OPPOSED PISTON INTERNAL COMBUSTION ENGINE WITH INVISCID LAYER SEALING
    3.
    发明申请
    OPPOSED PISTON INTERNAL COMBUSTION ENGINE WITH INVISCID LAYER SEALING 有权
    具有隐蔽层密封的对比活塞式内燃机

    公开(公告)号:US20140318518A1

    公开(公告)日:2014-10-30

    申请号:US14215491

    申请日:2014-03-17

    发明人: William Jeswine

    IPC分类号: F02B75/02

    摘要: An opposed-piston engine that forms an inviscid layer between pistons and the respective cylinder walls. In an aspect, the opposed-piston engine utilizes a Scotch yoke assembly that includes rigidly connected opposed combustion pistons. In an aspect, the Scotch yoke assembly is configured to transfer power from the combustion pistons to a crankshaft assembly. In an aspect, the crankshaft assembly can be configured to have dual flywheels that are internal to the engine, and can be configured to assist with an exhaust system, a detonation system, and/or a lubrication system.

    摘要翻译: 一种相对活塞式发动机,在活塞和相应气缸壁之间形成一个不粘层。 在一方面,相对活塞发动机使用包括刚性连接的相对的燃烧活塞的苏格兰轭组件。 在一方面,苏格兰轭架组件被配置成将动力从燃烧活塞传递到曲轴组件。 在一个方面,曲轴组件可被构造成具有位于发动机内部的双飞轮,并且可被构造成辅助排气系统,爆炸系统和/或润滑系统。

    SYSTEM AND METHOD FOR CONSTITUENT RENDERING OF BIOMASS AND OTHER CARBON-BASED MATERIALS
    4.
    发明申请
    SYSTEM AND METHOD FOR CONSTITUENT RENDERING OF BIOMASS AND OTHER CARBON-BASED MATERIALS 有权
    用于生物量和其他碳质材料的组成性渲染的系统和方法

    公开(公告)号:US20140311023A1

    公开(公告)日:2014-10-23

    申请号:US14244363

    申请日:2014-04-03

    发明人: William Jeswine

    IPC分类号: C10L5/40

    摘要: A system and method for a constituent rendering of biomass and other carbon-based materials is provided. The system can be configured for receiving a feedstock material to be rendered into its constituent components, grinding the feedstock to a desired size and/or consistency, and placing the feedstock in contact with a hot mix heat transfer medium within a pressure chamber. Pyrolysis of the feedstock can lead to a breakdown of the feedstock into constituent components that can then be collected.

    摘要翻译: 提供了一种用于生物质和其他碳基材料成分的制备和方法。 该系统可被构造成用于接收待制成其组成部件的原料,将原料研磨成所需尺寸和/或稠度,并将原料放置在压力室内的热混合传热介质中。 原料的热解可导致原料分解成组分成分,然后可以收集。