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    • 2. 发明授权
    • Simulating cavitation damage
    • 模拟气穴损伤
    • US07797142B2
    • 2010-09-14
    • US11642745
    • 2006-12-21
    • John B. SalomonAndrew N. McGilvrayJoseph P. Maruszewski
    • John B. SalomonAndrew N. McGilvrayJoseph P. Maruszewski
    • G06F9/455
    • G06F17/5018Y10T137/86059
    • Methods and systems provide a simulation of cavitation damage. In one implementation, a computer-implemented method simulates a potential for cavitation damage. According to the method, data defining a modeled component is imported to a flow solver tool. The flow solver tool simulates a liquid that flows through the modeled component. Voids created by the flow of the liquid cause a plurality of vapor implosion pressure events. The method further includes displaying a histogram showing a portion of the modeled component. On the histogram, locations of the plurality of vapor implosion pressure events are visually distinguishable on a surface of the portion of the modeled component.
    • 方法和系统提供了空化损伤的模拟。 在一个实现中,计算机实现的方法模拟了空化损伤的可能性。 根据该方法,定义建模组件的数据被导入流解算器工具。 流量求解器工具模拟流过建模元件的液体。 由液体流产生的空隙导致多个蒸汽内爆压力事件。 该方法还包括显示示出建模部件的一部分的直方图。 在直方图上,多个蒸汽内爆压力事件的位置在模拟部件的该部分的表面上在视觉上是可区分的。
    • 3. 发明申请
    • LUBRICATION SYSTEM
    • 润滑系统
    • US20110048857A1
    • 2011-03-03
    • US12551621
    • 2009-09-01
    • Andrew N. McGilvrayPinghui WangDongyun Hua
    • Andrew N. McGilvrayPinghui WangDongyun Hua
    • F16N39/00F16H57/04
    • F01M9/02F01M11/03F01M11/10F01M2011/1486
    • In one aspect a method for lubricating a tribosystem is provided that may include providing a new tribosystem including at least two solid surfaces that interact during operation of the tribosystem and providing lubrication oil for lubricating the tribosystem. The method may further include operating the tribosystem while lubricating the tribosystem with the lubrication oil during an initial period and supplying anti-wear additives to the lubrication oil at the end of the initial period. In another aspect a lubrication assembly for containing lubrication oil may be provided. The lubrication assembly may include an anti-wear additive storage and a releaser that is configured for releasing anti-wear additive from the anti-wear additive storage into the lubrication oil after an initial period of operation.
    • 在一个方面,提供了一种用于润滑系统的方法,其可以包括提供新的系统系统,其包括至少两个固体表面,所述至少两个固体表面在所述系统的操作期间相互作用并提供用于润滑所述系统的润滑油。 该方法可以进一步包括在初始阶段同时用润滑油润滑三维体系同时操作该系统,并且在初始阶段结束时向润滑油供应耐磨添加剂。 在另一方面,可以提供用于容纳润滑油的润滑组件。 润滑组件可以包括抗磨添加剂储存器和释放器,其被配置用于在初始操作之后将抗磨添加剂从耐磨添加剂储存器释放到润滑油中。
    • 4. 发明授权
    • Thermoelectric system for an engine
    • 发动机热电系统
    • US07739994B2
    • 2010-06-22
    • US11803402
    • 2007-05-14
    • Andrew N. McgilvrayJohn T. VachonWilliam E. Moser
    • Andrew N. McgilvrayJohn T. VachonWilliam E. Moser
    • F02F1/42
    • F02B63/04F01N5/025H01L35/30Y02T10/16Y02T10/166
    • An internal combustion engine that includes a block, a cylinder head having an intake valve port and exhaust valve port formed therein, a piston, and a combustion chamber defined by the block, the piston, and the head. At least one thermoelectric device is positioned within either or both the intake valve port and the exhaust valve port. Each of the valves is configured to move within a respective intake and exhaust valve port thereby causing said valves to engage the thermoelectric devices resulting in heat transfer from the valves to the thermoelectric devices. The intake valve port and exhaust valve port are configured to fluidly direct intake air and exhaust gas, respectively, into the combustion chamber and the thermoelectric device is positioned within the intake valve port, and exhaust valve port, such that the thermoelectric device is in contact with the intake air and exhaust gas.
    • 一种内燃机,其包括块体,具有形成在其中的进气门口和排气阀口的气缸盖,活塞和由所述块,所述活塞和所述头部限定的燃烧室。 至少一个热电装置位于进气门口和排气阀口内的一个或两个内。 每个阀构造成在相应的进气和排气阀口内移动,从而使得所述阀与热电装置接合,导致从阀到热电装置的热传递。 进气门口和排气门口分别将进气和废气流体地引导到燃烧室中,并且热电装置位于进气阀口和排气阀口内,使得热电装置接触 与进气和废气。