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汽车专业毕业设计翻译save-our-air-with-hybird-electric-shool-buses.doc

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1、Saving our Air with Hybrid Electric School BusesA proposal by:Advanced Energy, Institute for Transportation Research and Education, Duke Power, Progress EnergyProposal No. 13-32720NC Department of AdministrationOffice of Fiscal Management (Purchasing)1306 Mail Service CenterRaleigh, NC 27699-1306Pro

2、gram Contact:Ewan Pritchard, EngineerAdvanced Energy909 Capability Drive, Suite 2100Raleigh, NC 27606919/857-9000www.advancedenergy.orgTechnical ProposalSaving our Air with Hybrid Electric School BusesA proposal by:Advanced Energy, Institute for Transportation Research and Education, Duke Power, Pro

3、gress EnergyOverviewThe State Energy Office is well aware of the problems posed by the air quality issues facing the state. This proposal seeks to begin solving some of those problems through a partnership among the State Energy Office, Advanced Energy, and others who share these concerns. The benef

4、its of this project include: Studying reduction of emissions by using hybrid electric buses, thus promoting subsequent benefits to air quality and health, Taking important steps towards solving non-attainment issues, thus ensuring that economic development in North Carolina is not jeopardized, and P

5、otentially reducing the states dependence on foreign energy sources.Carbon monoxide, nitrogen oxides, particulates and other pollutants pose significant health risks to North Carolinas residents and their children, especially those with asthma or other lung conditions. Studies have shown that the am

6、ount of particulates inhaled by children on school buses creates a major threat to their lung development and pulmonary health. Beyond the health risk, excessive pollutants also pose a serious risk to our economy. As many as 25 counties of North Carolina are soon to be declared in non-attainment due

7、 to ozone exceedances. This means that many counties will have reduced abilities to bring in new industries and developments. Federal road funds will be frozen, reducing funds to the state potentially in the hundreds of millions of dollars each year. The health and economics risks are compelling. We

8、 must move quickly to address them.With more than 50% of ozone-producing emissions coming from the transportation sector, the proposal team listed above offers a proposal that has the potential to reduce NC nitrogen oxide (the major precursor of ozone) emissions by as many as 4,000 tons per year. Th

9、is will not solve all of North Carolinas air quality issues but could be one of several components with significant air quality benefits. The proposal team offers to the North Carolina State Energy Office the opportunity to participate in the development of hybrid electric school buses. Each year 13

10、,000 school buses roll through North Carolina roads, logging millions of miles and producing thousands of tons of emissions that affect the atmosphere and the health of the children who ride them. We propose to put in place a process that capitalizes on North Carolina strengths to design and build h

11、ybrid electric school buses.The project will run in two phases, with a stop point between the two to assess results before continuing. Advanced Energy has already formed a Hybrid Bus Advisory Group that has been engaged in work for the past six months. The Advisory Group includes members from the No

12、rth Carolina Departments of Public Instruction, of Environment and Natural Resources, and of Transportation, along with the U.S. Environmental Protection Agency, North Carolina State University, and the Institute for Transportation Research and Education. This advisory group will help develop a targ

13、eted education campaign for pertinent stakeholdersdirected to school bus manufacturers, electric utilities, and the NC Department of Public Instruction. The proposed deliverable of this project is the design, conversion, and use of a hybrid electric school bus in a real world setting. This will pote

14、ntially be the first of as many as 13,000 hybrid electric buses in the state.This proposal has the potential to produce significant impacts on the air quality, petroleum usage, and economic strength of the state while providing substantial health benefits to North Carolinians and their children.Corp

15、orate Background and ExperienceAdvanced Energys experience with vehicles powered by alternative fuels dates back to April 1989, when we began testing a fullsize General Motors electric van at the Raleigh Housing Authority. The electric van was demonstrated and shown throughout the Carolinas and Virg

16、inia. The van project was followed in 1991 by the purchase of a Pontiac Fiero converted to electric operation for demonstration as a shortrange highway-speed commuter vehicle. This EV is still often used by Advanced Energy as a demonstration vehicle.Advanced Energy has participated with the EV Chall

17、enge program for more than a decade. EV Challenge is an educational program directed to high school students that culminates with a competition of electric vehicles designed and operated by the students. For many years, Advanced Energy was the lead organization. Since the formation of EV Challenge a

18、s its own stand-alone organization, Advanced Energy has moved into a support role. This continues through today, the most recent competition having taken place in April 2003.Advanced Energy has also been involved for more than 5 years with the Clean Cities program, which explores methods to reduce t

19、he impacts of transportation technologies.Other related projects in the past few years include numerous demonstration projects and feasibility studies of a wide range of innovative technology in industrial settings. These feasibility studies include data gathering in real world settings to estimate

20、operating and maintenance costs and capital investment needs. We work with a wide range of industries and interface with personnel from CEOs to machine operators to maintenance mechanics. Advanced Energy technology assessments have been widely used for many years to guide large capital investment pr

21、ojects. Located in Raleigh, North Carolina, Advanced Energy is the national resource that focuses on industrial process technologies, motors and drives testing, and applied building science, with state-of-the-art testing and applied research laboratories. We are a non-profit corporation that creates

22、 economic and environmental benefits through innovative approaches to energy.Advanced Energy was originally known as Alternative Energy Corporation, or AEC. We were founded by the North Carolina Utilities Commission in 1980a time when electric rates had been rising due to increased power plant const

23、ruction. The Utilities Commission saw AEC as a way to help the utilities avoid building new power plants by exploring alternative ways of producing electricity and by getting more work out of the electricity already available. With the cooperation of the states major electric utilities, the Utilitie

24、s Commission set up funding to come from the electric ratepayers of the statean investment equivalent to about 39 cents per person per year. The money is collected by member utilities and then passed along to Advanced Energy. The members are Dominion North Carolina, Duke Power, Progress Energy, and

25、North Carolinas electric cooperatives. The corporation is governed by a Board of Directors with eight members appointed by the governor of North Carolina and four directors named by the member utilities.In the years since 1980, we have carried out hundreds of projects for all sectors of the economy,

26、 including agriculture, industry, commercial, residential, governments and nonprofits, education, and utilities. On June 1, 1997, the North Carolina Alternative Energy Corporation, or AEC, became Advanced Energy. The emphasis on innovation and efficiency has not changed as Advanced Energy continues

27、to build on a foundation of expertise and achievement in applied building science, motors and drives testing, and industrial process technologies.Financial StatementA copy of the most recent audited statement is included in the Cost Proposal packet.Technical ApproachThe Request for Proposals asks fo

28、r projects that improve air quality and reduce imports of foreign petroleum. This project sets in motion a plan that achieves these goals as much as any. With 13,000 school buses plying the roads of North Carolina and logging millions of miles, the opportunities are great for improving efficiency an

29、d reducing air emissions. These buses use as much as 20 million gallons of gasoline and diesel every year. Reducing those figures could have a significant impact on the petroleum imported into the state each year.Probably most important, and the largest opportunity for change, is that recent studies

30、 by the U.S. Environmental Protection Agency and others have shown that the air quality inside and around school buses has higher levels of pollutants. This puts our children at risk. By producing school buses that use hybrid electric vehicle technology, we move the majority of emissions from the ve

31、hicle tailpipe to the electric utility. The electric utility is far more regulated and, according to the EPA, energy produced at power plants is much cleaner that that produced by a vehicle. By using these school buses, we can cut the consumption of petroleum in half or better. This is a project tha

32、t has the potential to impact millions of gallons of petroleum imports, improve ambient air quality for North Carolina, and improve the on-bus air quality. Meanwhile, since a large portion of the U.S. school buses are built in North Carolina, this has the potential for an economic and jobs benefit.

33、Since the project will involve the development of a hybrid electric school bus, it is a natural for the school children to learn about the technologies and benefits. The project will create the opportunity to work with those children and their families.Scope of WorkThe Scope of Work is most appropri

34、ately defined in the “Time Line,” “Task List,” and “Deliverables” sections below. In summary, the proposal team intends to work with vehicle manufacturers to design and build a hybrid electric school bus and then study the bus for performance compared to computer models. A key component of the proje

35、ct involves the development of the benefits that can be accrued by North Carolina with success of hybrid electric school buses. This includes jobs creation, emission reductions, foreign petroleum reductions, and other. With as much as 50% of the U.S. school bus manufacturing capacity here in North C

36、arolina, this is the ideal place for this project. Time lineItemTime from startContract Award0Sign Contract1 monthFeasibility Study11 monthsParticipation and Education11 monthsModeling5 monthsBus Design11 monthsBus Conversion16 monthsFinal Report24 monthsProject OversightOngoingAdvisory GroupOngoing

37、Task ListPhase I Feasibility Studyo Evaluate Optionso Feasibility of Optionso Cost/timelines of options Participant Buy-in and educationo Interview School Bus Maintenance Personnelo Interview Hybrid Bus Maintenance Personnelo Work with Bus manufacturerso Work with Hybrid System Manufacturerso Work w

38、ith Chassis Manufacturers Modelingo Monitor Existing buso Determine Promising Technology Mixtures Allocated by Advisory Groupo Determine Critical Parameters Allocated by Advisory Group Emissions Energy Initial Cost Operating Cost Maintenanceo Build Models (Built in DOE Advisor Model)o Run Modelso An

39、alyze Models (Emissions, Energy)o Publish Results Bus Designo Work with manufacturers to determine most viable platformso Create purchase specifications from most viable and best modelso Order busPhase II Bus Conversion & Deliveryo Oversee bus construction through multiple manufacturers (if necessar

40、y)o Inspect Bus upon deliveryo Provide necessary training on Hybrid Bus to operators and maintenance staffo Monitor bus during operation Maintenance Operating Costs Energy Emissions Final Reporto Assemble results and analyzeo Submit final reportDeliverablesThis project will result in a number of imp

41、ortant deliverables that will have an impact on the air quality and economic value of North Carolina.General Advisory Group: The project team has already formed and held several meetings of an advisory group. These meetings will continue, with a major component of the meetings being review of this p

42、roject and planning for next steps. Project Oversight: This is the management function of this project and involves accounting, billing, contracting and other duties necessary to ensure a smooth and successful project.Phase 1 Feasibility Study: The feasibility study will provide a cost evaluation of

43、 producing hybrid electric buses. It will focus on the bus manufacturing plants here in North Carolina and assess the potential production and employment impacts. The feasibility study will also cover the potential value of emission reductions from hybrid buses. Participant Buy-In and Education: The

44、 only way for a project of this type to succeed is to achieve the buy-in of the pertinent customers. These are the people who will be impacted by decisions and developments. Buy-in is necessary from the bus manufacturer, electric utilities, NC Department of Public Instruction, NC Department of Envir

45、onment and Natural Resources and others. Modeling: The Advisory Group will work with pertinent organizations to monitor existing school buses and determine the most appropriate technologies and designs for the bus. This will be incorporated into a computer modeling system which can be analyzed and p

46、ublished. Bus Design: The key deliverable of this phase is the design of a modified school bus that allows for the requirements of a hybrid electric drive train. This design will allow us to quantify the costs of conversion or implementation by original equipment manufacturers.Phase 2 Bus Conversion

47、: Taking the design from Phase 1, Advanced Energy and partners will convert one bus provided by the NC Department of Public Instruction. The converted bus will be placed in service in a local school district and monitored for performance. Final Report: The final report will incorporate updates to th

48、e feasibility study based on experience converting a school bus and monitoring performance.CollaborationA key strength of this proposal is the access to industry experts via the already formed Advisory Group. The Advisory Group members have an interest in developing hybrid bus technologies and are well versed in the field. Hybrid Electric Bus Advisory Group The hybrid electric bus project involves

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