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    • 1. 发明申请
    • FUEL CELL SYSTEM AND METHOD OF INFLUENCING THE HEAT AND TEMPERATURE BUDGET OF A FUEL CELL STACK
    • 燃料电池系统及其对燃料电池堆温度和温度预算的影响
    • US20090191434A1
    • 2009-07-30
    • US12439640
    • 2007-07-05
    • Stefan KädingJeremy LawrenceNorbert GüntherSu Zhou
    • Stefan KädingJeremy LawrenceNorbert GüntherSu Zhou
    • H01M8/00H01M8/06H01M8/04
    • H01M8/04014H01M8/0612H01M2008/1293
    • The invention relates to a fuel cell system including a fuel cell stack (10), an afterburner (12) for combustion of exhaust gas emerging from the fuel cell stack and sited in an exhaust gas conduit of the afterburner a heat exchanger (16) in which cathode feed air (18) supplied to the fuel cell stack (10) can be heated.In accordance with the invention it is provided for that cathode feed air (20) can be supplied to the fuel cell stack (10) without being prior heated in the heat exchanger (16) and that the heat and temperature balance of the fuel cell stack (10) can be tweaked by the overall flow of the cathode feed air supplied as well as by the ratio of the proportions (18, 20) of the cathode feed air as heated in the heat exchanger and as not heated in the heat exchanger.The invention relates furthermore to a method of tweaking the heat and temperature balance of a fuel cell stack.
    • 燃料电池系统技术领域本发明涉及一种燃料电池系统,其包括燃料电池堆(10),用于燃烧从燃料电池堆排出的废气的再燃烧器(12),并位于加力燃烧器的排气管道中, 可以加热供给到燃料电池堆(10)的阴极进料空气(18)。 根据本发明,提供了阴极进料空气(20)可以在热交换器(16)中不经过预先加热而被供应到燃料电池堆(10),并且燃料电池堆的热和温度平衡 (10)可以通过所供给的阴极进料空气的总流量以及在热交换器中加热的阴极进料空气的比例(18,20)和在热交换器中未加热的比例来调节。 本发明还涉及一种调节燃料电池堆的热和温度平衡的方法。
    • 5. 发明授权
    • Virtual-channel merging
    • 虚拟渠道合并
    • US07110363B1
    • 2006-09-19
    • US10353125
    • 2003-01-28
    • Jeremy LawrenceBruce S. DavieDavid A. Hughes
    • Jeremy LawrenceBruce S. DavieDavid A. Hughes
    • H04J1/00H04L12/28H04L12/66
    • H04L12/5601H04L49/104H04L2012/5624H04L2012/5626H04L2012/5672
    • A method for operating a router which combines virtual channels is disclosed, where both forward and reverse directed resource management cells are used to control transmission rate of a source computer. The merging router receives forward directed resource management cells from a plurality of upstream routers, where each forward directed resource management cell represents a virtual channel. The router: (1) replies to each upstream router with a reverse directed resource management cell; and (2) forwards to a downstream router a combined forward directed resource management cell, the combined forward directed resource management cell combining a plurality of virtual channels established between the router and the plurality of upstream routers.
    • 公开了一种用于操作组合虚拟信道的路由器的方法,其中使用正向和反向定向的资源管理小区来控制源计算机的传输速率。 合并路由器从多个上游路由器接收前向资源管理小区,其中每个前向资源管理小区表示虚拟信道。 路由器:(1)用反向资源管理单元回复每个上游路由器; 并且(2)将组合的前向资源管理小区转发到下游路由器,组合的前向资源管理小区组合在路由器和多个上游路由器之间建立的多个虚拟信道。
    • 6. 发明授权
    • System for reacting fuel and air into reformate
    • 将燃料和空气反应成重整产物的系统
    • US07381229B2
    • 2008-06-03
    • US11006730
    • 2004-12-08
    • Jeremy Lawrence
    • Jeremy Lawrence
    • B01J7/00
    • B01J4/002B01J19/26C01B3/50C01B2203/0495F23C99/00F23C2900/03002F23D91/02
    • A system for reacting fuel and air into reformate, with a reformer (10) which has a reaction space (12), a nozzle (14) which at least in part is formed as a Venturi nozzle for supply of a fuel/air mixture to the reaction space (12), the Venturi nozzle part has a small diameter area (16) from which a diffuser extends to the reaction space. A first gas supply means (20) is provided on the side of the small diameter area which side faces away from the diffuser, and second gas supply means (26, 28) are provide at the small diameter area. A fuel supply (22) is also provided for supplying fuel to the nozzle and it preferably extends along the longitudinal axis of the nozzle.
    • 一种用于将燃料和空气反应成重整产物的系统,具有反应空间(12)的重整器(10),至少部分形成为文丘里喷嘴的喷嘴(14),用于将燃料/空气混合物供应到 反应空间(12),文丘里喷嘴部分具有小直径区域(16),漫射器从该空间延伸到反应空间。 第一气体供给装置(20)设置在小直径区域的一侧背离扩散器的一侧,第二气体供给装置(26,28)设置在小直径区域。 燃料供应装置22还用于向喷嘴供应燃料,并且其优选地沿着喷嘴的纵向轴线延伸。
    • 8. 发明授权
    • Congestion avoidance on communications networks
    • 通信网络拥塞避免
    • US06430155B1
    • 2002-08-06
    • US09201337
    • 1998-11-30
    • Bruce DavieDaniel C. TappanJeremy Lawrence
    • Bruce DavieDaniel C. TappanJeremy Lawrence
    • G01R3108
    • H04L47/10H04L45/00H04L45/502
    • An interface (12, 14, or 16) in a service-provider network's transit label-switching router (P2) employs resource-management messages to inform neighbor routers of the bandwidths that it can allocate to various routes that it supports. To allocate its available bandwidth, it employs a weight value set for the route by an ingress router (PE2) in a system to which the label-switching router belongs. The transit router treats the weight as a relative bandwidth: when the sum of the bandwidths requested for various routes exceeds the bandwidth available, the router sets the bandwidths for at least some routes in accordance with the ratio of a given route's weight to the sum of the weights assigned to all routes among which it divides available bandwidth in this manner. That is, it assigns at least some bandwidth to all such routes, regardless of how small the resultant bandwidth may be. In this way, the network can operate with virtually no packet loss and yet remain available to all of its customers.
    • 服务供应商网络的交通标签交换路由器(P2)中的接口(12,14或16)使用资源管理消息来向相邻路由器通知其可以分配给其支持的各种路由的带宽。 为了分配其可用带宽,它为标签交换路由器所属的系统中的入口路由器(PE2)采用为路由设置的权重值。 交换路由器将权重视为相对带宽:当各种路由请求的带宽总和超过可用带宽时,路由器根据给定路由权重与总和的比例来设置至少一些路由的带宽 分配给所有路由的权重,其中以这种方式划分可用带宽。 也就是说,它为所有这样的路由分配至少一些带宽,而不管结果带宽可能有多小。 以这种方式,网络可以几乎没有数据包丢失而运行,但仍然可供所有客户使用。
    • 9. 发明申请
    • FUEL CELL SYSTEM WITH REFORMER AND REHEATER
    • 具有改造器和再加热器的燃料电池系统
    • US20110311892A1
    • 2011-12-22
    • US12305808
    • 2007-06-21
    • Jeremy LawrenceStefan Kading
    • Jeremy LawrenceStefan Kading
    • H01M8/06
    • H01M8/0662H01M8/0631
    • The Intention relates to a fuel cell system comprising a reformer with a burner unit for reacting fuel with oxidant in an exothermic oxidation reaction to form a product gas which downstream of the burner unit is mixable with additional fuel, the resulting gas mixture being reformable in the reformer into a reformate; a fuel cell stack for receiving a supply of the reformate; and an afterburner for receiving a supply of the substances reacted in the fuel cell stack, with a burner unit for reacting fuel with oxidant in an exothermic oxidation reaction. In accordance with the invention it is provided for the burner unit of the reformer is engineered identical to the burner unit of the afterburner. In addition, the invention relates to a motor vehicle comprising one such fuel cell system.
    • 该意图涉及一种燃料电池系统,其包括具有燃烧器单元的重整器,用于在放热氧化反应中使燃料与氧化剂反应以形成产物气体,其在燃烧器单元的下游与另外的燃料混合,所得气体混合物可在 改革者重组; 用于接收重整产品供应的燃料电池堆; 以及用于接收在燃料电池堆中反应的物质的供应的加力燃烧器,具有用于在放热氧化反应中使燃料与氧化剂反应的燃烧器单元。 根据本发明,提供了重整器的燃烧器单元被设计成与加力燃烧器的燃烧器单元相同。 此外,本发明涉及包括一个这样的燃料电池系统的机动车辆。
    • 10. 发明授权
    • Burner device with a porous body
    • 具有多孔体的燃烧器
    • US07758337B2
    • 2010-07-20
    • US11577298
    • 2005-10-11
    • Stefan KaedingJeremy Lawrence
    • Stefan KaedingJeremy Lawrence
    • F23N5/00F23D3/40
    • H01M8/04022F23C99/006F23D2204/10F23G7/065F23G2202/50F23N2037/30H01M8/0662Y02E20/12
    • A burner device having a burner chamber (26) filled at least partially by a porous body (28), an evaporation zone (12) upstream of the burner chamber (26) for evaporating liquid fuel supplied via a fuel inlet line (16), an igniter (30) for igniting a combustion mixture of evaporated liquid fuel and combustion air supplied via a combustion air inlet line (18) to the evaporation zone (12) as well as an exhaust discharge (38) downstream of the combustion chamber (26). A mixing zone (20) is disposed between the evaporation zone (14) and the combustion chamber (26) in which fuel gas is introduced via a fuel gas inlet line (22, 24) and is mixed with the combustion air and/or the combustion mixture. The burner device can be used as an afterburner in a fuel cell stack.
    • 一种燃烧器装置,其具有至少部分地由多孔体(28)填充的燃烧室(26),在燃烧器室(26)上游的蒸发区(12),用于蒸发通过燃料入口管线(16)供应的液体燃料, 用于点燃蒸发的液体燃料和通过燃烧空气入口管线(18)供应到蒸发区域(12)的燃烧空气的燃烧混合物的点火器(30)以及在燃烧室(26)下游的排气(38) )。 混合区(20)设置在蒸发区(14)和燃烧室(26)之间,燃烧气体通过燃料气体入口管线(22,24)引入燃烧室,并与燃烧空气和/或 燃烧混合物。 燃烧器装置可以用作燃料电池堆中的加力燃烧器。