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Design and Control of Hardware-in-the-Loop Simulations for Testing Non-Return-Valve Vibrations in Air Systems

机译:用于测试空气系统中止回阀振动的在环仿真的设计和控制

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Non-return-valves are commonly used across the range of industries for prevention of reverse flow conditions where they often exhibit premature failure due to self-sustained oscillations that are a result of fluid structure interactions. This paper details the design of a proof of concept hardware-in-the-loop (HWIL) simulator and its controller for simulating fluid-structure interactions of a non-return-valve with an arbitrary air system geometry. A numerical model of an airbitrary air system is coupled to the physical non-return-valve via a purpose built fast acting control valve and associated instrumentation to simulate both stable and unstable vibrations. The vibrations of the non-return-valve in the HWIL simulator are compared against its vibrations in the real air system and are found to have an excellent agreement for a range of massflows and air system volumes. The simulator described in this paper can be used for simulating other types of passive flow control devices with arbitrary air systems thereby offering potential for significantly reducing the cost of full system tests.
机译:止回阀通常用于各种行业,以防止出现逆流情况,在这种情况下,由于流体结构相互作用导致的自持振荡,它们经常会出现过早失效。本文详细介绍了概念验证的硬件在环(HWIL)仿真器及其控制器的设计,该仿真器可用于仿真具有任意空气系统几何形状的止回阀的流体-结构相互作用。通过专门构建的快速作用控制阀和相关的仪表,可将空气任意空气系统的数值模型与物理止回阀耦合,以模拟稳定和不稳定的振动。将HWIL仿真器中止回阀的振动与实际空气系统中的止回阀的振动进行了比较,发现该止回阀在质量流量和空气系统体积方面具有极好的一致性。本文中描述的模拟器可用于模拟具有任意空气系统的其他类型的被动式流量控制设备,从而具有显着降低整个系统测试成本的潜力。

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