, Antonio Marco [1 ,2 ]
Pellerano, Achille [1 ,2 ]
机构
[1] Politecn Bari, Dipartimento Meccan Matemat & Management DMMM, I-70125 Bari, Italy
[2] Univ Bari, Dipartimento DISAAT, I-70125 Bari, Italy
来源
PROCEEDINGS OF THE ASME TURBO EXPO: TURBINE TECHNICAL CONFERENCE AND EXPOSITION, 2014, VOL 3A | 2014年
关键词
CHP; cogeneration; microturbine; gas turbine; externally fired; dual fuel; biomass; distributed generation; MICRO-COMBINED HEAT; POWER-PLANTS; OPTIMIZATION; SYSTEMS; ENERGY; CYCLE; COST;
D O I
暂无
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The focus of this paper is on the part load performance of a small scale (100 kWe) combined heat and power (CHP) plant fired by natural gas and solid biomass to serve a residential energy demand. The plant is based on a modified regenerative micro gas turbine (MGT), where compressed air exiting from recuperator is externally heated by the hot gases produced in a biomass furnace; then the air is conveyed to combustion chamber where a conventional internal combustion with natural gas takes place, reaching the maximum cycle temperature allowed by the turbine blades. The hot gas expands in the turbine and then feeds the recuperator, while the biomass combustion flue gases are used for pre-heating the combustion air that feeds the furnace. The part load efficiency is examined considering a single shaft layout of the gas turbine and variable speed regulation. In this layout, the turbine shaft is connected to a high speed electric generator and a frequency converter is used to adjust the frequency of the produced electric power. The results show that the variable rotational speed operation allows high the part load efficiency, mainly due to maximum cycle temperature that can be kept about constant. Different biomass/natural gas energy input ratios are also modelled, in order to assess the trade-offs between: (i) lower energy conversion efficiency and higher investment cost when increasing the biomass input rate; (ii) higher primary energy savings and revenues from feed-in tariff available for biomass electricity fed into the grid. The strategies of baseload (BL), heat driven (HD) and electricity driven (ED) plant operation are compared, for an aggregate of residential end-users in cold, average and mild climate conditions.
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页数:15
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