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[1]程彪,陈智洋,马婧媛,等.不同进汽压力下向心汽轮机特性数值仿真〖JZ)〗[J].集美大学学报(自然科学版),2024,29(3):245-252.
 CHENG Biao,CHEN Zhiyang,MA Jingyuan,et al.Numerical Simulation of a Radial Steam Turbine with Various Inlet Pressures[J].Journal of Jimei University,2024,29(3):245-252.
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《集美大学学报(自然科学版)》[ISSN:1007-7405/CN:35-1186/N]

卷:
第29卷
期数:
2024年第3期
页码:
245-252
栏目:
船舶与机械工程
出版日期:
2024-06-28

文章信息/Info

Title:
Numerical Simulation of a Radial Steam Turbine with Various Inlet Pressures
作者:
程彪1陈智洋2马婧媛2叶榕榕2林峰2
1.集美大学海洋装备与机械工程学院,福建 厦门361021;2.集美大学轮机工程学院,福建 厦门361021
Author(s):
CHENG Biao1CHEN Zhiyang2MA Jingyuan2YE Rongrong2LIN Feng2
1.College of Marine Equipment and Mechanical Engineering,Jimei University,Xiamen 361021,China;2.School of Marine Engineering,Jimei University,Xiamen 361021,China
关键词:
汽轮机向心透平攻角损失模型变工况数值仿真
Keywords:
steam turbineradialinflow turbineangle of attackloss modevariable operating conditionsnumerical simulation
分类号:
-
DOI:
-
文献标志码:
A
摘要:
针对进口压力波动影响背压式向心汽轮机的问题,选取某高转速向心透平,通过调整进口总压模拟工况变化,采取单通道定常数值计算的方式求得不同工况下的数值解并将其无量纲化;预测出向心透平在变工况时的效率特性、通流特性等特性变化规律,借助流场分布及损失模型,分析出不同工况下热损失的主要形式。结果表明,低压时转子进口攻角偏离较大,攻角损失可以比设计点工况多出近40%;而随着压力增大,攻角逐渐稳定在合适范围内,通道二次流损失和余速损失开始以较大比率增长,余速损失在高压工况下可超出设计点附近工况的5倍。
Abstract:
The performance characteristics of back-pressure radial inflow turbines (RIT) vary with the inlet pressures. It is required that for optimization purposes,the designers can not only simulate the overall performances,but also understand the reason behind.To solve this scientific problem,this paper with the help of a high-speed radial turbine,which was simulated with a single-passage model and steady state numerical methods. Under various inlet total pressures,the performance curves of efficiency and massflow were calculated. The loss mechanisms were then analyzed with the help of loss models and the calculated flow fields.It is found that the rotor inlet incidence deviates greatly at low pressure,and the incidence loss can be nearly 40% more than that at design point.With the increase of pressure,the incidence gradually stabilizes within the appropriate range,and the passage secondary flow loss and exit energy loss begin to increase in a larger ratio,and the exit energy loss can exceed the design point condition by about 5 times under high pressure conditions.

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更新日期/Last Update: 2024-08-12