Process intensified microfluidic devices
    1.
    发明授权
    Process intensified microfluidic devices 有权
    加工强化的微流体装置

    公开(公告)号:US07939033B2

    公开(公告)日:2011-05-10

    申请号:US12171403

    申请日:2008-07-11

    摘要: A microfluidic device [10] includes at least one reactant passage [26] and one or more thermal control passages defined therein, the one or more thermal control passages being positioned and arranged within two volumes [12,14] each bordered by a wall [18,20], the walls being generally planar and parallel to one another, the reactant passage positioned between said generally planar walls and defined by said generally planar walls and walls [28] extending between said generally planar walls, wherein the reactant passage comprises multiple successive chambers [34], each such chamber including a split of the reactant passage into at least two sub-passages [36], and a joining [38] of the split passages, and a change of passage direction, of at least one of the sub-passages, of at least 90 degrees.

    摘要翻译: 微流体装置[10]包括至少一个反应物通道和限定在其中的一个或多个热控制通道,所述一个或多个热控制通道被定位和布置在两个由壁分界的两个体积[12,14]内; 18,20],所述壁通常是平面的并且彼此平行,所述反应物通道位于所述大致平坦的壁之间并且由所述大致平坦的壁和在所述大致平坦的壁之间延伸的壁[28]限定,其中所述反应物通道包括多个 连续的室[34],每个这样的室包括将反应物通道分成至少两个子通道[36],并且分离通道的连接(38)和通道方向的变化,至少一个 子通道,至少90度。

    HEAT EXCHANGERS FOR MICROSTRUCTURES
    2.
    发明申请
    HEAT EXCHANGERS FOR MICROSTRUCTURES 有权
    热交换器用于微结构

    公开(公告)号:US20100126699A1

    公开(公告)日:2010-05-27

    申请号:US12623701

    申请日:2009-11-23

    IPC分类号: F28D15/00

    摘要: A multiple-layered microfluidic device comprises at least a first fluid path and at least a second fluid path, wherein the first fluid path comprises a layer or portion of a layer of the microfluidic device. The first path has multiple rows of serpentine wall segments positioned there along. The wall segments extend in a direction along the first path. The rows extend along a direction cross-ways to the first path. Adjacent ones of wall segments within a row are arranged such that concave portions face concave portions of adjacent ones of segments, while convex portions face convex portions of adjacent ones of segments.

    摘要翻译: 多层微流体装置包括至少第一流体路径和至少第二流体路径,其中第一流体路径包括微流体装置的层或层的一部分。 第一条路径具有多排位于那里的蛇形壁段。 壁段沿着沿着第一路径的方向延伸。 行沿着与第一路径交叉的方向延伸。 排列中的相邻的壁段被布置成使得凹部面向相邻的段的凹部,而凸部面对相邻的段的凸部。

    MULTIPLE FLOW PATH MICROREACTOR DESIGN
    5.
    发明申请
    MULTIPLE FLOW PATH MICROREACTOR DESIGN 有权
    多流程路径微处理器设计

    公开(公告)号:US20100078086A1

    公开(公告)日:2010-04-01

    申请号:US12568318

    申请日:2009-09-28

    IPC分类号: G01N35/00

    摘要: A microfluidic device comprises at least one reactant passage defined by walls and comprising at least one parallel multiple flow path configuration comprising a group of elementary design patterns being able to provide mixing and/or residence time which are arranged in series with fluid communication so as to constitute flow paths, and in parallel so as to constitute a multiple flow path elementary design pattern, wherein the parallel multiple flow path configuration comprises at least two communicating zones between elementary design patterns of two adjacent parallel flow paths, said communicating zones being in the same plane as that defined by said elementary design patterns between which said communicating zone is placed and allowing passage of fluid in order to minimize mass flow rate difference between adjacent parallel flow paths which have the same flow direction.

    摘要翻译: 微流体装置包括由壁限定的至少一个反应物通道,并且包括至少一个平行的多个流动路径构造,其包括一组基本设计模式,其能够提供与流体连通串联布置的混合和/或停留时间,以便 构成流动路径并且并联,以便构成多流路基本设计模式,其中所述并行多流路构造包括在两个相邻的平行流动路径的基本设计模式之间的至少两个连通区域,所述连通区域是相同的 平面,如所述基本设计图案所限定的,所述基本设计图案位于所述连通区域之间,并且允许流体通过,以使具有相同流动方向的相邻平行流动路径之间的质量流量差最小化。

    Multiple flow path microreactor design
    7.
    发明授权
    Multiple flow path microreactor design 有权
    多流路微反应器设计

    公开(公告)号:US08534909B2

    公开(公告)日:2013-09-17

    申请号:US12568318

    申请日:2009-09-28

    IPC分类号: B01F5/06 B01J19/00

    摘要: A microfluidic device comprises at least one reactant passage defined by walls and comprising at least one parallel multiple flow path configuration comprising a group of elementary design patterns being able to provide mixing and/or residence time which are arranged in series with fluid communication so as to constitute flow paths, and in parallel so as to constitute a multiple flow path elementary design pattern, wherein the parallel multiple flow path configuration comprises at least two communicating zones between elementary design patterns of two adjacent parallel flow paths, said communicating zones being in the same plane as that defined by said elementary design patterns between which said communicating zone is placed and allowing passage of fluid in order to minimize mass flow rate difference between adjacent parallel flow paths which have the same flow direction.

    摘要翻译: 微流体装置包括由壁限定的至少一个反应物通道,并且包括至少一个平行的多个流动路径构造,其包括一组基本设计模式,其能够提供与流体连通串联布置的混合和/或停留时间,以便 构成流动路径并且并联,以便构成多流路基本设计模式,其中所述并行多流路构造包括在两个相邻的平行流动路径的基本设计模式之间的至少两个连通区域,所述连通区域是相同的 平面,如所述基本设计图案所限定的,所述基本设计图案位于所述连通区域之间,并且允许流体通过,以使具有相同流动方向的相邻平行流动路径之间的质量流量差最小化。

    Process Intensified Microfluidic Devices
    8.
    发明申请
    Process Intensified Microfluidic Devices 有权
    过程强化微流控器件

    公开(公告)号:US20090028763A1

    公开(公告)日:2009-01-29

    申请号:US12171403

    申请日:2008-07-11

    IPC分类号: B01J19/00

    摘要: A microfluidic device [10] includes at least one reactant passage [26] and one or more thermal control passages defined therein, the one or more thermal control passages being positioned and arranged within two volumes [12,14] each bordered by a wall [18,20], the walls being generally planar and parallel to one another, the reactant passage positioned between said generally planar walls and defined by said generally planar walls and walls [28] extending between said generally planar walls, wherein the reactant passage comprises multiple successive chambers [34], each such chamber including a split of the reactant passage into at least two sub-passages [36], and a joining [38] of the split passages, and a change of passage direction, of at least one of the sub-passages, of at least 90 degrees.

    摘要翻译: 微流体装置[10]包括至少一个反应物通道和限定在其中的一个或多个热控制通道,所述一个或多个热控制通道被定位和布置在两个由壁分界的两个体积[12,14]内; 18,20],所述壁通常是平面的并且彼此平行,所述反应物通道位于所述大致平坦的壁之间并且由所述大致平坦的壁和在所述大致平坦的壁之间延伸的壁[28]限定,其中所述反应物通道包括多个 连续的室[34],每个这样的室包括将反应物通道分成至少两个子通道[36],并且分离通道的连接(38)和通道方向的变化,至少一个 子通道,至少90度。

    Heat exchangers for microstructures
    9.
    发明授权
    Heat exchangers for microstructures 有权
    微结构热交换器

    公开(公告)号:US08485247B2

    公开(公告)日:2013-07-16

    申请号:US12623701

    申请日:2009-11-23

    IPC分类号: F28F3/04

    摘要: A multiple-layered microfluidic device includes at least a first fluid path and at least a second fluid path, wherein the first fluid path includes a layer or portion of a layer of the microfluidic device. The first path has multiple rows of serpentine wall segments positioned there along. The wall segments extend in a direction along the first path. The rows extend along a direction cross-ways to the first path. Adjacent ones of wall segments within a row are arranged such that concave portions face concave portions of adjacent ones of segments, while convex portions face convex portions of adjacent ones of segments.

    摘要翻译: 多层微流体装置包括至少第一流体路径和至少第二流体路径,其中第一流体路径包括微流体装置的层或层的一部分。 第一条路径具有多排位于那里的蛇形壁段。 壁段沿着沿着第一路径的方向延伸。 行沿着与第一路径交叉的方向延伸。 排列中的相邻的壁段被布置成使得凹部面向相邻的段的凹部,而凸部面对相邻的段的凸部。