GAS

D. Janakiram, S. Balaji, Akshay Dhumal, Nishank Garg, Ganesh Kulkarni
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引用次数: 1

Abstract

METERING COOLING FLOWS IN THE WATER-COOLED TURBINE Metering of coolant flow to bucket cooling passages in the water-cooled gas turbine rotor was experimentally evaluated. Through water flow per cooling passage is approximately one gallon per hour and rotor "g" field is approximately 20,000 g's, the water-cooled gas turbine depends on uniform water distribution. Measurements in- dicative of water distribution accuracy to eight buckets and representative cooling passages in each bucket were made in separate tests. Rotor water pressure measurements were made at both metering elements and compared to static differential pressure data. This work is part of the technology development and component verification testing of an advanced water-cooled gas turbine, firing at 2600 ° F (1427 ° C) being performed by General Electric under Phase II of the U.S. Department of Energy (DOE) funded High Temperature Turbine Technology (HTTT) Program.
气体
对水冷式燃气轮机转子桶形冷却通道冷却液流量的计量进行了实验研究。通过每个冷却通道的水流量约为1加仑/小时,转子“g”场约为20,000 g,水冷燃气轮机依赖于均匀的水分布。分别对8个桶的配水精度和每个桶的代表性冷却通道进行了测试。在两个计量元件上进行转子水压测量,并与静态压差数据进行比较。这项工作是先进水冷燃气轮机技术开发和部件验证测试的一部分,该燃气轮机点火温度为2600°F(1427°C),由通用电气公司在美国能源部(DOE)资助的高温涡轮技术(http)计划的第二阶段进行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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