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    • 6. 发明申请
    • Riffle distributor assembly for a fossil fuel fired combustion arrangement
    • 用于化石燃料燃烧燃烧装置的Riffle分配器组件
    • US20050160953A1
    • 2005-07-28
    • US10762624
    • 2004-01-22
    • Jeffrey Mann
    • Jeffrey Mann
    • F23K3/02F23K1/00
    • F23K3/02F23K2203/105
    • A riffle distributor assembly for influencing the travel properties of a material feed stream 42 moving between a pulverizer 14 and a furnace 12 is part of a feed path 36 having one duct 44A having a branch entry 66A and another branch duct 44C having a branch entry 66C both downstream of upstream passage peripheries UPZ defined between adjacent intake vanes 114 through which the feed stream of the material 42 travels in two segregated portions. A motor drive assembly 58 moves the intake vanes 114 relative to the incoming flow reference axis IFA, whereupon intake areas defined between adjacent intake vanes 114 moves relative to the incoming flow reference axis IFA such that the travel properties of the one portion of material in the one branch duct 44A are different than its travel properties before the movement of intake areas defined between adjacent intake vanes 114.
    • 用于影响在粉碎机14和炉12之间移动的原料进料流42的行进特性的分流器组件是进料通道36的一部分,其具有一个具有分支入口66A的管道44A,另一个分支管道44C具有 上游通道周边的下游侧的分支入口66C限定在相邻的进气叶片114之间,材料42的进料流通过该进口叶片在两个分离的部分中行进。 马达驱动组件58相对于进入的流动参考轴线IFA移动进气叶片114,于是相邻进气叶片114之间限定的进气区域相对于进入的流动参考轴线IFA移动,使得材料的一部分的行进特性 在相邻的进气叶片114之间限定的进气区域的运动之前,一个分支管道44A与其行进特性不同。
    • 7. 发明申请
    • Manually Positionable Solar Tracking System
    • 手动定位太阳跟踪系统
    • US20110017259A1
    • 2011-01-27
    • US12772347
    • 2010-05-03
    • Jeffrey Mann
    • Jeffrey Mann
    • F16M11/10H01L31/042F16M11/26
    • H02S20/00F24S25/12F24S30/452H02S20/32Y02E10/47Y02E10/50
    • Presented herein is a method for manually tracking solar panels using only three orientations (morning, noontime, and afternoon). In this method, panels are manually reoriented at two times during the day to achieve a total of three orientations (more orientations can be used, but have been found to be unnecessary for most applications). A manual solar array tracking system encompassing this method would include a mechanical implementation such that when a user reorients a panel to one of the three positions, it snaps, or is similarly easily guided and latched into position. Such a system would also have a mechanical setting that would be changed several times a year, most likely on a monthly schedule. This setting would adjust the daily panel orientation settings to account for the changing sun position at that time of year.
    • 这里提出的是仅使用三个方向(早晨,中午和下午)手动跟踪太阳能电池板的方法。 在这种方法中,面板在白天被手动重新定向两次以达到总共三个取向(可以使用更多的取向,但是已被发现对于大多数应用来说是不必要的)。 包括该方法的手动太阳能阵列跟踪系统将包括机械实现,使得当用户将面板重定向到三个位置中的一个位置时,其卡扣或类似地容易地被引导并锁定到位。 这样的系统也将具有将每年改变多次的机械设置,最有可能按月计划。 此设置将调整日常面板方向设置,以解决年份当前日期位置的变化。