Design Principles For Self-Amortizing Variable-Air-Volume Integrated Lab Ventilation And Fume Hood Systems.
Benefits Of Designing For Ventilation Diversity In A Large Industrial Research Laboratory -- A Case Study
Laboratory Ventilation Standards: Revision of ANSI Z9.5: Why, What, How?
Measured Performance of Variable-Air-Volume Boxes.
SUMMARY: Fume Hood Face Velocity.
Air Balance of Laboratory VAV Systems
A Solution for Laboratory Operational Safety – Fume Hood Containment Air Flow Diversity
Fume Hood Job to Earn 1-Yr. Return
Selection of Laboratory Exhaust Fans and Control Systems
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A Technical Briefing Regarding Concerns for, Evolution of, and Safety Features Associated with Containment Ventilation in Laboratories Having Fume Hoods
Laboratory Design for Handling Radioactive Materials
Moving Sash Interference Detection - An Asset or Liability?
Fume Hood and Ventilation System Articles
Sash Positioning Articles
VAV Sashes Help Cut Down On Fume Hood Air Loss
Operating Cost Analysis of Constant Volume - Adaptive VAV - Automated Sash VAV Laboratory Air Flow Control Systems
Through The Wall Velocity Sensing
On the Use of Through the Wall Velocity Sensing...
Miscellaneous Articles
Anti-competitive Practices in the Sale of Laboratory Airflow Control Systems and Energy Control and Management Systems
Accu*Aire Article
Accu*Aire Notes
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Basis of Analysis of Hood Exhaust and Room Supply Flow and Energy Conservation Potential with Different Control Systems.
Predicting Energy Cost Saving Using ACCU*AIRE Controls QLOADS Analysis Program: Basis of Cost Evaluations.
Using Probability to Determine Air Flows for Fume Hoods Design, for DUCT System Sizing, Chiller Water Network Sizing, and HVAC Central Plant Loads.
A Psychometric Based Calculation Methodology for Evaluation of Laboratory Air Flow Energy Saving Opportunities.
White Paper on Qloads