Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Daniel Czaja is active.

Publication


Featured researches published by Daniel Czaja.


Volume 3: Cycle Innovations; Education; Electric Power; Fans and Blowers; Industrial and Cogeneration | 2012

Technical and Economic Analysis of the Gas Turbine Air Bottoming Cycle

T. Chmielniak; Daniel Czaja; Sebastian Lepszy

The gas turbine engine has many advantages such as low investment costs, low emissions and a low water consumption. This fact allows its application in many power engineering systems, for example as parts of gas and oil transport systems. It is possible to increase the efficiency of gas turbines through the use of combined cycles. For this purpose, the steam cycle is used most frequently. These systems are highly efficient in terms of energy, but they are very complex and have a high water consumption. An alternative to steam cycles are gas-air systems, referred to as the ABC’s (Air Bottoming Cycles), which use hot combustion gases as a heat source for the air cycle. ABC’s are composed of a gas turbine powered by natural gas, an air compressor and an air turbine coupled to the system by means of a heat exchanger, referred to as the AHX (Air Heat Exchanger).The paper presents an application of gas-air systems with example configurations, together with thermodynamic characteristics. Two technological structures are taken into consideration — a simple system of the ABC and an ABC with air intercooling. A parametric analysis of these systems is performed using a special computer program with real gas properties for enthalpy and entropy calculations. A basic comparative analysis of gas turbine air bottoming cycle and combined gas-steam cycle has been also done. Other important calculations are related to the heat exchanger, which is one of the most important components in this system because it couples the gas and air parts. The efficiency of the whole cycle depends on a rationally designed heat exchanger. The calculations are performed for a shell-and-tube exchanger, as well as for a plate heat exchanger. For all investigations an purchase cost of machines and devices is also determined.Copyright


Journal of Power of Technologies | 2013

Selection of Gas Turbine Air Bottoming Cycle for Polish compressor stations

Daniel Czaja; T. Chmielniak; Sebastian Lepszy


Energy | 2015

Thermodynamic and economic comparative analysis of air and steam bottoming cycle

T. Chmielniak; Daniel Czaja; Sebastian Lepszy; K. Stępczyńska-Drygas


Archives of Thermodynamics | 2011

The use of air-bottoming cycle as a heat source for the carbon dioxide capture installation of a coal-fired power unit

T. Chmielniak; Sebastian Lepszy; Daniel Czaja


Journal of Power of Technologies | 2013

Operation of a gas turbine air bottoming cycle at part load

Daniel Czaja; T. Chmielniak; Sebastian Lepszy


Archives of Thermodynamics | 2013

Selection of the air heat exchanger operating in a gas turbine air bottoming cycle

T. Chmielniak; Daniel Czaja; Sebastian Lepszy


Journal of Power of Technologies | 2015

Economic evaluation of A-USC power plant with CO2 capture unit

Katarzyna Stępczyńska-Drygas; Sławomir Dykas; H. Łukowicz; Daniel Czaja


Archives of Thermodynamics | 2014

Thermo-economic comparative analysis of gas turbine GT10 integrated with air and steam bottoming cycle

Daniel Czaja; Tadeusz Chmielnak; Sebastian Lepszy


Journal of Power of Technologies | 2014

Economic evaluation of different-scale gas-steam power plants including costs of decommissioning replaced units

Sebastian Lepszy; T. Chmielniak; Daniel Czaja


Instal | 2014

Termodynamiczny i ekonomiczny dobór układu gazowo-powietrznego do pracy w tłoczniach gazu

T. Chmielniak; Daniel Czaja; Sebastian Lepszy

Collaboration


Dive into the Daniel Czaja's collaboration.

Top Co-Authors

Avatar

Sebastian Lepszy

Silesian University of Technology

View shared research outputs
Top Co-Authors

Avatar

T. Chmielniak

Silesian University of Technology

View shared research outputs
Top Co-Authors

Avatar

H. Łukowicz

Silesian University of Technology

View shared research outputs
Top Co-Authors

Avatar

K. Stępczyńska-Drygas

Silesian University of Technology

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Sławomir Dykas

Silesian University of Technology

View shared research outputs
Researchain Logo
Decentralizing Knowledge