Exhaust systems for dust and smoke - design optimization by CFD and realization

2 examples of extract systems are presented in this paper : the first one concerns dust removal in a public waste plant and the second smoke separation in a smoker/non-smoker zone with no visual impact (i.e. no walls).Thanks to the CFD simulation, proper exhaust systems for dust and smoke have been successfully designed and optimised for each case with simulation results. The proposed solutions were then realized and with few minor modifications led to excellent working conditions on the one hand and excellent smoke caption on the other hand.

Research on ventilated ceiling system for commercial kitchen. Part 2 : Field measurement of indoor thermal environment and ventilation performance.

The second part of the paper deals with the measurements of the indoor thermal environment and the ventilation performance of a commercial kitchen.Measurements were made with a tracer gas (SF6) which is non-toxic and odorless.A smoke machine (ROSCO) was placed on the floor of the middle of the kitchen while operating the ventilated ceiling system. Air inlets near the floor or at the lower parts of the walls brought fresh air in the lower part of the kitchen and pushed the smoke upward.The results almost agreed with the results of the previous numerical simulation ( in part 1).

Research on ventilated ceiling system for commercial kitchen. Part 1 : Computational Fluid Dynamics Analysis and field measurement

The first part of this paper deals with the performance of a ventilated ceiling system. Field measurements were made in a kitchen of a dietitics school in Kyoto practising mass cooking. The kitchen was half equipped with air canopy hoods to compare with the ventilated ceiling system.
A numerical simulation was conducted with CFD in order to understand the trends of the indoor thermal environment of the kitchen.

Capture efficiency measurement of local reinforced exhaust system

This paper deals with measurement of the capture efficiency of REEXS (Reinforced Exhaust System). For the experiment a local exhaust hood was designed with the possibility of working either as a traditional circular exhaust hood or as a REEXS. Experimental measurements were done both for the traditional hood and the REEXS, with the same exhaust flow rate. The results were then compared.The results proved that the main weaknesses of the traditional local exhaust hood can be improved by using REEXS hood.

Effect of design parameters of unheated twin air jets on thermal conditions near the doorway

One way to prevent cold air from entering through the doorway into a building is to use an air curtain. It is a stream of air blown across the doorway that acts as a thermal barrier.

CFD modeling of a reinforced exhaust system (REEXS) and comparison with tracer gas measurements

This paper aims at showing the difference between the two approaches used to evaluate the capture efficiency of a local ventilation system : an experimental research using the tracer gas method ( CO2) and the numerical modelling using CFD code ( STAR-CD). Comparison between the two methods show that the CFD modelling can provide results in good agreement with the experiment.

Local ventilation with Reinforces Exhaust Systems (REEXS) : Optimising the capture range in a test cabin

The aim of that study was to measure the performance of local ventilation for various parameter settings (nozzles and slots REEXS) and to demonstrate the benefit for real working situations.A test cabin was built, to measure the capture efficiency under reproducible cross draughts. Optimised REEXS hoods were used for the experiment : they proved to have a larger capture range compared to the conventional flanged hood. The results were so encouraging that an exhaust installation for 6 welding working places was completed.

Source book for efficient air duct systems in Europe

The Airways project was set up to provide design guidance and maintain afficient air duct systems, and to bring to light the energy saving opportunities in parallel with health, safety and comfort issues. The results of this work have been published in a book targeted at decision-makers concerned with inddor climate issues. It provides condensed information on better air duct system design and how this can be achieved.

European radon research and industry collaboration concerted action

European radon research and industry collaboration concerted action (ERRICCA2) is establishing a European scientific led industrial forum aimed at reducing risks to health from radiation (principally radon) in the built environment. It brings together 35 organisations from 20 countries.

Sampling and analysis of volatile organic compounds (VOC) emitted by materials

The article describes the available techniques for sampling and analysing VOCs emitted by materials.

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