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    • 15. 发明授权
    • Electrical heating coal material decomposition apparatus
    • 电加热煤分解装置
    • US08945349B2
    • 2015-02-03
    • US13814290
    • 2010-09-15
    • Shucheng ZhuXibin WangXiangyun HuangGuochao CaoWei Liu
    • Shucheng ZhuXibin WangXiangyun HuangGuochao CaoWei Liu
    • C10B21/20C10B53/04C10B19/00C10B47/30C10B47/32C10K1/02C10K1/04
    • C10B53/04C10B19/00C10B47/30C10B47/32C10K1/02C10K1/04
    • An electrical heating coal material decomposition apparatus includes a closed kiln body with a feed inlet, a discharge outlet, and an electrical heating device arranged in the kiln body. A propulsion and decomposition path of coal material is formed between the electrical heating device and the inner wall of the kiln body. A coal decomposition gas collecting pipe communicates with the propulsion and decomposition path of coal material, and is connected with a gas dust-trapping and liquefying device arranged outside the kiln. The electrical heating device transfers heat to the pulverized coal inside the propulsion and decomposition path of coal material by conduction and irradiation. The pulverized coal absorbs sufficient heat and decomposes into fuel gas, tar gas and coal. The fuel gas and tar gas enters the gas dust-trapping and liquefying mechanism through the decomposed gas collecting tube, where they are collected, dust-trapped, separated and liquefied under pressure.
    • 电加热煤分解装置包括具有进料口,排出口和布置在窑体内的电加热装置的封闭窑体。 在电加热装置和窑体内壁之间形成煤材的推进和分解路径。 煤分解气体收集管与煤材的推进和分解路径连通,并与排放在窑外的气体捕集和液化装置连接。 电加热装置通过传导和照射将热量传递到煤材推进和分解路径内的粉煤。 粉煤吸收足够的热量,分解成燃气,焦油和煤。 燃气和焦油气体通过分解气体收集管进入气体除尘和液化机构,在这些集气管中收集,在压力下被灰尘捕获,分离和液化。
    • 16. 发明授权
    • Request control device, request control method and associated processors
    • 请求控制设备,请求控制方法和相关处理器
    • US08898440B2
    • 2014-11-25
    • US12858588
    • 2010-08-18
    • Xiao Tao ChangWei LiuKun WangHong Bo Zeng
    • Xiao Tao ChangWei LiuKun WangHong Bo Zeng
    • G06F15/00G06F7/38G06F9/00G06F9/44G06F9/54
    • G06F9/546G06F2209/548
    • A request control device, request control method, and a multiprocessor cooperation architecture. The request control device is connected to a request storage module and includes a comparing means and an identifier means. The comparing means is configured to determine if an incoming first queue unit corresponds to the same message with a queue unit that has existed in the request storage module. The identifier setting means is configured to set a save identifier of the queue unit that has existed in the request storage module to indicate not to save a state associated with the message if the first queue unit corresponds to the same message with the queue unit that has existed in the request storage module. According to the technical solution of the invention, the access to the memory caused by saving/loading the states is reduced and thereby increases the processing speed of the processor.
    • 请求控制装置,请求控制方法以及多处理器协作架构。 请求控制装置连接到请求存储模块,并包括比较装置和识别装置。 比较装置被配置为确定进入的第一队列单元是否具有与存在于请求存储模块中的队列单元相同的消息。 所述标识符设置装置被配置为如果所述第一队列单元对应于具有所述消息的队列单元的相同消息,则将存在于所述请求存储模块中的队列单元的保存标识符设置为指示不保存与所述消息相关联的状态 存在于请求存储模块中。 根据本发明的技术方案,减少了由保存/加载状态引起的对存储器的访问,从而增加了处理器的处理速度。