Method of controlling airflow through a water recovery device
    42.
    发明授权
    Method of controlling airflow through a water recovery device 有权
    通过水回收装置控制气流的方法

    公开(公告)号:US08882895B2

    公开(公告)日:2014-11-11

    申请号:US13660602

    申请日:2012-10-25

    申请人: Z124

    摘要: A system and method recover water from an ambient airstream. Dehumidification of the airstream is also achieved by removal of the water. A device of the system includes a chamber having a group of trays that hold respective amounts of liquid desiccant in each tray. A foam media absorbs the desiccant to increase an exposed surface of the desiccant to the airstream. Fans and valves are used to dynamically control airflow through the device. A charge cycle circulates air through the device to remove water vapor from the airstream. A subsequent extraction cycle removes water collected in the liquid desiccant by a condenser communicating with the chamber. An integral heat exchanger adds heat to the chamber during the extraction cycle. A controller is used to integrate and manage all system functions and input variables to achieve a high efficiency of operational energy use for water collection.

    摘要翻译: 系统和方法从环境气流中回收水。 气流的除湿也可以通过去除水来实现。 该系统的装置包括具有一组托盘的腔室,该托盘容纳每个托盘中的相应量的液体干燥剂。 泡沫介质吸收干燥剂以将干燥剂的暴露表面增加到气流。 风扇和阀门用于动态控制通过设备的气流。 充电循环使空气循环通过设备以从气流中除去水蒸汽。 随后的萃取循环通过与室连通的冷凝器去除在液体干燥剂中收集的水。 整个热交换器在提取循环期间将热量加热到室中。 控制器用于集成和管理所有系统功能和输入变量,以实现高效的采集能量使用。

    Water recovery system and method
    47.
    发明授权
    Water recovery system and method 有权
    水回收系统及方法

    公开(公告)号:US08834614B2

    公开(公告)日:2014-09-16

    申请号:US13660499

    申请日:2012-10-25

    申请人: Z124

    摘要: A system and method recover water from an ambient airstream. Dehumidification of the airstream is also achieved by removal of the water. A device of the system includes a chamber having a group of trays that hold respective amounts of liquid desiccant in each tray. A foam media absorbs the desiccant to increase an exposed surface of the desiccant to the airstream. Fans and valves are used to control airflow through the device. A charge cycle circulates air through the device to remove water vapor from the airstream. A subsequent extraction cycle removes water collected in the liquid desiccant by a condenser communicating with the chamber. An integral heat exchanger adds heat to the chamber during the extraction cycle. A controller is used to integrate and manage all system functions and input variables to achieve a high efficiency of operational energy use for water collection.

    摘要翻译: 系统和方法从环境气流中回收水。 气流的除湿也可以通过去除水来实现。 该系统的装置包括具有一组托盘的腔室,该托盘容纳每个托盘中的相应量的液体干燥剂。 泡沫介质吸收干燥剂以将干燥剂的暴露表面增加到气流。 风扇和阀门用于控制通过设备的气流。 充电循环使空气循环通过设备以从气流中除去水蒸汽。 随后的萃取循环通过与室连通的冷凝器去除在液体干燥剂中收集的水。 整个热交换器在提取循环期间将热量加热到室中。 控制器用于集成和管理所有系统功能和输入变量,以实现高效的采集能量使用。

    User interaction support across cross-environment applications
    48.
    发明授权
    User interaction support across cross-environment applications 有权
    跨环境应用程序的用户交互支持

    公开(公告)号:US08819705B2

    公开(公告)日:2014-08-26

    申请号:US13246669

    申请日:2011-09-27

    IPC分类号: G06F9/46

    摘要: Cross-environment rendering and user interaction support provide a seamless computing experience in a multi-operating system computing environment. The multi-operating system computing environment may include a mobile operating system associated with a first user environment and a desktop operating system associated with a second user environment running concurrently and independently on a mobile computing device. User interaction support includes handling input events initially received in the shared kernel by accepting the input events in the desktop operating system and translating, mapping, and/or passing the input events through a virtual input device to the mobile operating system such that applications of the mobile operating system receive the input events as if coming from a user interaction space of the mobile operating system. The mobile computing device may be a smartphone running the Android mobile operating system and a full desktop Linux distribution on a modified Android kernel.

    摘要翻译: 跨环境渲染和用户交互支持在多操作系统计算环境中提供无缝的计算体验。 多操作系统计算环境可以包括与第一用户环境相关联的移动操作系统和与在移动计算设备上并行且独立地运行的第二用户环境相关联的桌面操作系统。 用户交互支持包括处理最初在共享内核中接收的输入事件,接受桌面操作系统中的输入事件,并通过虚拟输入设备将输入事件翻译,映射和/或传递给移动操作系统,使得应用程序 移动操作系统接收来自移动操作系统的用户交互空间的输入事件。 移动计算设备可以是运行Android移动操作系统的智能手机和经修改的Android内核的完整桌面Linux发行版。

    Cross-environment communication using application space API
    49.
    发明授权
    Cross-environment communication using application space API 有权
    使用应用程序空间API的跨环境通信

    公开(公告)号:US08726294B2

    公开(公告)日:2014-05-13

    申请号:US13247885

    申请日:2011-09-28

    IPC分类号: G06F9/44 G06F9/24

    CPC分类号: G06F9/54 G06F9/544 G06F9/548

    摘要: A mobile computing device with a mobile operating system and desktop operating system running concurrently and independently on a shared kernel without virtualization. The mobile operating system provides a mobile user experience while the desktop operating system provides a full desktop user experience when the mobile computing device is docked to a secondary terminal environment. Applications of the desktop operating system communicate with applications and services of the mobile operating system through a cross-environment communication framework. The cross-environment communication framework may include application programming interfaces through which categories of applications can communicate across a multiple operating system computing environment through category-specific remote communication calls. The mobile computing device may be a smartphone running the Android mobile operating system and a full desktop Linux distribution on a modified Android kernel.

    摘要翻译: 具有移动操作系统和桌面操作系统的移动计算设备,并行且独立地在共享内核上运行,而无需虚拟化。 当移动计算设备对接到辅助终端环境时,移动操作系统提供移动用户体验,而桌面操作系统提供完整的桌面用户体验。 桌面操作系统的应用通过跨环境通信框架与移动操作系统的应用和服务进行通信。 跨环境通信框架可以包括应用程序编程接口,通过类别的应用程序可以通过类别特定的远程通信呼叫跨多个操作系统计算环境进行通信。 移动计算设备可以是运行Android移动操作系统的智能手机和经修改的Android内核的完整桌面Linux发行版。