Optimization volumetric heating in condensing steam flow by a novel method

被引:22
|
作者
Hosseini, Reza [1 ]
Lakzian, Esmail [1 ]
机构
[1] Hakim Sabzevari Univ, Dept Mech Engn, Ctr Computat Energy, Sabzevar, Iran
关键词
Novel method; Condensing steam flow; Steam turbine; Volumetric heating; ENTROPY GENERATION; SHAPE OPTIMIZATION; NUCLEATING FLOWS; EXERGY ANALYSIS; CONDENSATION; NOZZLE; CASCADE; REDUCTION; VAPOR;
D O I
10.1007/s10973-019-09001-1
中图分类号
O414.1 [热力学];
学科分类号
摘要
In the last stages of steam turbines, the formation of liquid droplets causes losses and reduces turbine efficiency. One of the major problems of wet steam flow is the presence of the liquid phase, which volumetric heating reduces the wetness. One of the disadvantages of adding volumetric heating is increasing entropy generation and cost. Considering that three important parameters, including entropy losses, economic cost, and wetness play, an important role in the turbine blade flow. Reducing wetness can be accompanied by increasing heat and, on the other hand, adding heat leads to increasing cost and entropy. Therefore, as a first, a novel entropy, economic, and wetness (EEW) method is introduced to achieve optimal volumetric heating. Numerical simulation of the turbulent steam flow, SST k-omega model is used. Results are validated with experimental and numerical previous studies for two different geometries. It was also found that when the volumetric heating is optimal, these three parameters in EEW method have the lowest value. Moreover, EEW method is recommended for future research, and it is more optimized compared to the other types of methods. Therefore, corrosion and shock condensation can be decreased by using EEW method.
引用
收藏
页码:2421 / 2433
页数:13
相关论文
共 50 条
  • [21] An asymmetrical λ-foot of condensing steam flow in the IMP PAN nozzle
    Kornet, S.
    Badur, J.
    XXI FLUID MECHANICS CONFERENCE, 2014, 530
  • [22] The effect of surfactant on flow of spontaneously condensing steam in Laval nozzles
    Avetisyan A.R.
    Alipchenkov V.M.
    Zaichik L.I.
    Kukushkin A.N.
    Filippov G.A.
    Thermal Engineering, 2008, 55 (6) : 494 - 498
  • [23] Simulation of a Flow of Spontaneously Condensing Moist Steam in Laval Nozzles
    A. R. Avetisyan
    V. M. Alipchenkov
    L. I. Zaichik
    High Temperature, 2002, 40 : 872 - 880
  • [24] INFLUENCE OF TUBE INCLINATION ON THE FLOW REGIME BOUNDARIES OF CONDENSING STEAM
    NITHEANANDAN, T
    SOLIMAN, HM
    CANADIAN JOURNAL OF CHEMICAL ENGINEERING, 1993, 71 (01): : 35 - 41
  • [25] Volumetric solar heating and steam generation via gold nanofluids
    Amjad, Muhammad
    Raza, Ghulam
    Xin, Yan
    Pervaiz, Shahid
    Xu, Jinliang
    Du, Xiaoze
    Wen, Dongsheng
    APPLIED ENERGY, 2017, 206 : 393 - 400
  • [26] STEAM CONDENSING FROM A STEAM-GAS MIXTURE IN A VERTICAL ANNULUS CLOSED TO THE FLOW OF GAS
    KHALME, MV
    AVDEEV, SG
    SMIRNOV, YB
    THERMAL ENGINEERING, 1992, 39 (08) : 457 - 460
  • [27] Evaluating the effect of steam velocity on heat transfer with steam condensing on horizontal tubes in cross flow
    Berman, L.D.
    Thermal Engineering (English translation of Teploenergetika), 1988, 35 (08): : 450 - 454
  • [28] INFLUENCE OF TRAILING EDGE GEOMETRY ON THE CONDENSING STEAM FLOW IN LOW-PRESSURE STEAM TURBINE
    Patel, Giteshkumar
    Patel, Yogini
    Turunen-Saaresti, Teemu
    PROCEEDINGS OF THE ASME TURBO EXPO: TURBINE TECHNICAL CONFERENCE AND EXPOSITION, 2015, VOL 8, 2015,
  • [29] Shock effect in supersonic non-equilibrium condensing steam flow
    Yang, Yong
    Shen, Sheng-Qiang
    Kung Cheng Je Wu Li Hsueh Pao/Journal of Engineering Thermophysics, 2009, 30 (04): : 635 - 637
  • [30] The effect of turbulence on the flow of spontaneously condensing moist steam in Laval nozzles
    Avetisyan, AR
    Alipchenkov, VM
    Zaichik, LI
    HIGH TEMPERATURE, 2003, 41 (01) : 57 - 61