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WREF 2012: MACRO-SYSTEM MODEL FOR HYDROGEN ENERGY SYSTEMS ANALYSIS IN TRANSPORTATION

机译:WREF 2012:交通运输中氢能系统分析的宏系统模型

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摘要

The introduction of hydrogen as an energy carrier for light-duty vehicles involves concomitant technological development of an array of infrastructure elements, such as production, delivery, and dispensing, all associated with energy consumption and emission levels. To analyze these at a system level, the suite of corresponding models developed by the United States Department of Energy and involving several national laboratories is combined in one macro-system model (MSM). The MSM uses a federated simulation framework for consistent data transfer between the component models. The framework is built to suit cross-model as well as cross-platform data exchange and involves features of "over-the-net" computation. While the MSM can address numerous hydrogen systems analysis aspects, of particular interest is the optimal deployment scenario. Depending on user-defined geographic location and hydrogen demand curve parameters, the cost-optimal succession of production/delivery/dispensing pathways undergoes significant changes (the most important of these being the transition between distributed and central hydrogen production with delivery). Some 'tipping' (break-even) points are identified.
机译:氢作为轻型车辆的能量载体的引入涉及一系列基础设施的技术开发,例如生产,运输和分配,所有这些都与能源消耗和排放水平相关。为了在系统级别分析这些数据,将由美国能源部开发并涉及多个国家实验室的相应模型套件组合到一个宏系统模型(MSM)中。 MSM使用联合仿真框架在组件模型之间进行一致的数据传输。该框架是为适应跨模型以及跨平台的数据交换而构建的,并包含“网上”计算的功能。尽管MSM可以解决众多氢气系统分析方面的问题,但特别令人关注的是最佳部署方案。根据用户定义的地理位置和氢气需求曲线参数,生产/交付/分配途径的成本最优顺序会发生重大变化(其中最重要的是分布式和集中式氢气生产与交付之间的过渡)。确定了一些“临界”点(收支平衡)。

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