Turkey
Manufacturer/ Producer
The Airmaster compressed air product groups are produced according to 2009/105/EU and 2014/29/EU norms and secured with ISO 9001 and CE Certificates. - F Series Standard Compressed Air Filters (1.25m3/min to 50m3/min with connections 1/2” to 3”) - Cyclone Water Separators (With connections from 1” to 3”) - Vacuum Filters (10m3/h to 490m3/h with connections 1/2” to 3”) - Flanged Compressed Air Filters (60m3/min to 250m3/min with connections DN100-200) - High Pressure (40 bar) Compressed Air Filters (1.65m3/min to 42m3/min with connections 1/2” to 2”) - Alternative Filter Elements (Atlas Copco, Donaldson, Ultrafilter, Airfilter Engineering, CP, ABAC, Mikropor, AAG, custom elements etc.) Airmaster and has become a major actor in the industry with its broad experience and superior quality.Airmaster Compressed Air Filters has been the solution for various air quality problems within compressed air sytems in the industry with its broad product range, flexible production facility and edge cutting quality. Company Mission: By continously maximizing the quality of our product series and optimizing the product cost accordingly , we aim to increase the operational efficiency in the sectors we serve and to minimize the operational costs of our clients. Company Vision: To become the most preferred Compressed Air Filter Company in the region.
Manufacturer/ Producer
IOSB Dersan Koop Trios 2023 B Blok No:92
Başakşehir
34994 Istanbul - Turkey
Germany
The gas cyclone belongs to the mostly applied technical separators, because it has applicationwise some fundamental advantages. One of them is certainly the fact that its construction does not show any movable components. For the large variety of different kinds of dispersed (particulate) phases (for example dust particles, metal chips, wooden waste, liquid droplets) and different gas conditions (pressure, temperature) the lay out and computation of a cyclone is still a complex task. Suvis has specialised in the development and lay out of cyclone separators and can offer professional solutions and consulting in the area of gas cyclones. Many years of experience gained through numerous cyclone development projects results in optimal solutions for our customers. A cyclone separator applies centrifugal forces and represents an effective apparatus for separating gas, liquid or solid particles from a continuous phase in chemical, process or environmental engineering.
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Hydro cyclone units are applied in order to separate coarse and fine solid particles from liquids . These type of separators are particularly capable of separating sand, starch, and other finely distributed materials. With hydro cyclones it is possible to separate fine particles online during the process. Hydro cyclone units are used to separate, classify, and to thicken suspensions. Also, these units are used to purify ores and minerals. Also, in fibre technique and paper industry they are applied in purification processes to separate dirt. Hydro cyclones are frequently run in parallel mode. The lay out and design of hydro cyclones are performed empirically similar to the duct cyclones. In the lower flow region of a hydro cyclone an air swirl forms during the separation process, which is not substantially influencing the cyclone flow. Because of the large dimension of the cyclone, wall friction has much more influence on the flow.
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The Suvis GmbH also deals with the application of modern numerical methods for the lay out and optimisation of various separator types like cyclones. A typical application of these computation methods is the computer aided investigation of particle separation from gases in cyclones. The prediction of the separation efficiency allows the reliable optimisation of conventional cyclones and the development of completely novel high efficiency cyclones. With that, very often expensive filter units, wet cleaner, or costly electro filters can be replaced or completed. When applying numerical methods (CFD simulations) to cyclones one encounters the problem of strong curvature of the stream lines because of the resulting strong swirl flow and the abrupt change of flow direction towards the outlet tube. This means that the assumption of isotropic turbulence is not useful anymore.
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