A presentation of the design of the Organic Rankine cycle (ORC) with heat regeneration and superheating processes is a subject of this paper. The maximum temperature level in the ORC is considered to be 110°C and the maximum pressure varies up to 2.5MPa. The selection process of the appropriate working fluids, thermal design and calculation of the cycle and its components are described. With respect to the safety, toxicity, flammability, price and thermal cycle efficiency, the working fluid selected is R134a. As a particular example, the thermal design of the condenser used for the ORC engine with a theoretical thermal power of 179 kW was introduced. The minimal heat transfer area for a completed condensation was determined to be approximat...
AbstractThe growing cost for energy production and distribution as well as problems related to envir...
In this study, an ORC plant is considered that recovers the heat source from 1800 cc Diesel Engine e...
In the paper a research on cost-effective optimum design boiling temperature for Organic Rankine Cyc...
A presentation of the design of the Organic Rankine cycle (ORC) with heat regeneration and superheat...
Some considerations on the waste heat treatment, heat and power combined generation and principles o...
The aim of this paper is to present a thermodynamic cycle for the production of electrical power in ...
New energy conversion technologies are required in order to ensure the production of electricity wit...
Organic Rankine cycles (ORC) are a well proven technology in the waste heat recovery market. The con...
peer reviewedAn Organic Rankine Cycle (ORC) is similar to a steam Rankine cycle, except that the wor...
Organic Rankine cycle (ORC) systems are increasingly being deployed for waste-heat recovery and conv...
This book comprises five chapters on developed research activities on organic Rankine cycles. The fi...
New technologies to converting heat into usable energy are constantly being developed for renewable ...
The design of a low temperature Rankine cycle system using R-113 working fluid for recovery and conv...
The plant components and the plant configurations adopted in the Organic Rankine Cycle (ORC) field d...
In the thermodynamic optimization of Organic Rankine Cycles both thermal efficiency and heat recover...
AbstractThe growing cost for energy production and distribution as well as problems related to envir...
In this study, an ORC plant is considered that recovers the heat source from 1800 cc Diesel Engine e...
In the paper a research on cost-effective optimum design boiling temperature for Organic Rankine Cyc...
A presentation of the design of the Organic Rankine cycle (ORC) with heat regeneration and superheat...
Some considerations on the waste heat treatment, heat and power combined generation and principles o...
The aim of this paper is to present a thermodynamic cycle for the production of electrical power in ...
New energy conversion technologies are required in order to ensure the production of electricity wit...
Organic Rankine cycles (ORC) are a well proven technology in the waste heat recovery market. The con...
peer reviewedAn Organic Rankine Cycle (ORC) is similar to a steam Rankine cycle, except that the wor...
Organic Rankine cycle (ORC) systems are increasingly being deployed for waste-heat recovery and conv...
This book comprises five chapters on developed research activities on organic Rankine cycles. The fi...
New technologies to converting heat into usable energy are constantly being developed for renewable ...
The design of a low temperature Rankine cycle system using R-113 working fluid for recovery and conv...
The plant components and the plant configurations adopted in the Organic Rankine Cycle (ORC) field d...
In the thermodynamic optimization of Organic Rankine Cycles both thermal efficiency and heat recover...
AbstractThe growing cost for energy production and distribution as well as problems related to envir...
In this study, an ORC plant is considered that recovers the heat source from 1800 cc Diesel Engine e...
In the paper a research on cost-effective optimum design boiling temperature for Organic Rankine Cyc...