The impact of non-ideal compressible flows on the fluid-dynamic design of axial turbine stages is examined. First, the classical similarity equation (CSE) is revised and extended to account for the effect of flow non-ideality. Then, the influence of the most relevant design parameters is investigated through the application of a dimensionless turbine stage model embedding a first-principles loss model. The results show that compressibility effects induced by the fluid molecular complexity and the stage volumetric flow ratio produce an offset in the efficiency trends and in the optimal stage layout. Furthermore, flow non-ideality can lead to either an increase or a decrease of stage efficiency up to 3-4% relative to turbines designed to oper...
Axial-flow turbines represent a well-established technology for a wide variety of power generation s...
Radial turbines are commonly used in applications involving operation of the stage through severe o...
In the present work, a single-stage axial turbine is designed using three design approaches for the ...
The impact of non-ideal compressible flows on the fluid-dynamic design of axial turbine stages is ex...
In this work we examine the behavior of non-ideal compressible swirling flows. Based on a first-prin...
The scientific community is consistently focused on identifying new sources of energy, which can red...
Turbine efficiency plays a key role in the design optimization of ORCs (organic Rankine cycles) and ...
Axial turbines are the most common turbine configuration for electric power generation and propulsio...
In this work we examine the flow deviation and its relationship to critical choking, i.e., choking o...
This thesis establishes an axisymmetric methodology that incorporates pre-performed high-fidelity CF...
This thesis aims to study the effects of varying gas properties on turbine performance. Most promine...
This paper presents a framework for estimating the upper limit of compressor stage efficiency. Using...
Flows in the close proximity of the vapour-liquid saturation curve and critical point are examined f...
Turbine efficiency plays a key role in the design optimization of ORCs (organic Rankine cycles) and ...
Many gases, including carbon dioxide and argon, have been considered as alternatives to air as worki...
Axial-flow turbines represent a well-established technology for a wide variety of power generation s...
Radial turbines are commonly used in applications involving operation of the stage through severe o...
In the present work, a single-stage axial turbine is designed using three design approaches for the ...
The impact of non-ideal compressible flows on the fluid-dynamic design of axial turbine stages is ex...
In this work we examine the behavior of non-ideal compressible swirling flows. Based on a first-prin...
The scientific community is consistently focused on identifying new sources of energy, which can red...
Turbine efficiency plays a key role in the design optimization of ORCs (organic Rankine cycles) and ...
Axial turbines are the most common turbine configuration for electric power generation and propulsio...
In this work we examine the flow deviation and its relationship to critical choking, i.e., choking o...
This thesis establishes an axisymmetric methodology that incorporates pre-performed high-fidelity CF...
This thesis aims to study the effects of varying gas properties on turbine performance. Most promine...
This paper presents a framework for estimating the upper limit of compressor stage efficiency. Using...
Flows in the close proximity of the vapour-liquid saturation curve and critical point are examined f...
Turbine efficiency plays a key role in the design optimization of ORCs (organic Rankine cycles) and ...
Many gases, including carbon dioxide and argon, have been considered as alternatives to air as worki...
Axial-flow turbines represent a well-established technology for a wide variety of power generation s...
Radial turbines are commonly used in applications involving operation of the stage through severe o...
In the present work, a single-stage axial turbine is designed using three design approaches for the ...