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CFD analysis of heat recovery boilers– HRSG

Computational Fluid Dynamics (CFD analysis) simulation of HRSG Boilers turns out to be a powerful engineering methodology in order to determine an optimal design to achieve maximum efficiency and avoid future operation issues, (such as incorrect mixing ratio, asymmetric burner performance, among others.). 

This type of simulations allows to analyze the behaviour of the chemical species that intervenes in the combustion process without the need to carry out expensive empirical test or prototypes. Thus, optimal design is achieved in a more efficient manner. Time and development costs are drastically reduced from early design stages.

The simulation of the combustion process allows to determine an optimal geometry and configuration of burners together with the rest of the auxiliary elements which are meant to direct the flow, by studying the phenomena of vortex shedding, mixing of chemical species or velocity fields.

CADE counts on a multidisciplinary team of engineers with extensive experience in simulating combustion processes and fluid mechanics, using advanced CFD analysis simulation tools. CADE offers a wide range of services and capabilities aimed to technically support equipment Supplier, plant Operators and Owners by providing solutions along both design and operation phases.

 

Picture of Jesús Valera Cabañero

Jesús Valera Cabañero

THE-NEED-FOR-AUTOMATION

The Need for Automation in the Area of Mechanics and Simulation

Modern industry demands efficiency, precision and speed, especially in the field of mechanical engineering and simulation. Automation has emerged as a crucial answer to these demands, and tools like Python and IronPython are leading this revolution, particularly in environments like ANSYS. In this post, we’ll explore why automation is essential

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green o2

How using green oxygen can reduce the costs of green hydrogen

Green hydrogen, produced by electrolysis of water, is a promising option for the transition to a more sustainable and decarbonised energy economy. In this process, electricity, ideally obtained from renewable sources such as solar photovoltaics, is used to break down water (H2O) into hydrogen (H2) and oxygen (O2). This hydrogen

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Dynamic Simulation and Energy Optimization in Refineries

In today’s competitive industrial environment, refineries are constantly looking for ways to improve their energy efficiency and reduce operating costs. Dynamic simulation and energy optimization are key tools that can lead to significant energy savings and more sustainable operation.  Dynamic simulation refers to the use of mathematical and computational models

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Albacete

Parque Científico y Tecnológico

Paseo de la Innovación 3, 02006 Albacete – España

Tel. +34 967 19 01 72

Madrid

C/Raimundo Fernández Villaverde, 53 (Entreplanta)

28020

Madrid – España

Albacete

Parque Científico y Tecnológico

Paseo de la Innovación 3, 02006 Albacete – España

Tel. +34 967 19 01 72

Madrid

C/Raimundo Fernández Villaverde, 53 (Entreplanta)

28020

Madrid – España

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