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High Temperature Evaluation of an Active Clearance Control System Concept

机译:主动间隙控制系统概念的高温评估

摘要

A mechanically actuated blade tip clearance control concept was evaluated in a nonrotating test rig to quantify secondary seal leakage at elevated temperatures. These tests were conducted to further investigate the feasibility of actively controlling the clearance between the rotor blade tips and the surrounding shroud seal in the high pressure turbine (HPT) section of a turbine engine. The test environment simulates the state of the back side of the HPT shroud seal with pressure differentials as high as 120 psig and temperatures up to 1000 F. As expected, static secondary seal leakage decreased with increasing temperature. At 1000 F, the test rig's calculated effective clearance (at 120 psig test pressure) was 0.0003 in., well within the industry specified effective clearance goal.
机译:在非旋转测试设备中评估了机械促动的叶片尖端间隙控制概念,以量化高温下的二次密封泄漏。进行这些测试是为了进一步研究主动控制涡轮发动机的高压涡轮(HPT)部分中的转子叶片尖端与周围的护罩密封之间的间隙的可行性。该测试环境以高达120 psig的压差和高达1000 F的温度模拟了HPT导流罩密封件背面的状态。正如预期的那样,随着温度的升高,静态二级密封件的泄漏量减少。在1000 F下,试验装置的计算有效间隙(在120 psig测试压力下)为0.0003英寸,完全在行业指定的有效间隙目标之内。

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