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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Telemetry System Integrated in a Small Gas Turbine Engine
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Telemetry System Integrated in a Small Gas Turbine Engine

机译:集成在小型燃气轮机发动机中的遥测系统

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For the purpose of assessing combustion effects in a small gas turbine engine, there was a requirement to evaluate the rotating temperature and dynamic characteristics of the power turbine rotor module. This assessment required measurements be taken within the engine, during operation up to maximum power, using rotor mounted thermocouples and strain gauges. The acquisition of this data necessitated the use of a telemetry system that could be integrated into the existing engine architecture without affecting performance. As a result of space constraints, housing of the telemetry module was limited to placement in a hot section. To tolerate the high temperature environment, a cooling system was developed as part of the integration effort to maintain telemetry module temperatures within the limit allowed by the electronics. Finite element thermal analysis was used to guide the design of the cooling system. This was to ensure that sufficient airflow was introduced and appropriately distributed to cool the telemetry cavity, and hence electronics, without affecting the performance of the engine. Presented herein is a discussion of the telemetry system, instrumentation design philosophy, cooling system design and verification, and sample of the results acquired through successful execution of the full engine test program.
机译:为了评估小型燃气涡轮发动机中的燃烧效果,需要评估动力涡轮转子模块的旋转温度和动态特性。这项评估要求使用安装在转子上的热电偶和应变仪在发动机运行期间以最大功率进行测量。要获取此数据,必须使用遥测系统,该系统可以集成到现有的引擎体系结构中而不影响性能。由于空间限制,遥测模块的外壳仅限于放置在高温区域。为了承受高温环境,作为集成工作的一部分,开发了冷却系统,以将遥测模块的温度保持在电子设备允许的范围内。有限元热分析被用来指导冷却系统的设计。这是为了确保引入足够的气流并将其适当分配以冷却遥测腔,从而冷却电子设备,而不影响发动机的性能。本文介绍了遥测系统,仪表设计理念,冷却系统设计和验证,以及通过成功执行完整的发动机测试程序而获得的结果示例的讨论。

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