首页> 外文会议>ASME international mechanical engineering congress and exposition >OVERVIEW OF THE OAK RIDGE NATIONAL LABORATORY ADVANCED MANUFACTURING INTEGRATED ENERGY DEMONSTRATION PROJECT: CASE STUDY OF ADDITIVE MANUFACTURING AS A TOOL TO ENABLE RAPID INNOVATION IN INTEGRATED ENERGY SYSTEMS
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OVERVIEW OF THE OAK RIDGE NATIONAL LABORATORY ADVANCED MANUFACTURING INTEGRATED ENERGY DEMONSTRATION PROJECT: CASE STUDY OF ADDITIVE MANUFACTURING AS A TOOL TO ENABLE RAPID INNOVATION IN INTEGRATED ENERGY SYSTEMS

机译:橡树岭国家实验室先进制造一体化能源示范项目概述:以制造为工具的综合制造的案例研究,以实现综合能源系统的快速创新

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Oak Ridge National Laboratory's Additive Manufacturing Integrated Energy (AMIE) demonstration project leverages rapid innovation through additive manufacturing to connect a natural-gas-powered hybrid electric vehicle to a high-performance building designed to produce, consume, and store renewable energy. The AMIE demonstration project consists of a building and vehicle that were additively manufactured (3D-printed) using the laboratory's big area additive manufacturing (BAAM) capabilities and an integrated energy system with smart controls that connects the two via wireless power transfer. The printed utility vehicle features a hybrid electric powertrain with onboard power generation from a natural gas fueled auxiliary power unit (APU). The APU extends vehicle range through a series hybrid powertrain configuration that recharges the vehicle's lithium-ion energy storage system and acts as a mobile power generation system for the printed building. The development of the powertrain used for the printed range-extended electric vehicle was completed using a powertrain-in-the-loop development process and the vehicle prototype implementation was accelerated using BAAM. A flexible 3.2 kW solar photovoltaic system paired with electric vehicle batteries will provide renewable power generation and storage. Energy flows back and forth between the car and house using fast, efficient bidirectional wireless power transfer. The AMIE project marked the first demonstration of bidirectional level 2 charging through wireless power transfer. The accelerated creation and printing of the car and house will further demonstrate the program's function as an applied science tool to get products to market more quickly than what currently is possible with traditional manufacturing. This paper presents a case study that summarizes the efforts and technical details for using the printed research platforms. This paper explores the focuses on printing of the vehicle, powertrain integration, and possibilities for vehicles providing power to buildings in different scenarios. The ability for BAAM to accelerate the prototype development for the integrated energy system process is explored. Details of how this was successfully accomplished in 9 months with more than 20 industry partners are discussed.
机译:橡树岭国家实验室(Oak Ridge National Laboratory)的增材制造集成能源(AMIE)示范项目利用增材制造的快速创新,将天然气动力混合动力汽车与旨在生产,消耗和存储可再生能源的高性能建筑相连接。 AMIE示范项目包括利用实验室的大面积增材制造(BAAM)功能进行增材制造(3D打印)的建筑物和车辆,以及具有智能控制的集成能源系统,该系统通过无线电源传输将两者连接起来。印刷多功能车具有混合动力总成,其动力来自天然气供能的辅助动力装置(APU)。 APU通过一系列混合动力总成配置扩展了车辆的行驶范围,该配置为车辆的锂离子储能系统充电,并充当印刷建筑的移动发电系统。用于印刷的增程电动汽车的动力总成的开发是通过动力总成系统的开发过程完成的,而车辆原型的实现则使用BAAM进行了加速。灵活的3.2 kW太阳能光伏系统与电动汽车电池配对,将提供可再生的发电和存储。能量通过快速,高效的双向无线电力传输在汽车和房屋之间来回流动。 AMIE项目标志着通过无线电力传输进行双向2级充电的首次展示。汽车和房屋的加速创建和打印将进一步证明该程序作为一种应用科学工具的功能,从而比传统制造中目前的产品更快地将产品推向市场。本文提供了一个案例研究,总结了使用印刷研究平台的努力和技术细节。本文探讨了车辆印刷,动力总成集成以及在不同情况下为建筑物供电的可能性。探索了BAAM加快集成能源系统过程原型开发的能力。讨论了如何与20多个行业合作伙伴在9个月内成功实现此目标的详细信息。

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