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    • 2. 发明申请
    • SYSTEMS, METHODS AND APPARATUS FOR TRANSMISSION LINE RE-CONDUCTORING
    • 用于变速箱线路导通的系统,方法和装置
    • WO2008085164A1
    • 2008-07-17
    • PCT/US2007/000607
    • 2007-01-10
    • BARTHOLD, Lionel, O.
    • BARTHOLD, Lionel, O.
    • H02G1/04H02G7/00
    • H02G1/04H02G7/02
    • A method and associated equipment for replacing existing overhead transmission line conductors with new ones while the transmission line remains in service and carrying power. The invention uses the old conductor to pull the new conductor through a series of sheaves installed at the bottom of each tower insulator. Conventional tension-stringing principles are used to assure that both the old and new conductors maintain a safe distance from ground. To achieve this, both the pulling and tensioning (braking) equipment, as well as supply and take-up reels or drums may be elevated to power line voltage and the current is transferred between new conductor and old, while in transit to the line, by means of a brush system and a conducting wheel which may or may not be integral with pulling and tensioning equipment.
    • 一种方法和相关设备,用于在传输线保持在使用状态并承载电力的情况下用新的替代现有架空传输线路导线。 本发明使用旧导体通过安装在每个塔式绝缘子底部的一系列滑轮拉动新导体。 常规的拉紧原理用于确保旧导体和新导体保持与地面的安全距离。 为了实现这一点,牵引和张紧(制动)设备以及供应和卷取卷轴或滚筒都可以升高到电力线电压,并且电流在新导体和旧导体之间传递,同时在传输到线路中, 通过刷系统和导轮,其可以牵拉和拉紧设备可以是或可以不一体的。
    • 8. 发明申请
    • APPARATUS AND METHOD FOR ENHANCING THE RECONDUCTORING OF OVERHEAD ELECTRIC POWER LINES
    • 用于增强超导电力线路重新接合的装置和方法
    • WO2008124579A1
    • 2008-10-16
    • PCT/US2008/059393
    • 2008-04-04
    • BARTHOLD, Lionel, O.
    • BARTHOLD, Lionel, O.
    • H02G7/20
    • H02G1/04Y10T29/49194
    • Equipment and associated methods for replacing existing overhead transmission line conductors (4) with new ones (8) while the transmission line (4) remains in service and carrying power. The old conductor (4) is used to pull the new conductor (8) through a series of sheaves (9, 14) installed at the bottom of the insulator (10) at each tower (201, 220). Conventional tension- stringing equipment (60, 70) is used but it is elevated to line potential that is achieved by use of an insulating platform (25) or insulating jacks. Current transfer between stationary and moving conductors is achieved by a current transfer device (30) that may consist of transmission line contacting wheels (32) and liquid metal contactors (35). Sag control in various conductor spans is enhanced by a stringing block (59) with controllable friction. Equipment (80) is also introduced which will prevent release of the conductor (4, 8) by the pulling device (70) should it break while engaged by that device (70).
    • 用于在传输线(4)保持服务并承载电力的情况下用新的(8)替换现有架空传输线路导体(4)的设备和相关方法。 旧导体(4)用于通过在每个塔(201,220)处安装在绝缘体(10)的底部的一系列滑轮(9,14)来拉动新导体(8)。 使用传统的张力设备(60,70),但是它被提升到通过使用绝缘平台(25)或绝缘插座实现的线电位。 通过可由传输线接触轮(32)和液态金属接触器(35)组成的电流传输装置(30)实现固定和移动导体之间的电流传输。 通过具有可控制的摩擦力的弦线块(59)来增强各种导体跨度中的下垂控制。 还引入了设备(80),如果在与该设备(70)接合时断开的情况下,其将阻止拉动装置(70)释放导体(4,8)。
    • 9. 发明申请
    • A HYBRID AC / DC SYSTEM FOR ELECTRIC POWER
    • 一种用于电力的混合AC / DC系统
    • WO2005119393A1
    • 2005-12-15
    • PCT/US2004/016198
    • 2004-05-21
    • BARTHOLD, Lionel, O.
    • BARTHOLD, Lionel, O.
    • G05F1/70
    • H02J3/36Y02E60/60
    • A systematic, time-varying current is applied to any number of transmission conductors while the voltage on each remains at an essentially constant level but periodically reversed in polarity. Variations in current, from high to low and from positive to negative, are timed to coordinate with the thermal time constant of the conductor or cable. Current is interrupted on each conductor for a short period around a zero value to allow reversal of voltage. This invention allows full thermal utilization of each conductor in the system while gaining the advantage afforded by sustained DC voltage.
    • 系统的时变电流被施加到任何数量的发射导体,而每个发射导体的电压保持在基本恒定的电平,但在极性上周期性地反转。 电流的变化,从高到低,从正到负,定时与导体或电缆的热时间常数进行协调。 每个导体上的电流在零值附近的短时间内中断,以允许电压反转。 本发明允许系统中每个导体的全热利用,同时获得由持续的DC电压提供的优点。