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    • 2. 发明申请
    • Method and apparatus for testing and evaluating machine components under simulated in-situ thermal operating conditions
    • 在模拟原位热操作条件下测试和评估机器部件的方法和装置
    • US20090116533A1
    • 2009-05-07
    • US11979431
    • 2007-11-02
    • Matthew J. O'ConnellChristopher E. ThompsonPaul S. Dimascio
    • Matthew J. O'ConnellChristopher E. ThompsonPaul S. Dimascio
    • G01N25/72G01N29/14G01N19/08
    • G01N25/72G01N29/14
    • A method and apparatus is described for enabling the testing and evaluation of industrial machine components and, in particular, gas turbine engine components, under simulated in-situ thermal operating conditions for effectively evaluating new component designs and repair techniques. A specimen machine component/part is placed in a test chamber and cyclically heated and cooled while being monitored to obtain information regarding the initiation and propagation of a crack within the structure of the component. Information regarding the number of heating and cooling cycles sustained by the component until crack initiation and information indicating the rate of crack propagation are acquired and compared over multiple heating-cooling cycles to evaluate components and repair techniques. In one example implementation, the component is monitored during cyclic heating-cooling for spontaneous acoustic emissions and acoustic emission waveform data is recorded and analyzed to determine crack initiation and/or propagation.
    • 描述了一种方法和装置,用于在模拟的原位热操作条件下实现工业机器部件,特别是燃气涡轮发动机部件的测试和评估,以有效地评估新的部件设计和修理技术。 将样品机组件/部件放置在测试室中并在被监视的同时循环地加热和冷却以获得关于部件结构内的裂纹的引发和传播的信息。 获得关于部件直到裂纹开始持续的加热和冷却循环的数量以及指示裂纹扩展速率的信息的信息,并在多个加热 - 冷却循环中进行比较以评估部件和修复技术。 在一个示例实施方案中,在循环加热 - 冷却期间监测组件以进行自发声发射,并且记录和分析声发射波形数据以确定裂纹发生和/或传播。
    • 7. 发明申请
    • Method and Apparatus for Harvesting Water and Latent Energy from a Gaseous Mixture
    • 从气体混合物中收获水和潜能的方法和装置
    • US20100313581A1
    • 2010-12-16
    • US12820690
    • 2010-06-22
    • Christopher E. ThompsonOwen E. Thompson
    • Christopher E. ThompsonOwen E. Thompson
    • F25D21/14
    • B01D5/0048B01D5/009F24F5/0085
    • An apparatus harvests latent energy and water by adiabatically decompressing a controlled volume of atmospheric air to lower its pressure and temperature below the saturation point of included water vapor, thus causing the water vapor to change state to nonvaporous water and release to the decompressed air thermal energy associated with the change of state. The apparatus then extracts the nonvaporous water, leaving the released thermal energy in the decompressed air. The apparatus then recompresses the decompressed air, which will have a resulting temperature, and thus a thermal energy, greater than those of the initially ingested air, and harvests the recompressed air and its increased thermal energy. The apparatus can also humidify and warm atmospheric air before it is ingested to increase appreciably the amount of harvested thermal energy.
    • 装置通过绝热减压受控体积的大气空气来降低潜能和水,以将其压力和温度降低到低于包含的水蒸气的饱和点以下,从而使水蒸汽将状态改变为非蒸发水并释放到减压空气热能 与国家的变化有关。 然后,该装置提取非蒸发水,将释放的热能留在减压空气中。 然后,该装置将再压缩减压空气,其将具有最终的温度,因此比最初摄取的空气的热能高,并且收获再压缩空气及其增加的热能。 该设备还可以在摄入之前加湿和温暖大气,以增加收获的热能的数量。