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Performance of an in-line syntactic-foam device for control of water hammer and fluid-borne noise

机译:用于控制水锤和流体传播噪声的型号句法 - 泡沫装置的性能

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A flow-through in-line device has been developed with the potential to control both the pressure transients characteristic of water hammer, as well as suppressing fluid-borne noise. Water hammer can be caused by fast acting valves, and is a common problem in plumbing such that water hammer arrestors, devices designed to limit the peak overpressure, are required by some building codes to be installed proximate to fast-acting valves. Commercially available water hammer arrestors are commonly side-branch devices, and while effective for controlling water hammer, are not effective against fluid-borne noise. A prototype flow-through, in-line syntactic foam water device has been designed and tested for both its water hammer control capabilities as well as its frequency-dependent transmission loss performance. The flow-through design demonstrates adequate performance for service as a water hammer arrestor, as well as significant frequency-dependent transmission loss suitable for the control of fluid-borne noise.
机译:已经开发了一种流通式在线装置,其具有控制水锤特性的压力瞬变,以及抑制流体传播的噪声。水锤可以是由快速作用阀引起的,并且是管道中的常见问题,使得水锤避雷器,设计用于限制峰值过度压力的装置,由一些建筑码安装在快速作用阀附近。市售的水锤止血剂是通常侧分支器件,而在控制水锤有效的同时对流体传播的噪声无效。原型流通,在线句法泡沫水装置已经设计和测试了其水锤控制能力,以及其频率依赖传输损耗性能。流通式设计表明,作为水锤避雷器的服务的充分性能,以及适合控制流体传播噪声的显着频率依赖传输损失。

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