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TRANSCRIPT
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STEP5. Energy Efficiency Improvement Report
STEP4. Energy Intensity Evaluation
STEP1. Preparation
STEP6. Implementation
STEP2. On-site Assessment
STEP3. Data Collection and Analysis
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7STEP7. Continue Improvement
EEP—Process
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� Contact Management� Form project team� Prepare consultation � Energy management system
ISO50001 and energy efficiency training
STEP 1. Preparation
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STEP 2. On-site Assessment
� Assess equipment and system� Energy flow � Check the energy consumption� Energy flow and management, energy
consumption
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STEP 3. Data Collection and Analysis
� Production and production-related high-energy system
� Auxiliary power consumption of the production system
� Integrated energy companies� Energy use per unit of energy
costsMajor energy-efficiency analysis equipment
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STEP 4. Energy Intensity Evaluation
� Energy use evaluation system configuration and operation
� The establishment of energy data system for dept or device
� Determine the major energy-consuming sectors and energy-consuming equipment
� Energy managementsituation analysis and evaluation of energy consumption
� Comprehensive analysis of energy consumption
� Energy balance analysis and cost analysis of energy-using units
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� Determine the energy consumption of the causes
� Present different levels of energy efficiency improvement
� Analyze various possible options for screening and do feasibility analysis
� Analysis of energy-saving potential� The feasibility of the implementation program
for sorting� Determine the final program
STEP 5. Energy Efficiency Improvement Report
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STEP6. Implementation
� Provide resources to enter the implementation phase
� Energy conservation project planning and implementation, monitoring the plan
� Establish an effective mechanism for energy management
� Preparation of corporate documents and operations energy management guidance documents
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STEP 7. Continuous Improvement
� Regular assessment with corporate executives meeting
� According to the principles of energy management, taking PDCA approach, continuous improvement of energy efficiency programs
� Establish a green and sustainable business and develop the international brand image
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Planning & Planning & preparationpreparation
•Establish the project team•Prepare proposals for consultation•Energy management system ISO50001 and energy efficiency technical training
On-site On-site assessmentassessment
•Assess process equipment and systems•Energy flow system•Check the power status of operating equipment•Enterprise energy management
•Production and production-related high-energy system•Auxiliary power consumption of the production system•Integrated energy companies•Energy use per unit of energy costs
Data collection Data collection and analysisand analysis
EvaluationEvaluation
•Energy use evaluation system configuration and operation
•Establish dept or device energy data
•Determine the major energy-consuming sectors and energy-consuming equipment
•Energy mgt status and analyse energy consumption
ImprovemeImprovement reportnt report
•Determine the energy consumption of the causes•Present different levels of energy efficiency•Analyze various options for screening and do feasibility analysis •The feasibility of the program •Determine the final program
ImplementaImplementationtion
•Provide resources to enter the implementation phase•Energy conservation project planning and implementation, monitoring plan•Establish an effective mechanism for energy management•Prepare corporate documents and operations energy management guidance documents
Continuous Continuous ImprovemeImproveme
ntnt
•Regular assessment with corporate executives meeting •According to the principles of energy management, taking PDCA approach, continuous improvement of energy efficiency programs•Establish a green and sustainable business and develop the international brand image
EEP—Process
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EEP
Years of experience in energy efficiency
assessment
Multi-disciplinary teamComprehensive energy conservation program
� Explore the energy saving, enhance energy and materials efficiency, reduce operating costs;
� Create a emission reduction business environment;� Minimise the impact of energy prices and energy shortages;� Avoid excessive energy consumption;� Establish the image of social responsibility for sustainable development;� Access to government and non-governmental organizations at home and
abroad a wide range of support;� Strengthen the international competitiveness of manufacturing enterprises to
lead the green transition.
EEP—Target
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� EEP as a professional energy management tool. TUV Rheinland Group with the support from environmental engineering, will focus on high energy consumption or large environmental impact of industrial and construction sector, as energy conservation and emission reduction projects the main target of the transformation process.
Industrial Energy saving
Metallurgy Mech & Electrical Photovoltaic Paper Cement Petrochemical Others
Building energy efficiency
Large commercial building Factory premises Civil buildings Others
EEP—Focused Areas
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In compliance with VDI 4707In compliance with VDI 4707
Lifts Energy Efficiency AssessmentLifts Energy Efficiency Assessment
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� Although lifts account for 3 to 8% (4% in EU) of a building’s total power consumption, they have a high potential for saving energy.
� In 2008, worldwide portfolio of lifts in operation is estimated at 8,500,000 units. The 4.5 million units in Europe consumed 18 TWh/year (around 2 Leibstadt nuclear power plants). Around 450,000 new lifts get installed every year.
� Reducing the current energy costs of these lifts installation by 25% would save annually approx. 5 TWh, which is equivalent of 3.1 M tons of CO2 emissions.
Elevator Energy Consumption in Buildings
Lifts
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Elevator Market & Energy Efficiency Legislation in China� Elevator market and energy consumption status
� By the end of 2009, the number of in-use elevator in China has achieved 1.3 million sets, and annual production has achieved 261,000 sets with 20% growth. China has become the biggest production and installation country globally during the past five years.
� The energy consumption of elevator is around 5% of whole building in China. The annual elevator energy consumption is about 26 TkWh, which is 1.8 times of Dayawan nuclear power station and 30% of Sanxia hydro power station.
� Summary of elevator energy efficiency standard in China
� In 2000, Hong Kong Electrical and Mechanical Services Department (EMSD has issued the “Rules for lift and escalator energy efficiency”, which specifies efficiency evaluation and classification. Currently version was updated in 2007.
� Dec. 25, 2009, Administration of Quality Supervision, Inspection and Quarantine (AQSIQ) of Zhejiang province issued “Technical specification for lift energy efficiency evaluation”, which was put in force on Jan. 25, 2010. Relevant tests of elevator energy efficiency have started. (refer to VDI 4707 Part 1)
� The standard of “Determination and classification for traction elevator energy efficiency factor” has been drafted by Guangdong AQSIQ in March of 2010.
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� VDI 4707 Part 1 was published by the Association of German Engineers in 2009.
� The guideline provides the basis for measuring, calculating energy demand and consumption for evaluation and labeling.
� Similar to Energy Performance of Buildings Directive 2002/91/EC and EnEV (Energy Conservation Ordinance) in Germany for buildings, a uniform energy certificate is to be issued for elevators so that can be easily understood.
� Classification objectively by “Usage Categories” for different building heights, use frequencies, applications and elevator types of construction.
� It adopts “Specific Energy Demand” with “mWh/(kg•m)” as evaluation unit for energy efficiency classification.
Overview of VDI 4707 Part 1
� Two major energy consumption factors are evaluated:
� Calculation to estimate yearly energy demand.
� Guideline to improve the energy efficiency.
Standby Energy Demand
Standby Energy Demand
Traveling Energy Demand
Traveling Energy Demand++
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Benefits of Elevator Energy Efficiency Assessment
� Realize energy efficiency situation of your elevators
� Find the opportunities for energy saving of your elevators
� Optimize the costs and energy input of elevator operation
� Can be a reference for building rented and sold (similar as Germany energy passport)
� Sustainable contribution to decrease CO2 emission and promote reputation
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� Reduce travel power consumption� Install Variable-Voltage & Variable-Frequency (VVVF) inverter (increase load traveling efficiency
of motor)� Install energy regenerator (transfer travelling load mechanical energy into electric energy and
feedback to power grid for regenerative usage)� Use high efficiency traction machine, gearless traction machine or permanent magnetic
synchronous electric motor� Electronic-driven brake� Install roller guide shoe instead of sliding guide shoe � Traffic dispatching control system (Group-control with destination registration, Intelligent control
techniques)� Choose reasonable and optimal specifications (speed�acceleration�nominal load)
Energy-Saving Technology for Elevator
� Reduce stand-by power consumption� After a period of stand-by mode, automatically switch off power of lighting, ventilation, inverter
and door machine motor.
� Switch control system to sleep mode.
� Improve the elevator management quality & switch off partial elevators during off-peak hours.
� Use high energy efficient lighting such as LED lighting
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Stairs are a good option !Stairs are a good option !Switched off to save your energy !Switched off to save your energy !
Start from Elevator to to Sustainable Environment
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TUV RheinlandYour Expert in Sustainable Development
Phone (+86) 20- 2839 1225Fax (+86) 20- 2839 1999
E-mail: [email protected]
Paul Wang