首页> 外文期刊>International journal of hydrogen energy >Feasibility of the Zero-V: A zero-emissions hydrogen fuel-cell coastal research vessel
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Feasibility of the Zero-V: A zero-emissions hydrogen fuel-cell coastal research vessel

机译:零V的可行性:零排放氢燃料 - 细胞沿海研究船

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摘要

A study is presented to determine the technical, regulatory, and economic feasibility of a coastal research vessel (named the "Zero-V") powered solely by hydrogen fuel cells. Feasibility is examined in the context of science mission profiles of particular significance in coastal oceanography that require a modern, capable, general-purpose coastal research vessel. These missions translate into the primary Zero-V vessel requirements against which technical feasibility is assessed. Hull form analysis indicated a trimaran design enables a vessel that can meet all of the space and volume requirements as well as for fitment of the machinery, service, and control spaces necessary for operation of the vessel. To meet speed and range (endurance) requirements, the vessel needs to be constructed of aluminum to reduce weight. The beam (56 feet), length (170 feet) and draft (12 feet) of the vessel enable it to dock at all primary ports of call. With 1800 kW of installed proton exchange membrane (PEM) fuel-cell power for primary propulsion, the cruising speed is 10 knots. With 10,900 kg of consumable LH_2 stored in two LH_2 tanks, the range of the vessel is 2400 nautical miles, with an endurance of 15 days. Both the greenhouse gas (GHG) and criteria pollutant (NO_x, HC, PM_(10)) emissions were estimated based on a complete "well-to-waves" (WTW) analysis. Using renewable hydrogen, the annual WTW GHG emissions predicted for the Zero-V are 91.4% less than those from an equivalent vessel running on conventional diesel fuel. Analysis of the WTW criteria pollutant emissions show that hydrogen PEM fuel-cell technology can reduce these emissions below stringent U.S. Environmental Protection Agency (EPA) Tier 4 marine diesel engine emissions limits regardless of whether the hydrogen is made using natural gas or renewable methods. The capital construction cost is estimated to be ~ $79 M, not unreasonable when compared to other modern diesel-fueled research vessels of similar size and capabilities. The operations and maintenance (O&M) costs of the Zero-V were estimated to be 7.7% higher than operating the equivalent diesel-fueled vessel at the assumed fuel prices for LH_2 made from steam reforming of fossil natural gas. The approach to safety for the Zero-V is described in terms of the arrangement of hazardous areas on the vessel. Regulatory review of the vessel design by the United States Coast Guard (USCG) and the Class society DNV GL found no fundamental or "show-stopping" design concerns that would prevent eventual deployment of the Zero-V. Overall, this study found it feasible from technical, regulatory, and economic perspectives to design, build and operate a coastal research vessel powered solely by hydrogen fuel cells.
机译:提出了一项研究,以确定沿海研究船的技术,监管和经济可行性(名为“零V”),该方法仅由氢燃料电池供电。在科学使命概况中审查可行性,在沿海海洋学的特殊意义,需要现代,有能力,通用的沿海研究船只。这些任务转化为初级零v船舶要求,该要求评估技术可行性。船体形式分析表明了一个Trimaran设计,可以满足所有空间和容量要求以及机械,服务和控制器的操作的装配。为了满足速度和范围(耐力)要求,船只需要由铝构成以减轻重量。船的梁(56英尺),长度(170英尺)和船的牵伸(12英尺)使其能够在所有呼叫的主要端口停靠。对于1800千瓦的安装质子交换膜(PEM)燃料电池供电用于初级推进,巡航速度为10节。储存在两个LH_2坦克中的10,900公斤的消耗LH_2,船的范围为2400海里,耐久性为15天。基于完全的“井 - 波浪”(WTW)分析,估计温室气体(GHG)和标准污染物(NO_X,HC,PM_(10))排放。使用可再生氢气,对零v预测的每年WTW温室气体排放量比在常规柴油燃料上运行的等效船舶的少于91.4%。 WTW标准污染物排放分析表明,氢PEM燃料电池技术可以减少以下严格的美国环境保护局(EPA)第4层船用柴油发动机排放限制,无论氢气是否采用天然气或可再生方法制造。与其他现代柴油燃料的研究船相比,估计资本建设成本估计为79米,而不是不合理的类似规模和能力的研究船。零v的运营和维护(O&M)成本估计比使用化石天然气的蒸汽重整所制作的LH_2所采用的燃料价格高出7.7%。根据血管上的危险区域的布置,描述了零V的安全方法。由美国海岸警卫队(USCG)和班级社会DNVGL的监管审查没有发现任何基本或“展示停止”的设计问题,这将防止最终部署零v。总体而言,这项研究发现,从技术,监管和经济角度来看,可行的设计,建造和操作仅由氢燃料电池供电的沿海研究船只。

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