036 -- Vortex Ventilation for Laboratory Hoods PDF

036 -- Vortex Ventilation for Laboratory Hoods PDF

Name:
036 -- Vortex Ventilation for Laboratory Hoods PDF

Published Date:
2022

Status:
Active

Description:

Publisher:
ASHRAE

Document status:
Active

Format:
Electronic (PDF)

Delivery time:
10 minutes

Delivery time (for Czech version):
200 business days

SKU:
036-vortex-ventilation-for-laboratory-hoods_2562046

Choose Document Language:
4.80 €
Need Help?
Vortex ventilation is an innovation in laboratory fume hood design that uses shape and proportion to form a mono- stable vortex inside the hood as air flows through. Harnessing turbulence stabilizes the opened face of the hood as contaminants enveloped in the vortex are dissolved into the exhaust air stream by aggressive mixing. Fume hood ventilation is understood as a dilution process rather than velocity capture. Analysis of measured data reveals a direct causal relationship between fume hood containment and air flow volume (cfm) giving the vortex hood unique attributes. Vortex hood safety requires a constant volume air flow, 12 air changes per minute, while the hood is in use. The constant volume hood can achieve any face velocity between 40 and 120 Ft./min. by sash positioning. Fume hood performance is defined by a dilution ratio (1/190), that is if 190 ppm of tracer gas is emitted in the vortex hood, 1 ppm is expected to escape. By this ratio, industrial hygienist can evaluate exposure risk by direct reference to threshold limit values (TLV’s). Existing fume hoods are easily converted to vortex hoods by replacing the interior baffle. This can be done at minimum capital cost and will reduce operating cost over time.
File Size : 1 file , 1000 KB
Note : This product is unavailable in Russia, Belarus
Number of Pages : 9
Product Code(s) : D-IIVC2022-C036
Published : 2022
Units of Measure : Dual

History


Related products


Best-Selling Products

ISO/TTA 1:1994
Published Date: 04/01/1994
Advanced technical ceramics - Unified classification system
55.50 €
ISO/TTA 2:1997
Published Date: 04/01/1997
Tensile tests for discontinuously reinforced metal matrix composites at ambiant temperatures
33.30 €
ISO/TTA 3:2001
Published Date: 09/01/2001
Polycrystalline materials - Determination of residual stresses by neutron diffraction
55.50 €
ISO/TTA 4:2002
Published Date: 11/01/2002
Measurement of thermal conductivity of thin films on silicon substrates
41.40 €
ISO/TTA 5:2007
Published Date: 10/01/2007
Code of practice for creep/fatigue testing of cracked components
75.00 €