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BK Process Engineering GmbH

Booth number: 1700/1

www.bkcfd.de
info@bkcfd.de

About us

The BK Process Engineering GmbH is a german service company specialized in using fluid computations CFD in plant engineering and best construction. In addition to mere surveys on how to optimize, we also offer the necessary support concerning processes and project support.

We are specialised in the field:

  • emission reduction
  • efficiency optimisation
  • flue gas cleaning (FGD, ESP, SCR, Filter)
  • wastewater treatment (sludge deposit, air injection, mixing-systems)
  • Low NOx combustion technology (coal, biomass, gas, oil, waste)
  • heat exchangers


Our aim is to accompany our customers from the beginning to the end – from developing the project to commissioning the plant. By doing so, changes in the general framework can be swiftly integrated into a project while minimizing the number of errors and mistakes in the planning stage.

We also help to reduce the technical risk for the plant operator and constructor by supporting them in obtaining quotations from suppliers, running acceptance tests for products and assembling as well as supporting the commissioning of the plant.



Products and services

The BK Process Engineering GmbH is a german service company specialized in using fluid computations CFD in plant engineering and best construction. In addition to mere surveys on how to optimize, we also offer the necessary support concerning processes and project support.

We are specialised in the field:

  • emission reduction
  • efficiency optimisation
  • flue gas cleaning (FGD, ESP, SCR, Filter)
  • wastewater treatment (sludge deposit, air injection, mixing-systems)
  • Low NOx combustion technology (coal, biomass, gas, oil, waste)
  • heat exchangers

Meet us at our board for consultancy and more detailed information.

CFD-Electric filter inflow:

CFD-Electric filter inflow:

- flue gas cleaning
- Developing specific models for FGD, SCR, SNCR, E-filters, and textile filters

What we offer is an assessment of the actual situation independent of the suppliers as well as an analysis of optimisation potential for:

- Flue gas desulphurisation
- SCR DeNOx
- Dust removal

www.bkcfd.de/expertise-zh-cn/rauchgasreinigung-zh-cn

CFD-Nitrification and denitrification in the wastewater treatment plant

CFD-Nitrification and denitrification in the wastewater treatment plant

In order to optimize the flow of waste water and the aeration tanks in the
sewage works, computational fluid dynamics can provide significant support and potential for optimization. Thus we are able to support you in reassessing your plant and finding potential for improving your project. Principally, an increased efficiency of individual process steps can be shown.

- Compactor, mixer and ventilation pumps
- Nitrate/ammonium
- Enhanced utilization of oxygen, variation in the ventilation

www.bkcfd.de/expertise-zh-cn/abwassertechnik-zh-cn

combustion development, inspection and optimisation

combustion development, inspection and optimisation

You want to find out how to improve boiler efficiency? Or you would like to replace the furnace or the refractory lining?
Flow simulations can be used to compute widely differing scenarios of combustion, fuel combinations and geometries.
We can help you to check the feasibility of such ideas and to minimize your project risk! Depending on the brief given we will support and consult you, making use of selected models and our network of contacts and, our wide range of practical experience.

www.bkcfd.de/expertise-zh-cn/verbrennungstechnik-zh-cn

News & Innovations

New 3D method to verify and optimise the engineering of sewage water plants. 

Abstract

With the objective to increase the efficiency of the aeration tanks of municipal wastewater treatment plants, the present work deals with the complete and systematic coupling of a biological model system with a commercial CFD Code, ANSYS CFX . In addition to the implementation of appropriate biological processes, the modeling of a three-phase flow, mass transport and rheology of activated sludge are presented and validated by experimental data. Effects of parameter variations on the simulation quality are examined and a comparison with indus-trial standard simulation-tools is performed. Besides the simulation of test geometries, illustrating the general functionality of the model, the simulation of a real aeration tank will be presented so that an assessment of the quality of the simulation can be performed.

Experiments are carried out at a sewage treatment plant to determine concentration profiles for verification. Results show that the model beats common simulation standards in its accuracy. For the investigation of critical factors affecting the overall simulation, a sensitivity analysis of key parameters is performed. Lastly, conclusions for possible optimization mare proposed based upon the simulation results.

Contacts

Address
BK Process Engineering GmbH
Albert-Einstein-Str. 1
49076 Osnabrueck
Germany

Phone: +49 5412 0280200

Mr Köpke
CEO
Phone: +49 5412 0280200
info@bkcfd.de


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Enviolet GmbH
Booth number: 1628/2