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2. 2
Content
Conduct Technical
Assessments and Audits
Analyze Data
Gather and
Track Data
Energy Conservation
Projects Tracking
Establish Baselines
Benchmarking
Energy
Tracking Tools
Energy
Performance Tracking
Energy Consumption
Assessment Dashboard
Energy Assessment
Performance Approaches
Energy Performance
Assessment Dashboard
3. 3
Conduct Technical
Assessments and Audits
Analyze Data
Gather and
Track Data
Energy Conservation
Projects Tracking
Establish Baselines
Benchmarking
Energy Consumption
Assessment Dashboard
Energy
Tracking Tools
Energy
Performance Tracking
Energy Assessment
Performance Approaches
Energy Performance
Assessment Dashboard
Content
4. Gather and Track Data (1/2)
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Population
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Sample
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Census
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Sampling
Variability
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Simple Random
Sample
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Sampling
Frame
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5. 5
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Determine Appropriate Level of Detail Document All Energy Uses
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Account for All Energy Sources
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Collect Facility and Operational Data
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Gather and Track Data (2/2)
6. Energy Conservation Projects Tracking
Project Description
Fuel
Type
Project
Stage
Energy
Savings
Dollar
Savings
Responsible
Person
Percent
Complete
Completion
Date
Comments on Progress and Barriers
etc.
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Energy Conservation Projects Tracking
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7. Establish Baselines(1/3)
Fuel, Resources,
Productivity
Total Annual
Consumption /
Production
Total Annul
Cost / Value
Percentage Of Total
Plant Energy Cost/
Production Units
Electricity Text Here Text Here Text Here
Natural gas Text Here Text Here Text Here
Fuel Oil Text Here Text Here Text Here
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8. Establish Baselines(2/3)
8
Types of
End - Uses
Number of
Machines
MWH / Yr
Operating
PeakMW
% of Total
Uncertainty
+/-%
Source of Energy
Information
Fans Text Here Text Here Text Here Text Here Text Here Text Here
Pumps Text Here Text Here Text Here Text Here Text Here Text Here
Compressed Air Text Here Text Here Text Here Text Here Text Here Text Here
Material Handing Text Here Text Here Text Here Text Here Text Here Text Here
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TOTAL:
9. Establish Baselines(3/3)
System
Name
Annual Energy
Consumption
Operating Peak -
MW
Conservation
Measure
Estimated
Savings
Estimated
Operating Peak –
MW Reduction
Sources of
Information
Date of
Information
Big Fan # 1
38,000
MWh
Text Here Text Here VFD
4,000
MWh
Text Here Text Here
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22,000
MWh
Text Here Text Here Text Here MWh Text Here Text Here
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85,000
MWh
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1200
MWh
Text Here Text Here
9
10. Benchmarking (1/2)
Potential Savings if Energy Efficiency Matches the Most Efficient Municipality
Assumed Electricity Price $0.12 per kwh Potential Annual Savings on Electricity $140,455.60
Assumed Natural Gas Price $ 8.00 per GJ Potential Annual Savings on Natural Gas $30,115.00
Reductions by Reducing Electricity Consumption 900
Reductions by Reducing Natural Gas Consumption 255
Potential Annul Energy Savings
Potential Annual Savings on Electricity 68%
Potential Annual Savings on Natural Gas 32%
150
140
80
130
200
100
0 100 200 300 400 500 600
This Building
Average in Class
Best in Class
Electricty
Gas
Other
(kJ/m2/HDD)
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11. Benchmarking (2/2)
11
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Past Performance
Industry Average
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Best in Class
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Best Practices
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12. Analyze Data
12
Conduct interviews
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Review Policies and Procedures
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Qualitative
Reviews
Develop Use Profiles
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Compare Performance
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Identify Data Gaps
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Assess The Financial Impacts
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Quantitative
Reviews
13. Analyze Data
Quantitative Reviews
Develop Use Profiles
Compare Performance
Identify Data Gaps
Assess The Financial Impacts
Qualitative Reviews
Conduct interviews
Review Policies and Procedures
13
14. Conduct Technical Assessment and Audits (1/2)
Step No. Plan of Action Purpose/ Result
Pre Audit Phase
Step 1
• Plan and Organize
• Walk Through Audit
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• Resource Planning
• Organize Instruments
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Step 2
• Conduct Brief Meeting
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• Building Up Cooperation
• Orientation
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Audit Phase
Step 3
• Primary Data Gathering
• Energy Utility Diagram
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• Historic Data Analysis
• Prepare Process Flow Charts
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Step 4
• Conduct Survey and Monitoring
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• Measurements:
• Compare Operating Data With Combines Data
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Step 5
• Conduct Experiments and Trials
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• Trials/Experiments
• 24 Hrs Power Monitoring
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Step 6
• Analysis of Energy Use
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• Energy and Material Balance
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Step 7
• Identify Energy Conservation Opportunities
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• Conceive, Develop Ideas
• Review Previous Ideas
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Step 8
• Cost Benefit Analysis
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• Assess Technical Feasibility
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Step 9
• Reporting to Top Management
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• Documentation
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Post Audit Phase
Step 10 • Implementation and Follow Up
• Action Plan
• Follow Up
14
15. Conduct Technical Assessments and Audits (2/2)
• Cover All Energy Using Systems
• Include System Specialists, Facility
Engineers and Outside Support
• Add Text Here
Assemble Expert
Team
• Prioritize System for Evaluation
• Assign Tasks to Team Members
• Add Text Here
Plan and Develop
a Strategy
• Produce Detailed Summary
• Estimate of Requirements
• Add Text Here
Create Final
Report
15
16. Energy Performance Tracking
ENERGY
TRACKING
SYSTEM
TRACKING
Energy Information
Systems
Building
Automation
System Metrics
Performance Data
& Metrics
Benchmarking &
Utility Bill Analysis
Building Automation
System for
Troubleshooting
Basic
Tools
Advanced Energy
Information Systems
Fault Detection &
Diagnostic Tools
Automation
Alerts
16
17. Energy Racking Tools
Benchmarking and
Utility Bill Analysis
These tools periodically
track overall building
energy performance.
Building Automation
System (BAS)
Identify the specific cause
and monitor performance
Energy Information
Systems (EIS)
Software systems that store,
analyze, and display current
and historical energy use
Building Automation
System Metrics
Combines multiple BAS points
to provide deeper meaning than
an individual point
Advanced EIS
Can predict expected energy
use based on weather and
other variables and alert the
user if energy consumption
exceeds that prediction
Fault Detection and
Diagnostic Tools (FDD)
Use performance data from
the BAS to automatically
generate an alarm when any
system being monitored
breaks preset rules
17
18. Energy Assessment Performance Approaches
Approach Key Features Major Benefits Libations
ENERGYTRACKING
Benchmarking and Utility bill Tracking
Monthly Utility Bill Tracking to Compare Energy Use Regularly
May Include Energy Star Portfolio Manager or Other Tolls
Foundation for all Other energy Tracking Methods
Compares Data Across a Portfolio
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Need to Manually Look at the Data to Find Problems
Difficult to Detect Problems Early
Energy Information Systems (EIS)
Interval Mater data tracking at the Building and Often
Submeter Levels
Portfolio Analysis& Benchmarking
Data Filtering Load Shape Analysis
Data Helps Detect Problems Early
Hourly Data and Submetering to Understand Potential
Problems
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Need to Manually Look at The Data to Find Problems
Limited Ability to Determine Cause of Issues
Advanced EIS
Includes EIS Key Features
Compares Interval Data to Predictive Models to Detect
Energy Waste Matter Level
Tracks Energy Use Compares to Normalized Baseline
Automated Analysis of Energy Compared to Prediction
Alerts When Energy Use Outside Range
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Automated Alerts Don't Direct Staff on Cause of Issues
Usually Not Configured to include BAS Data
SYSTEAMTRACKING
Building Automation System
(BAS) for Troubleshooting
Primarily HVAC, Lighting Control
Ability to Set up Trends and Alarms
Use to Troubleshoot Problems By Observing System
Operation Trends
Foundation for all Other System Tracing Methods
Ability to See Details of System Operation to Pinpoint
Problems
No Data Summary For the Big Picture”
Often Not Configured to Include Energy Meter Data
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BAS System Metrics
HVAC and Other System Metrics Tracked by the BAS and
Displayed via Dashboards
Tracking Metrics is a Simple Way to Gauge Overall Building
Performance
Reduced Analysis Time Compared to using Raw BAS Data
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Few BAS Packages Include metrics (Require Some
Programming)
Operators Require Time to Learn What is Normal vs. a
Problem
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Fault Detection & diagnostic Tools (FDD)
Automated Process for Identifying Specific Equipment orb
System Level Faults BAS Data
Helps Diagnose Possible Causes
Less time Needed for Data Analysis
Can Pick up Subtle , Complex Faults Otherwise Hidden From
BAS Alarms
Prioritize Faults Based on Cost
Directs Staff to Specific Faults But Tropically Only Gives a
General Idea of the Cause
Installation and Sensitivity Tuning Can be Time Consuming
18
19. Energy Performance Assessment Dashboard
45.00B KWh
Total Consumption
$46.86B KWh
Total Sales
12%
20%
27%
41%
0% 10% 20% 30% 40% 50%
Craft. Trade.Service
Traffic
Private
Industry
Sales By Sector
14%
40%
28%
18%
0%
20%
40%
60%
Craft .Trade Service Industry Private Traffic
Consumption By Sector
0
1000
2000
3000
Number of Power Cuts & Avg Duration
Power Cuts Duraction
2.2 2.1 2.8 2.5
3.2 3.6 3.1 3.8
1.5 1.2 1.8 1.3
6.5 6.7 6.2 6.8
0%
50%
100%
2016 2017 2018 2019
Production Costs (Cent Per kWh)
Brown Coal Gas Nuclear Renewable
Energy Sources
Renewable
Brown Coal
Nuclear
Gas
19
20. Energy Consumption Assessment Dashboard
80
55
60
40
46
58 56 55
69
65
50.00B KWh
Total Consumption
12%
28%
40%
20%
0%
5%
10%
15%
20%
25%
30%
35%
40%
45%
Craft .Trade Service Households Industry Traffic/ Trasport
Consumption By Sector
0
1
2
3
4
0 K
1 K
2 K
3 K
4 K
5 K
Power Cuts
Power Cuts Duraction
$30.00 $18.00 $26.00 $12.00
$32.00
$15.00
$22.00
$18.00
$32.00
$26.00
$24.00 $20.00
$34.00 $30.00 $28.00 $22.00
Q1 2019 Q2 2019 Q3 2019 Q4 2019
Avg Production Costs Per kWh
Brown Coal Gas Nuclear Renewable
20
22. Our Team
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