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    • 1. 发明申请
    • VESSEL AND PROCESS PERTAINING TO AN IMPERMEABLE IMPINGEMENT PLATE
    • 容器和过程的IMPERMEABLE IMPING板
    • WO2012047542A3
    • 2012-06-28
    • PCT/US2011052930
    • 2011-09-23
    • UOP LLCDOONG SHAINIDDIR HADJIRA
    • DOONG SHAINIDDIR HADJIRA
    • F17C1/00F17C13/00F17C13/06
    • B01D53/0438B01D2253/104B01D2253/108B01D2256/24Y10T137/85938Y10T137/86348
    • One exemplary embodiment can be a vessel. The vessel can include a body, an inlet, and an impermeable impingement plate. The body may include a substantially cylindrical structure orientated substantially horizontally, and first and second heads coupled at opposing ends of the substantially cylindrical structure. Generally, the body forms an interior space, and a lower portion of the body forms a trough having a length and a width. The inlet can communicate with the interior space of the vessel. Typically, the impermeable impingement plate has an impingement surface. The impermeable impingement plate may have a first side and a second side extending substantially the length of the trough. The first and second sides may be substantially parallel and spaced apart across at least a portion of the width of the trough.
    • 一个示例性实施例可以是船只。 该容器可以包括主体,入口和不可渗透的冲击板。 主体可以包括基本上水平取向的基本上圆柱形的结构,以及联接在基本上圆柱形结构的相对端部处的第一头和第二头。 通常,主体形成内部空间,并且主体的下部形成具有长度和宽度的槽。 入口可以与容器的内部空间连通。 典型地,不可渗透的冲击板具有冲击表面。 不可渗透的冲击板可具有基本上延伸槽的长度的第一侧和第二侧。 第一和第二侧面可以基本上平行并横跨槽的至少一部分宽度间隔开。
    • 2. 发明申请
    • VESSEL AND PROCESS PERTAINING TO AN IMPERMEABLE IMPINGEMENT PLATE
    • 对不正确的印版进行的船舶和流程
    • WO2012047542A2
    • 2012-04-12
    • PCT/US2011/052930
    • 2011-09-23
    • UOP LLCDOONG, ShainIDDIR, Hadjira
    • DOONG, ShainIDDIR, Hadjira
    • F17C1/00F17C13/06F17C13/00
    • B01D53/0438B01D2253/104B01D2253/108B01D2256/24Y10T137/85938Y10T137/86348
    • One exemplary embodiment can be a vessel. The vessel can include a body, an inlet, and an impermeable impingement plate. The body may include a substantially cylindrical structure orientated substantially horizontally, and first and second heads coupled at opposing ends of the substantially cylindrical structure. Generally, the body forms an interior space, and a lower portion of the body forms a trough having a length and a width. The inlet can communicate with the interior space of the vessel. Typically, the impermeable impingement plate has an impingement surface. The impermeable impingement plate may have a first side and a second side extending substantially the length of the trough. The first and second sides may be substantially parallel and spaced apart across at least a portion of the width of the trough.
    • 一个示例性实施例可以是容器。 容器可以包括主体,入口和不可渗透的冲击板。 主体可以包括基本上水平地定向的基本圆柱形结构,以及在大致圆柱形结构的相对端处联接的第一和第二头部。 通常,主体形成内部空间,并且主体的下部形成具有长度和宽度的槽。 入口可以与容器的内部空间连通。 通常,不可渗透的冲击板具有冲击表面。 不透水冲击板可以具有基本上延伸槽的长度的第一侧和第二侧。 第一和第二侧可以在槽的宽度的至少一部分上基本上平行并间隔开。
    • 3. 发明申请
    • FLOW DISTRIBUTION APPARATUS
    • 流量分配设备
    • WO2010002383A1
    • 2010-01-07
    • PCT/US2008/068754
    • 2008-06-30
    • UOP LLCKOVES, William, J.BOREK, Jeffrey, M.IDDIR, Hadjira
    • KOVES, William, J.BOREK, Jeffrey, M.IDDIR, Hadjira
    • B01D15/14B01D15/18
    • B01D15/14B01D15/1842
    • A flow distribution apparatus located above the top-most bed of solid particles in an adsorbent vessel of a simulated moving bed adsorptive separation process having a vertical axis having a lower boundary substantially perpendicular to the vertical vessel axis. A top grid plate defines a lower volume between the top grid plate and a lower fluid distributing boundary. A passageway having walls through the top grid plate provides fluid communication between (a) an inlet pipe having a diameter and a central axis parallel to the vertical vessel axis and (b) the lower volume. A perforate distribution plate provides fluid communication between the inlet pipe and the lower volume, has an imperforate area to reduce vertical momentum of the fluid, and has perforations sized and spaced apart to achieve a pressure drop across the distribution plate sufficient to adequately diffuse the incoming flow from the inlet pipe.
    • 一种位于模拟移动床吸附分离方法的吸附剂容器中最上层的固体颗粒上方的流量分配装置,其具有垂直轴线,该垂直轴线具有基本垂直于垂直容器轴线的下边界。 顶部格栅板限定了顶部格栅板和下部流体分配边界之间的较小的体积。 具有穿过顶部格栅板的壁的通道提供(a)具有直径和垂直容器轴线平行的中心轴线的入口管和(b)下部容积之间的流体连通。 穿孔分布板提供入口管和下部体积之间的流体连通,具有无孔面积以减少流体的垂直动量,并且具有尺寸和间隔开的穿孔,以实现分布板上的压降足以充分扩散进入 从入口管流出。