steam system operation and distribution system optimization

35
Steam System Operation and Distribution System Optimization Affordable Comfort National 2013 Denver, Colorado

Upload: tacey

Post on 01-Feb-2016

62 views

Category:

Documents


0 download

DESCRIPTION

Steam System Operation and Distribution System Optimization. Affordable Comfort National 2013 Denver, Colorado. Session Presenters. Adam Romano Director, Training Operations, AEA – [email protected] Jayne Choi Senior Energy Analyst, CNT Energy – [email protected]. Session Logistics. - PowerPoint PPT Presentation

TRANSCRIPT

Page 1: Steam System Operation and Distribution System Optimization

Steam System Operation and Distribution System Optimization

Affordable Comfort National 2013Denver, Colorado

Page 2: Steam System Operation and Distribution System Optimization

2

Session Presenters

Adam Romano Director, Training Operations, AEA – [email protected]

Jayne Choi Senior Energy Analyst, CNT Energy – [email protected]

Page 3: Steam System Operation and Distribution System Optimization

3

Session Logistics

• Session Time – 1:30pm – 3:00pm

• Main Presentation – 1:30pm – 2:45pm

• Questions and Answers – 2:45pm – 3:00pm

• Phones – Please put them on vibrate mode, also be considerate of others and take your calls outside

Page 4: Steam System Operation and Distribution System Optimization

4

Page 5: Steam System Operation and Distribution System Optimization

5

What We Do• A Full Range of Services for Building Energy

Efficiency– Energy Audits, Green Building Design for Existing

Buildings and New Construction – Energy Efficiency Program Design and Implementation– Energy Efficiency Training

Page 6: Steam System Operation and Distribution System Optimization

6

AEA Multifamily Resource GuideChapter List:•Chapter 1 – Managing Multifamily Weatherization •Chapter 2 – Understanding Multifamily Housing Stock•Chapter 3 – Multifamily Energy Auditing•Chapter 4 – Multifamily Building Enclosures•Chapter 5 – Heating and Domestic Hot Water Systems•Chapter 6 – Cooling and Heat Pump Systems•Chapter 7 – Mechanical Ventilation Systems•Chapter 8 – Lighting and Electrical Base Load•Chapter 9 – Energy Modeling and Savings Analysis•Chapter 10 – Project and Construction Management•Chapter 11 – Health and Safety Considerations

Visit Booth #812 for More Information and to Win A Free Resource Guide!

Page 7: Steam System Operation and Distribution System Optimization

7

Learning Objectives• One Pipe Steam Distribution System Operation

– Steam Movement and Heat Transfer– Air Vent Operation – Condensation Return

• One Pipe Steam Distribution System Issues– Distribution Imbalance (Over-heating and Under-heating)

• CNT Energy Case Study – One Pipe Steam Distribution System Optimization – Energy Savings Associated with Distribution Measures

Page 8: Steam System Operation and Distribution System Optimization

8

One Pipe Steam System

Page 9: Steam System Operation and Distribution System Optimization

9

One Pipe Steam System

• Off Cycle– Notice the water level at

both ends of the building is equal.

Page 10: Steam System Operation and Distribution System Optimization

10

Steam Boilers

Page 11: Steam System Operation and Distribution System Optimization

11

Pressuretrols

Page 12: Steam System Operation and Distribution System Optimization

12

One Pipe Steam System

• A Few Minutes After Start Up– Notice the air in the

distribution system venting out.

Page 13: Steam System Operation and Distribution System Optimization

13

One Pipe Steam System

• A Few More Minutes After Start Up

Page 14: Steam System Operation and Distribution System Optimization

14

One Pipe Steam System

• Radiators Getting Filled With Steam– Notice:

• Condensate• Steam • Water Level, Etc…

Page 15: Steam System Operation and Distribution System Optimization

15

One Pipe Steam System

• All Radiators Filled With Steam

Page 16: Steam System Operation and Distribution System Optimization

16

One Pipe Steam System• Air vent working principle:– Lets air out, but not steam– The alcohol/water mixture

expands and contracts depending what is surrounding it (steam or hot condensate)

Page 17: Steam System Operation and Distribution System Optimization

17

One Pipe Steam SystemWhy Doesn’t This Radiator Get Hot?

• The air vent needs to be pointing upward, otherwise no air can get out and no steam can get into the radiator.

Page 18: Steam System Operation and Distribution System Optimization

18

One Pipe Steam SystemWhere Do I Change The Air Vent?

Page 19: Steam System Operation and Distribution System Optimization

19

One Pipe Steam System

• Wrong air vent:– A straight vent rather than

an angle vent.

Page 20: Steam System Operation and Distribution System Optimization

20

One Pipe Steam System

• Steam Leaks

Page 21: Steam System Operation and Distribution System Optimization

21

Temperature Imbalance

• Stack Effect– Upper Floors are

Overheated

Page 22: Steam System Operation and Distribution System Optimization

22

Temperature Imbalance

• Energy Improvements – Insulation – Air Sealing– Window Replacement

• Oversized Heating System

Page 23: Steam System Operation and Distribution System Optimization

23

One Pipe Steam SystemHow Do We Balance A One Pipe Steam System?

Page 24: Steam System Operation and Distribution System Optimization

24

One Pipe Steam SystemBalancing a One Pipe Steam System

• Let’s see what’s going on here:– Steam and condensate

pass through the same valve• So What?

Page 25: Steam System Operation and Distribution System Optimization

25

One Pipe Steam SystemBalancing a One Pipe Steam System

Page 26: Steam System Operation and Distribution System Optimization

26

One Pipe Steam SystemBalancing a One Pipe Steam System

Incorrect Correct

If you throttle this valve, you restrict the flow area and now steam and condensate compete to pass through limited space and we have water hammer problem

Page 27: Steam System Operation and Distribution System Optimization

27

Venting

Use Different Capacity Vents

Page 28: Steam System Operation and Distribution System Optimization

28

One Pipe Steam SystemBalancing a One Pipe Steam System

• Use larger capacity vents for radiators farther from the boiler and smaller capacity vents for radiators closer to the boiler. Why??– Remember flow seeks path of

least resistance

Page 29: Steam System Operation and Distribution System Optimization

29

One Pipe Steam SystemDistribution Piping Layouts

• Which riser is “furthest” from the boiler?

• What do you need to do to be able to tell?

Page 30: Steam System Operation and Distribution System Optimization

30

One Pipe Steam SystemMaster Venting

Page 31: Steam System Operation and Distribution System Optimization

31

One Pipe Steam SystemMaster Venting

Page 32: Steam System Operation and Distribution System Optimization

32

One Pipe Steam SystemMaster Venting – Improper Installation

Page 33: Steam System Operation and Distribution System Optimization

33

One Pipe Steam SystemDistribution Controls

Non-electric thermostatic radiator valves (“TRV”)

Page 34: Steam System Operation and Distribution System Optimization

34

One Pipe Steam TRV

Page 35: Steam System Operation and Distribution System Optimization

35

Thank You!