EXHAUST FLOW MODIFIER, DUCT INTERSECTION INCORPORATING THE SAME, AND METHODS THEREFOR
    91.
    发明申请
    EXHAUST FLOW MODIFIER, DUCT INTERSECTION INCORPORATING THE SAME, AND METHODS THEREFOR 审中-公开
    排气修改器,与其同时进行的管道接触及其方法

    公开(公告)号:US20170015908A1

    公开(公告)日:2017-01-19

    申请号:US15281891

    申请日:2016-09-30

    Abstract: A duct intersection comprising a first duct portion and a second duct portion extending laterally from a side of the first duct portion. At least one flow modifier is mounted inside one of the first and second duct portions. The flow modifier is a contoured duct liner and/or the flow modifier includes at least one turning vane. The duct intersection may also include a transition portion extending between the first and second duct portions, wherein the transition portion has a length extending along a side of the first duct portion and a depth extending away from the side of the first duct portion, wherein the length is greater than a diameter of the second duct portion.

    Abstract translation: 一种管道交叉口,其包括从第一管道部分的侧面横向延伸的第一管道部分和第二管道部分。 至少一个流量调节剂安装在第一和第二管道部分之一内。 流动调节器是轮廓管道衬套和/或流量调节器包括至少一个转动叶片。 管道交叉口还可以包括在第一和第二管道部分之间延伸的过渡部分,其中过渡部分具有沿着第一管道部分的一侧延伸的长度和远离第一管道部分的侧面延伸的深度,其中, 长度大于第二导管部分的直径。

    METHODS AND SYSTEMS FOR IMPROVED QUENCH TOWER DESIGN
    93.
    发明申请
    METHODS AND SYSTEMS FOR IMPROVED QUENCH TOWER DESIGN 审中-公开
    改进塔顶设计的方法和系统

    公开(公告)号:US20160222297A1

    公开(公告)日:2016-08-04

    申请号:US15014547

    申请日:2016-02-03

    CPC classification number: C10B39/08 C10B39/00 C10B39/04 C10B41/00

    Abstract: The present technology describes methods and systems for an improved quench tower. Some embodiments improve the quench tower's ability to recover particulate matter, steam, and emissions that escape from the base of the quench tower. Some embodiments improve the draft and draft distribution of the quench tower. Some embodiments include one or more sheds to enlarge the physical or effective perimeter of the quench tower to reduce the amount of particulate matter, emissions, and steam loss during the quenching process. Some embodiments include an improved quench baffle formed of a plurality of single-turn or multi-turn chevrons adapted to prevent particulate matter from escaping the quench tower. Some embodiments include an improved quench baffle spray nozzle used to wet the baffles, suppress dust, and/or clean baffles. Some embodiments include a quench nozzle that can fire in discrete stages during the quenching process.

    Abstract translation: 本技术描述了用于改进的淬火塔的方法和系统。 一些实施方案提高了淬火塔回收从骤冷塔底部逸出的颗粒物,蒸汽和排放物的能力。 一些实施例改善了骤冷塔的吃水和吃水分布。 一些实施方案包括一个或多个棚以扩大骤冷塔的物理或有效周长以减少在淬火过程中的颗粒物质的量,排放量和蒸汽损失。 一些实施例包括由多个单匝或多匝人字形成的改进的骤冷挡板,其适于防止颗粒物质逸出骤冷塔。 一些实施例包括用于润湿挡板的改进的骤冷挡板喷嘴,抑制灰尘和/或清洁挡板。 一些实施方案包括淬火喷嘴,该淬火喷嘴可以在淬火过程中以分立的阶段燃烧。

    Methods and systems for improved quench tower design
    95.
    发明授权
    Methods and systems for improved quench tower design 有权
    改善淬火塔设计的方法和系统

    公开(公告)号:US09273250B2

    公开(公告)日:2016-03-01

    申请号:US13843166

    申请日:2013-03-15

    CPC classification number: C10B39/08 C10B39/00 C10B39/04 C10B41/00

    Abstract: The present technology describes methods and systems for an improved quench tower. Some embodiments improve the quench tower's ability to recover particulate matter, steam, and emissions that escape from the base of the quench tower. Some embodiments improve the draft and draft distribution of the quench tower. Some embodiments include one or more sheds to enlarge the physical or effective perimeter of the quench tower to reduce the amount of particulate matter, emissions, and steam loss during the quenching process. Some embodiments include an improved quench baffle formed of a plurality of single-turn or multi-turn chevrons adapted to prevent particulate matter from escaping the quench tower. Some embodiments include an improved quench baffle spray nozzle used to wet the baffles, suppress dust, and/or clean baffles. Some embodiments include a quench nozzle that can fire in discrete stages during the quenching process.

    Abstract translation: 本技术描述了用于改进的淬火塔的方法和系统。 一些实施方案提高了淬火塔回收从骤冷塔底部逸出的颗粒物,蒸汽和排放物的能力。 一些实施例改善了骤冷塔的吃水和吃水分布。 一些实施方案包括一个或多个棚以扩大骤冷塔的物理或有效周长以减少在淬火过程中的颗粒物质的量,排放量和蒸汽损失。 一些实施例包括由多个单匝或多匝人字形成的改进的骤冷挡板,其适于防止颗粒物质逸出骤冷塔。 一些实施例包括用于润湿挡板的改进的骤冷挡板喷嘴,抑制灰尘和/或清洁挡板。 一些实施方案包括淬火喷嘴,该淬火喷嘴可以在淬火过程中以分立的阶段燃烧。

    Horizontal heat recovery coke ovens having monolith crowns
    96.
    发明授权
    Horizontal heat recovery coke ovens having monolith crowns 有权
    具有整体冠的水平热回收焦炉

    公开(公告)号:US09193915B2

    公开(公告)日:2015-11-24

    申请号:US13829588

    申请日:2013-03-14

    CPC classification number: C10B29/02 C10B5/00 C10B15/02 C10B21/10 C10B29/04

    Abstract: The present technology is generally directed to horizontal heat recovery coke ovens having monolith crowns. In some embodiments, an HHR coke oven includes a monolith crown that spans the width of the oven between opposing oven sidewalls. The monolith expands upon heating and contracts upon cooling as a single structure. In further embodiments, the crown comprises a thermally volume-stable material. In various embodiments, the monolith and thermally-volume-stable features can be used in combination or alone. These designs can allow the oven to be turned down below traditionally feasible temperatures while maintaining the structural integrity of the crown.

    Abstract translation: 本技术通常涉及具有整体冠的水平热回收焦炉。 在一些实施例中,HHR焦炉包括跨越相对的炉侧壁之间的炉的宽度的整块表冠。 整体在加热时膨胀并且作为单一结构在冷却时收缩。 在另外的实施方案中,表冠包括热容积稳定的材料。 在各种实施方案中,整体和热体积稳定的特征可以组合使用或单独使用。 这些设计可以使烤箱在传统可行的温度下降低,同时保持表冠的结构完整性。

    Reduced output rate coke oven operation with gas sharing providing extended process cycle
    97.
    发明授权
    Reduced output rate coke oven operation with gas sharing providing extended process cycle 有权
    通过气体共享降低焦炉操作,提供延长的工艺循环

    公开(公告)号:US09193913B2

    公开(公告)日:2015-11-24

    申请号:US13730692

    申请日:2012-12-28

    Abstract: The present technology is generally directed to systems and methods of controlling or reducing the output rate of a coke oven through gas sharing providing an extended process cycle. In some embodiments, a method of gas sharing between coke ovens to decrease a coke production rate includes operating a plurality of coke ovens to produce coke and heated exhaust gases. In some embodiments, a first coke oven is offset in operation cycle from a second coke oven. The method further includes directing the heated exhaust gases from the first coke oven to the second coke oven while the second coke oven is mid-cycle. The heat transfer allows the second coke oven to extend its cycle while staying above a critical operating temperature. By extending the operational cycle while generally maintaining output per cycle, overall production is decreased.

    Abstract translation: 本技术通常涉及通过气体共享来控制或降低焦炉的输出速率的系统和方法,从而提供延长的处理循环。 在一些实施方案中,焦炭炉之间气体共享以降低焦炭生产速率的方法包括操作多个焦炉以产生焦炭和加热废气。 在一些实施例中,第一焦炉在与第二焦炉的操作循环中偏移。 该方法还包括将加热的废气从第一焦炉引导到第二焦炉,而第二焦炉是中循环。 传热允许第二焦炉在保持高于临界工作温度的情况下延长其循环。 通过延长操作周期,同时通常保持每个周期的产量,总体生产减少。

    SYSTEMS AND METHODS FOR CONTROLLING AIR DISTRIBUTION IN A COKE OVEN
    98.
    发明申请
    SYSTEMS AND METHODS FOR CONTROLLING AIR DISTRIBUTION IN A COKE OVEN 有权
    用于控制焦炉中空气分布的系统和方法

    公开(公告)号:US20140183023A1

    公开(公告)日:2014-07-03

    申请号:US13730735

    申请日:2012-12-28

    Abstract: The present technology is generally directed to systems and methods for controlling air distribution in a coke oven. In a particular embodiment, a coke oven air distribution system comprises an oven chamber having an oven floor configured to support a coal bed, a plurality of sidewalls extending upward from the oven floor, and an oven crown covering a top portion of the oven chamber. The air distribution system further includes an air inlet positioned above the oven floor and a distributor proximate to the inlet. The inlet is configured to introduce air into the oven chamber and the distributor is configured to at least one of preheat, redirect, or spread air within the oven chamber.

    Abstract translation: 本技术通常涉及用于控制焦炉中的空气分布的系统和方法。 在特定实施例中,焦炉空气分配系统包括具有被配置为支撑煤层的烘箱底板,从烘箱底部向上延伸的多个侧壁以及覆盖烤箱室顶部的炉冠的烤箱室。 空气分配系统还包括位于烤箱地板上方的空气入口和靠近入口的分配器。 入口构造成将空气引入烘箱室中,并且分配器构造成在烘箱室内的预热,重定向或扩散空气中的至少一个。

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