In the course of expansion of steam in turbines the state path crosses the saturation line and the fluid nucleates to become a two-phase mixture. These conditions can be reproduced under blow-down conditions by the equipment employed. This paper is the fourth of a set describing an investigation into the performance of a cascade of rotor tip section blading in wet steam and presents the results of droplet measurements which have been carried out by light extinction.
BakhtarF.MashmoushyH.BuckleyJ. R.On the performance of a cascade of turbine rotor tip section blading in wet steam. Part 1: Generation of wet steam of prescribed droplet sizes. Proc. Instn Mech. Engrs, Part C, Journal of Mechanical Engineering Science, 1997, 211 (C7), 519–529.
2.
BakhtarF.MashmoushyH.JadayelO. C.On the performance of a cascade of turbine rotor tip section blading in wet steam. Part 2: Surface pressure distributions. Proc. Instn Mech. Engrs, Part C, Journal of Mechanical Engineering Science, 1997, 211(C7), 531–540.
3.
BakhtarF.MashmoushyH.JadayelO. C.On the performance of a cascade of turbine rotor tip section blading in wet steam. Part 3: Wake traverses. Proc. Instn Mech. Engrs, Part C, Journal of Mechanical Engineering Science, 1997, 211 (C8), 639–648.
4.
HallerB. R.UnsworthR. G.WaltersP. T.LordM. J.Wetness measurements in a model multistage low pressure steam turbine. In Proceedings of BNES Conference on Technology of Turbine Plant Operating with Wet Steam (Eds MitchellJ. M.), Conference Proceedings, 1989, pp. 137–145 (British Nuclear Energy Society, London).
5.
KreitmeierF.SchlachterW.SmutnyJ.An investigation of flow in a low pressure wet steam model turbine and its use for determining wetness losses. In Proceedings of IMechE Conference on Steam Turbines for the 1980s, Conference Publication 1979-12, pp. 385–395 (Mechanical Engineering Publications, London).
6.
TanumaT.SakamotoT.The removal of water from steam turbine stationary blades by suction slots. In Proceedings of IMechE Conference on Turbomachinery: Latest Developments in a Changing Scene, Conference Publication 1991-3, paper C423/022, pp. 179–189 (Mechanical Engineering Publications, London).
7.
SakamotoT.NagaoS.TanumaT.Investigation of wet steam flow for steam turbine repowering. In International Joint Power Generation Conference on Steam Turbine—Generator Developments for the Power Generation Industry, Atlanta, Georgia, 1992, ASME Power Division Publication PWR-18, pp. 33–40 (American Society of Mechanical Engineers, New York).
8.
SteltzW. G.LeeP. K.LindsayW. T.The verification of concentrated impurities in low pressure steam turbines. In Aerothermodynamics of Steam Turbines (Eds SteltzW. G.DonaldsonA. M.) ASME Winter Annual Meeting, Washington, 1981, pp. 73–82.
9.
LaaliA. R.CourantJ. J.KleitzA.Calculation and measurement of fog droplet size. Comparison between nuclear and fossil fired turbines. In International Joint Power Generation Conference on Design, Repair and Refurbishment of Steam Turbines, San Diego, California, October 1991, ASME Power Division Publication PWR-13, pp. 133–138 (American Society of Mechanical Engineers, New York).
10.
FallickL.HopkinsonM.JacksonA. B.Some aspects of low pressure steam turbine flow path design and analysis. In Proceedings of IMechE Conference on Steam Turbines for the 1980s, Conference Publication 1979-12, pp. 253–280 (Mechanical Engineering Publications, London).
11.
StastnyM.Structure of secondary liquid phase downstream of moving blades in LP cylinder stages of steam turbines. In Proceedings of IMechE Conference on Steam Turbines for the 1980s, Conference Publication 1979-12 pp. 371–384 (Mechanical Engineering Publications, London).
12.
WaltersP. T.Wetness and efficiency measurements in LP turbines with an optical probe as an aid to improving performance. ASME paper 85-JPGC-GT-9, 1985.
13.
BarbucciP.CarboneC.DonatiniF.MazzocchiL.VergaM.Steam turbine flow field and steam quality measurements. In International Joint Power Generation Conference on The Steam Turbine Generator Today: Materials Flow Path Design Repair and Refurbishment, 1993, ASME Power Division Publication PWR-21, pp. 129–135 (American Society of Mechanical Engineers, New York).
14.
YoshidaK.MasuzawaC.KishimotoM.Development of measuring techniques and measurement on wet steam for steam turbine. In International Joint Power Generation Conference on Advances in Steam Turbine Technology for Power Generation, 1990 ASME Power Division Publication PWR-10, pp. 237–244 (American Society of Mechanical Engineers, New York).
15.
BakhtarF.EbrahimiM.WebbR. A.On the performance of a cascade of turbine rotor tip section blading in nucleating steam. Part 1: Surface pressure distributions. Proc. Instn Mech. Engrs, Part C, Journal of Mechanical Engineering Science, 1995, 209(C2), 115–124.
16.
BakhtarF.EbrahimiM.BamkoleB. O.On the performance of a cascade of turbine rotor tip section blading in nucleating steam. Part 2: Wake traverses. Proc. Instn Mech. Engrs, Part C, Journal of Mechanical Engineering Science, 1995, 209(C3), 169–177.
17.
GyarmathyG.LeschF.Fog droplet observations in Laval nozzles and in an experimental turbine. Proc. Instn Mech. Engrs, 1970, 184(3G), 88–95.
18.
PetrV.Measurement of an average size and number of droplets during spontaneous condensation of supersaturated steam. Proc. Instn Mech. Engrs, 1970, 184(3G), 73–79.
19.
WaltersP. T.Optical measurement of water droplets in wet steam flows. In Proceedings of IMechE Conference on Heat and Fluid Flow in Steam and Gas Turbine Plant, London, 1973, Conference Publication 1973-3, pp. 66–74 (Mechanical Engineering Publications, London).
20.
KrólT.Results of optical measurements of diameters of drops formed due to spontaneous condensation of steam in a de Laval nozzle (in Polish). Prace IMP, 1971, 57.
21.
DeychM. Ye.KurshakovA. V.SaltanovG. A.YatcheniI. A.A study of the structure of two-phase flow behind a condensation shock in supersonic nozzles. Heat Transfer Sov. Res., 1959, 1, 5.
22.
WaltersP. T.SkingleyP. C.An optical instrument for measuring the wetness fraction and droplet size of wet steam flows in L.P. turbines. In Proceedings of IMechE Conference on Steam Turbines for the 1980s, 1979, Conference Publication 1979-12, paper C141/79, pp. 337–348 (Mechanical Engineering Publications, London).
23.
DibeliusG. H.MertensK.PittR. V.StraufE.Investigation of wet steam flow in turbines. In Proceedings of IMechE Conference on Turbomachinery Efficiency Prediction and Improvement, 1987, Conference Publication 1987-6, paper C271/87, pp. 135–143 (Mechanical Engineering Publications, London).
24.
TatsunoK.Development of an optical fiber droplet sizer. In Proceedings of International Conference on Industrial Electronics Control and Instrumentation, Tokyo, 1984, pp. 1070–1075 (Society of Instrument and Control Engineers of Japan, Tokyo).
25.
TatsunoK.Water droplet size measurements in an experimental turbine using an optical fiber droplet sizer. Trans. ASME, J. Heat Transfer, November 1986, 108, 939–945.
26.
TatsunoK.Improvements on the optical fiber particle sizer. Jap. J. Appl. Physics, January 1988, 27(1), 117–123.
27.
KleitzA.LaaliA. R.CourantJ. J.Fog droplet size measurement and calculation in wet steam turbines. In Proceedings of BNES Conference on Technology of Turbine Plant Operating with Wet Steam (Eds MitchellJ. M.) 1989, Conference Proceedings, pp. 177–182 (British Nuclear Energy Society, London).
28.
MarcolongoV.MazzocchiL.TesliA.Design and development of a steam quality measuring device and of its testing facility. In Proceedings of European Two-Phase Flow Group Meeting, Joint Research Centre, ISPRA, May 1990.
29.
BarbucciP.CarboneC.MazzocchiL.VergaM.Wet steam measurements in industrial trubines. In Proceedings of 5th International Conference on Multiphase Flow in Industrial Plants, Amalfi, Italy, September 1996, pp. 419–430.
30.
RossM. M.SpratlingM. W.KirklandC. B.StoreyP. J.Measurement of microfog wetness in a model steam turbine using a miniature optical spectral extinction probe. In Proceedings of IMechE Conference on Optical Methods and Data Processing in Heat and Fluid Flow, April 1994, paper C485/012 (Mechanical Engineering Publications, London).
31.
Van de HulstH. C.Light Scattering by Small Particles, 1957 (John Wiley, Chichester); 1981 (Dover, London).
32.
PendorfR. B.New table of total Mie scattering coefficients for spherical particles of real refractive indices. J. Opt. Soc. Am., 1957, 47, 1010–1015.
33.
WaltersP. T.Practical applications of inverting spectral turbidity data to provide aerosol size distributions. Appl. Optics, July 1980, 19, 2853–2365.
34.
WaltersP. T.Improving the accuracy of wetness measurements in generating turbines by using a new procedure for analysing optical transmission data. In Proceedings of BNES Conference on Technology of Turbine Plant Operating with Wet Steam (Eds MitchellJ.), London, 1989, Conference Proceedings, pp. 183–191 (British Nuclear Energy Society, London).
35.
TwomeyS.Introduction to the Mathematics of Inversion in Remote Sensing and Indirect Measurements, 1977 (Elsevier, New York).
36.
MugeleR. A.EvansH. D.Droplet size distribution in sprays. Ind. Engng Chemistry, 1951, 43, 1317–1324.
37.
CharlesL. L.RichardsJ. H.Solving Least Squares Problems, 1974 (Prentice-Hall, New York).