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Training on the Optimal Timing for Industrial Ventilation System Management 2020

2020-04-10View Original

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Training on Best Practices for Industrial Ventilation System Management 2020 (3 days) May 27–29, 2020, Shanghai, China. Phone: 86 28 85327678; Email: service@ulinking.com; Website: www.martinlinking.com. Hello, Martin Linking Business Consulting Company will be holding a training session titled “Training on Best Practices for Industrial Ventilation System Management 2020 (3 days)” in Shanghai from May 27 to May 29, 2020. Workshop Outline (3 days): Day 1: Check-in: List your wishes on sticky notes – what knowledge about industrial ventilation do you hope to gain from this training? Section 1: Source Control of Pollution 1.1 Differences between industrial ventilation and conventional HVAC systems 1.2 Technical measures for source control of pollution 1.3 Description of problem characteristics: source characteristics, air characteristics, and worker behavior 1.4 Team collaboration

Section 2: Knowledge Related to Industrial Hygiene 2.1 Types, sources, and hazards of industrial pollution 2.2 Classification of occupational hazard factors 2.3 Pollutant concentrations and allowable limits 2.4 Emission standards 2.5 Classroom calculations

Section 3: Basic Knowledge of Air 3.1 Density 3.2 Pressure 3.3 Velocity 3.4 Flow rate

Section 4: General Ventilation 4.1 General principles for general ventilation design 4.2 Airflow organization in general ventilation 4.3 Several common forms of general ventilation 4.4 Calculations for general ventilation 4.5 Heat balance calculations 4.6 Emergency ventilation 4.7 Air change rates in chemical plants 4.8 Principles for selecting GEV and LEV 4.9 Classroom calculation exercises*

Section 5: Natural Ventilation 5.1 Design of natural ventilation and green buildings 5.2 Principles of natural ventilation 5.3 Calculations for natural ventilation 5.4 Selection of natural ventilation equipment 5.5 Advantages and disadvantages of natural ventilation

Section 6: Local Exhaust Ventilation 6.1 Components of local exhaust ventilation systems 6.2 Losses and dynamic pressure 6.3 Frictional resistance, elbow losses, and branch pipe losses 6.4 Introduction to calculation software for local exhaust ventilation systems 6.5 Project examples

Day 2:

Section 7: Design and Selection of Local Exhaust Hoods 7.1 Types of local exhaust hoods 7.2 Design principles for local exhaust hoods 7.3 Design calculations for local exhaust hoods 7.4 Classroom calculation exercises* 7.5 Project examples 7.6 Classroom calculations and explanations for exhaust hood cases

Section 8: Design of Duct Systems 8.1 Materials and types of ventilation ducts 8.2 Pressure losses in ducts 8.3 Design calculations for ventilation duct systems 8.4 Layout of ventilation ducts 8.5 Design calculations for uniform air supply ducts 8.6 Equivalent diameter 8.7 Classroom calculations and explanations for exhaust duct cases

Section 9: Purification of Hazardous Gases 9.1 Classification of hazardous gases 9.2 Initial concentration or emission rate 9.3 Methods for purifying hazardous gases 9.4 Adsorption method 9.5 Liquid absorption method 9.6 Classroom calculation exercises* 9.7 Project examples

Section 10: Filtration and Dust Removal 10.1 Characteristics of dust 10.2 Selection of filters 10.3 Selection of dust collectors 10.4 Typical dust collectors 10.5 Classroom calculation exercises* 10.6 Project examples

Day 3:

Section 11: Selection of Fans 11.1 Classification of fans 11.2 Selection of fans and their connection to duct systems 11.3 Characteristics of fans 11.4 Calculation of fan power 11.5 Operation adjustment of fans 11.6 Classroom calculation exercises*

Section 12: Make-up Air, Recirculation, and Heat Recovery 12.1 Make-up air systems 12.2 Local air supply systems 12.3 Requirements for recirculation systems 12.4 Requirements for heat recovery systems 12.5 Project examples for local air supply 12.6 Classroom calculations and explanations for local air supply cases

Section 13: Exhaust Chimneys 13.1 Analysis of airflow in chimneys 13.2 Several methods for calculating chimney height 13.3 Classroom calculations and explanations for cases

Section 14: System Testing and Monitoring 14.1 Measurement locations and points 14.2 Measurement of pressure in ducts 14.3 Measurement of wind speed in ducts 14.4 Calculation of flow rate in ducts 14.5 Measurement of wind speed and volume at the outlet of local exhaust hoods

Section 15: Several Important Rules of Thumb 15.1 Capture velocity 15.2 Capture-type local exhaust hoods 15.3 Flange width 15.4 Constriction section 15.5 Average wind speed in circular ducts 15.6 Connection requirements for fans – the “6&3 principle” 15.7 Principles for setting up exhaust outlets – the “10-50-3000 principle”

Section 16: Introduction to Variable Air Volume Systems in Chemical Laboratories 16.1 Safety requirements in chemical laboratories 16.2 Face velocity in fume hoods 16.3 Air change rate and room pressure 16.4 Variable air volume control strategies 16.5 Energy efficiency evaluation of variable air volume systems

Review: Let’s take a look back at what was learned over these three days. What knowledge can be taken away? Have the questions in the Pre-class Expectations List been answered? Consultant: Teacher Ouyang · **Registered Professional Engineer in Mechanical and HVAC Systems · Senior Engineer (in the field of civil engineering and building equipment) · **Registered First-Class Constructor (in the mechanical and electrical field). Work experience: 11/2017–Present: Dejian Architectural Design Consulting (Shanghai) Co., Ltd., Senior Mechanical and Electrical Engineer. 11/2016–10/2017: Wuhu Yunyi New Materials Technology Co., Ltd., Project Director. 3/2014–10/2016: Hutchison Whampoa Real Estate Group Dazhi Consulting Advisors (Shenzhen) Co., Ltd., Shanghai Branch, Mechanical and Electrical Design Engineering Manager. 1/2005–3/2014: 3M China Co., Ltd., Engineering Department, Senior Professional Engineer in Mechanical and HVAC Systems. 8/2002–12/2004: **Chongwei Engineering Consultants Co., Ltd., Design Department, Mechanical and Electrical Engineer. 7/1997–8/2002: Yantong Group (Jiangyin Yantong Air Conditioning Equipment Manufacturing Engineering Co., Ltd., Guangdong Construction Engineering Co., Ltd.), Engineering Department, Engineering/Equipment Supervisor. The cost for a three-day training program is 6,900 yuan. Feel free to contact us for more information on training. *Spots are limited; if you wish to register, please fill out the registration form on the last page of the outline and fax it to +86 28 8532 6768. Max Wu ____________________________ Martin Linking Business Consulting Company Limited. T: +86 28 8532 7678 F: +86 28 8532 6768 www.martinlinking.com We are committed to providing our clients with cutting-edge information that they can use right away.

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