The paper highlights the modification of the engine control software of the hydrogen (H2) converted gas turbine Auxiliary Power Unit (APU) GTCP 36-300 allowing safe and accurate methane (CH4) operation achieved without mechanical changes of the metering unit. The acceleration and deceleration characteristics of the engine controller from idle to maximum load are analyzed comparing H2 and CH4. Also, the paper presents the influence on the thermodynamic cycle of gas turbine resulting from the different fuels supported by a gas turbine cycle simulation of H2 and CH4 using the software GasTurb
This paper addresses the possibility to burn hydrogen in a large size, heavy-duty gas turbine design...
A lot of research effort is spent worldwide in order to reduce the environmental impact of the trans...
The internal combustion engine is considered as one of the main sources for air pollution due to hyd...
The paper highlights the modification of the engine control software of the hydrogen (H2) converted ...
The control of pollutant emissions has become more and more important by the development of new gas ...
Blending ammonia with hydrogen has the potential of replacing conventional hydrocarbon fuels to redu...
THE PURPOSE. The study is aimed at studying the effect of fuel gases of various component compositio...
This paper designs, implements, and compares the performance of a H2, H∞, H2/H∞, and μ‐synthesis app...
In anticipation of increased use of hydrogen as a means of decarbonizing future power generation in ...
The analysis of work parameters of a turboprop engine fuelled by various fuels was done in the paper...
This paper focuses on investigations encompassing comparative assessment of gas turbine cycle option...
An experimental investigation and a burning-rate analysis have been performed on a production 1.4 li...
Summary. This paper presents the results of SI engine tests, carried out for different gaseous fuels...
This paper presents the results of SI engine tests, carried out for different gaseous fuels. The ana...
The aim of this paper is to present the preliminary experimental analysis results carried out on the...
This paper addresses the possibility to burn hydrogen in a large size, heavy-duty gas turbine design...
A lot of research effort is spent worldwide in order to reduce the environmental impact of the trans...
The internal combustion engine is considered as one of the main sources for air pollution due to hyd...
The paper highlights the modification of the engine control software of the hydrogen (H2) converted ...
The control of pollutant emissions has become more and more important by the development of new gas ...
Blending ammonia with hydrogen has the potential of replacing conventional hydrocarbon fuels to redu...
THE PURPOSE. The study is aimed at studying the effect of fuel gases of various component compositio...
This paper designs, implements, and compares the performance of a H2, H∞, H2/H∞, and μ‐synthesis app...
In anticipation of increased use of hydrogen as a means of decarbonizing future power generation in ...
The analysis of work parameters of a turboprop engine fuelled by various fuels was done in the paper...
This paper focuses on investigations encompassing comparative assessment of gas turbine cycle option...
An experimental investigation and a burning-rate analysis have been performed on a production 1.4 li...
Summary. This paper presents the results of SI engine tests, carried out for different gaseous fuels...
This paper presents the results of SI engine tests, carried out for different gaseous fuels. The ana...
The aim of this paper is to present the preliminary experimental analysis results carried out on the...
This paper addresses the possibility to burn hydrogen in a large size, heavy-duty gas turbine design...
A lot of research effort is spent worldwide in order to reduce the environmental impact of the trans...
The internal combustion engine is considered as one of the main sources for air pollution due to hyd...