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Erschienen in: Rheologica Acta 7/2009

01.08.2009 | Original Contribution

Rheometry for large-particulated fluids: analysis of the ball measuring system and comparison to debris flow rheometry

verfasst von: M. Schatzmann, G. R. Bezzola, H.-E. Minor, E. J. Windhab, P. Fischer

Erschienen in: Rheologica Acta | Ausgabe 7/2009

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Abstract

For large-particulated fluids encountered in natural debris flow, building materials, and sewage treatment, only a few rheometers exist that allow the determination of yield stress and viscosity. In the present investigation, we focus on the rheometrical analysis of the ball measuring system as a suitable tool to measure the rheology of particulated fluids up to grain sizes of 10 mm. The ball measuring system consists of a sphere that is dragged through a sample volume of approximately 0.5 l. Implemented in a standard rheometer, torques exerted on the sphere and the corresponding rotational speeds are recorded within a wide measuring range. In the second part of this investigation, six rheometric devices to determine flow curve and yield stress of fluids containing large particles with maximum grain sizes of 1 to 25 mm are compared, considering both rheological data and application in practical use. The large-scale rheometer of Coussot and Piau, the building material learning viscometer of Wallevik and Gjorv, and the ball measuring system were used for the flow curve determination and a capillary rheometer, the inclined plane test, and the slump test were used for the yield stress determination. For different coarse and concentrated sediment–water mixtures, the flow curves and the yield stresses agree well, except for the capillary rheometer, which exhibits much larger yield stress values. Differences are also noted in the measuring range of the different devices, as well as for the required sample volume that is crucial for application.

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Literatur
Zurück zum Zitat Ancey C (2001) Role of lubricated contacts in concentrated polydisperse suspensions. J Rheol 45:1421–1439CrossRefADS Ancey C (2001) Role of lubricated contacts in concentrated polydisperse suspensions. J Rheol 45:1421–1439CrossRefADS
Zurück zum Zitat Ancey C, Jorrot H (2001) Yield stress for particle suspension within a clay dispersion. J Rheol 45:297–319CrossRefADS Ancey C, Jorrot H (2001) Yield stress for particle suspension within a clay dispersion. J Rheol 45:297–319CrossRefADS
Zurück zum Zitat Ansley RW, Smith TN (1967) Motion of spherical particles in a Bingham plastic. AIChE J 13:1193–1196CrossRef Ansley RW, Smith TN (1967) Motion of spherical particles in a Bingham plastic. AIChE J 13:1193–1196CrossRef
Zurück zum Zitat Atapattu DD, Chhabra RP, Uhlherr PHT (1995) Creeping sphere motion in Herschel–Bulkley fluids. J Non-Newton Fluid Mech 59:245–265CrossRef Atapattu DD, Chhabra RP, Uhlherr PHT (1995) Creeping sphere motion in Herschel–Bulkley fluids. J Non-Newton Fluid Mech 59:245–265CrossRef
Zurück zum Zitat Banfill PFG (1994) Rheological methods for assessing the flow properties of mortar and related materials. Constr Build Mater 8:43–50CrossRef Banfill PFG (1994) Rheological methods for assessing the flow properties of mortar and related materials. Constr Build Mater 8:43–50CrossRef
Zurück zum Zitat Banfill PFG, Beaupré D, Chapdelaine F, Larrard F, Domone P, Nachbaur L, Sedran T, Wallevik OH, Wallevik JE (2000) Comparison of concrete rheometers: international tests at LCPC (Nantes, France), NISTIR-Report 6819 of the NIST (National Institute of Standards and Technology) Banfill PFG, Beaupré D, Chapdelaine F, Larrard F, Domone P, Nachbaur L, Sedran T, Wallevik OH, Wallevik JE (2000) Comparison of concrete rheometers: international tests at LCPC (Nantes, France), NISTIR-Report 6819 of the NIST (National Institute of Standards and Technology)
Zurück zum Zitat Baudez JC, Chabot F, Coussot P (2002) Rheological interpretation of the slump test. Appl Rheol 12:133–141 Baudez JC, Chabot F, Coussot P (2002) Rheological interpretation of the slump test. Appl Rheol 12:133–141
Zurück zum Zitat Beaulne M, Mitsoulis E (1997) Creeping motion of a sphere in tubes filled with Herschel–Bulkley fluids. J Non-Newton Fluid Mech 72:55–71CrossRef Beaulne M, Mitsoulis E (1997) Creeping motion of a sphere in tubes filled with Herschel–Bulkley fluids. J Non-Newton Fluid Mech 72:55–71CrossRef
Zurück zum Zitat Beris AN, Tsamopoulos JA, Armstrong RC, Brown RA (1985) Creeping motion of a sphere through a Bingham plastic. J Fluid Mech 158:219–244MATHCrossRefADSMathSciNet Beris AN, Tsamopoulos JA, Armstrong RC, Brown RA (1985) Creeping motion of a sphere through a Bingham plastic. J Fluid Mech 158:219–244MATHCrossRefADSMathSciNet
Zurück zum Zitat Blackery J, Mitsoulis E (1997) Creeping motion of a sphere in tubes filled with a Bingham plastic material. J Non-Newton Fluid Mech 70:59–77CrossRef Blackery J, Mitsoulis E (1997) Creeping motion of a sphere in tubes filled with a Bingham plastic material. J Non-Newton Fluid Mech 70:59–77CrossRef
Zurück zum Zitat Borgia A, Spera FJ (1990) Error analysis for reducing noisy wide-gap concentric cylinder rheometric data for nonlinear fluids: theory and applications. J Rheol 34:117–136MATHCrossRefADS Borgia A, Spera FJ (1990) Error analysis for reducing noisy wide-gap concentric cylinder rheometric data for nonlinear fluids: theory and applications. J Rheol 34:117–136MATHCrossRefADS
Zurück zum Zitat Chhabra RP (2007) Bubbles, drop, and particles in non-newtonian fluids. Taylor & Francis, Boca-Raton Chhabra RP (2007) Bubbles, drop, and particles in non-newtonian fluids. Taylor & Francis, Boca-Raton
Zurück zum Zitat Chhabra RP, Richardson JF (1999) Non-newtonian flow in the process industries. Butterworth-Heinemann, Oxford Chhabra RP, Richardson JF (1999) Non-newtonian flow in the process industries. Butterworth-Heinemann, Oxford
Zurück zum Zitat Chhabra RP, Uhlherr PHT (1988) Static equilibrium and motion of spheres in viscoplastic liquids. In: Cheremisinoff NP (Ed) Encyclopedia of fluid mechanics, vol 7. Gulf, Houston, pp 611–633 Chhabra RP, Uhlherr PHT (1988) Static equilibrium and motion of spheres in viscoplastic liquids. In: Cheremisinoff NP (Ed) Encyclopedia of fluid mechanics, vol 7. Gulf, Houston, pp 611–633
Zurück zum Zitat Clift R, Grace JR, Weber ME (1978) Bubbles, drops and particles. Academic, New York Clift R, Grace JR, Weber ME (1978) Bubbles, drops and particles. Academic, New York
Zurück zum Zitat Coussot P (2007) Plasticity and geophysical flows: a review. J Non-Newton Fluid Mech 142:4–35CrossRef Coussot P (2007) Plasticity and geophysical flows: a review. J Non-Newton Fluid Mech 142:4–35CrossRef
Zurück zum Zitat Coussot P, Boyer S (1995) Determination of yield stress fluid behaviour from inclined plane test. Rheol Acta 34:534–543CrossRef Coussot P, Boyer S (1995) Determination of yield stress fluid behaviour from inclined plane test. Rheol Acta 34:534–543CrossRef
Zurück zum Zitat Coussot P, Piau JM (1995) A large-scale field concentric cylinder rheometer for the study of the rheology of natural coarse suspensions. J Rheol 39:105–124CrossRefADS Coussot P, Piau JM (1995) A large-scale field concentric cylinder rheometer for the study of the rheology of natural coarse suspensions. J Rheol 39:105–124CrossRefADS
Zurück zum Zitat Coussot P, Proust S, Ancey C (1996) Rheological interpretation of deposits of yield stress fluids. J Non-Newton Fluid Mech 66:55–70CrossRef Coussot P, Proust S, Ancey C (1996) Rheological interpretation of deposits of yield stress fluids. J Non-Newton Fluid Mech 66:55–70CrossRef
Zurück zum Zitat Coussot P, Laigle D, Arattano M, Deganutti A, Marchi L (1998) Direct determination of rheological characteristics of debris flow. J Hydraul Eng (ASCE) 124:865–868CrossRef Coussot P, Laigle D, Arattano M, Deganutti A, Marchi L (1998) Direct determination of rheological characteristics of debris flow. J Hydraul Eng (ASCE) 124:865–868CrossRef
Zurück zum Zitat Liu KF, Mei CC (1989) Slow spreading of a sheet of Bingham fluid on an inclined plane. J Fluid Mech 207:505–529MATHCrossRefADS Liu KF, Mei CC (1989) Slow spreading of a sheet of Bingham fluid on an inclined plane. J Fluid Mech 207:505–529MATHCrossRefADS
Zurück zum Zitat Major JJ, Pierson T (1992) Debris flow rheology: experimental analysis of fine-grained slurries. Water Resour Res 28:841–857CrossRefADS Major JJ, Pierson T (1992) Debris flow rheology: experimental analysis of fine-grained slurries. Water Resour Res 28:841–857CrossRefADS
Zurück zum Zitat Metzner AB, Otto RE (1957) Agitation of non-newtonian fluids. AIChE J 3:3–10CrossRef Metzner AB, Otto RE (1957) Agitation of non-newtonian fluids. AIChE J 3:3–10CrossRef
Zurück zum Zitat Müller M, Tyrach J, Brunn PO (1999) Rheological characterization of machine-applied plasters. ZKG Int 52:252–258 Müller M, Tyrach J, Brunn PO (1999) Rheological characterization of machine-applied plasters. ZKG Int 52:252–258
Zurück zum Zitat Nguyen QD, Boger DV (1987) Characterization of yield stress fluids with concentric cylinder viscometers. Rheol Acta 26:508–515CrossRef Nguyen QD, Boger DV (1987) Characterization of yield stress fluids with concentric cylinder viscometers. Rheol Acta 26:508–515CrossRef
Zurück zum Zitat Nguyen QD, Boger DV (1992) Measuring the flow properties of yield stress fluids. Ann Rev Fluid Mech 24:47–88CrossRefADS Nguyen QD, Boger DV (1992) Measuring the flow properties of yield stress fluids. Ann Rev Fluid Mech 24:47–88CrossRefADS
Zurück zum Zitat Parsons JD, Whipple KX, Simoni A (2001) Experimental study of the grain-flow, fluid-mud transition in debris flows. J Geol 109:427–447CrossRefADS Parsons JD, Whipple KX, Simoni A (2001) Experimental study of the grain-flow, fluid-mud transition in debris flows. J Geol 109:427–447CrossRefADS
Zurück zum Zitat Pashias N, Boger DV, Summers J, Glenister DJ (1996) A fifty cent rheometer for yield stress measurement. J Rheol 40:1179–1189CrossRefADS Pashias N, Boger DV, Summers J, Glenister DJ (1996) A fifty cent rheometer for yield stress measurement. J Rheol 40:1179–1189CrossRefADS
Zurück zum Zitat Phillips CJ, Davies TRH (1991) Determining rheological parameters of debris flow material. Geomorphology 4:101–110CrossRefADS Phillips CJ, Davies TRH (1991) Determining rheological parameters of debris flow material. Geomorphology 4:101–110CrossRefADS
Zurück zum Zitat Roussel N, Coussot P (2005) “Fifty-cent rheometer” for yield stress measurements: from slump to spreading flow. J Rheol 49:705–718CrossRefADS Roussel N, Coussot P (2005) “Fifty-cent rheometer” for yield stress measurements: from slump to spreading flow. J Rheol 49:705–718CrossRefADS
Zurück zum Zitat Schatzmann M (2005) Rheometry for large particle fluids and debris flows. Dissertation No 16093, ETH Zurich, Zurich Schatzmann M (2005) Rheometry for large particle fluids and debris flows. Dissertation No 16093, ETH Zurich, Zurich
Zurück zum Zitat Schatzmann M, Fischer P, Bezzola GR, Minor HE (2003a) The ball measuring system—a new method to determine debris flow rheology? In: Rickenmann D, Chen C (Eds) Proceedings of the 3rd international conference on debris flow hazards mitigation. Millpress, Rotterdam, pp 387–398 Schatzmann M, Fischer P, Bezzola GR, Minor HE (2003a) The ball measuring system—a new method to determine debris flow rheology? In: Rickenmann D, Chen C (Eds) Proceedings of the 3rd international conference on debris flow hazards mitigation. Millpress, Rotterdam, pp 387–398
Zurück zum Zitat Schatzmann M, Fischer P, Bezzola GR (2003b) Rheological behaviour of fine and large particle suspensions. J Hydraul Eng (ASCE) 129:796–803CrossRef Schatzmann M, Fischer P, Bezzola GR (2003b) Rheological behaviour of fine and large particle suspensions. J Hydraul Eng (ASCE) 129:796–803CrossRef
Zurück zum Zitat Schowalter WR, Christensen G (1998) Toward a rationalization of the slump test for fresh concrete: comparison of calculations and experiments. J Rheol 42:865–870CrossRefADS Schowalter WR, Christensen G (1998) Toward a rationalization of the slump test for fresh concrete: comparison of calculations and experiments. J Rheol 42:865–870CrossRefADS
Zurück zum Zitat Schulze B, Brauns J, Schwalm I (1991) Neuartiges Baustellen-Messgerät zur Bestimmung der Fliessgrenze von Suspensionen. Sonderdruck aus Geotechnik 3/1991. Heidelberger Zement, Berliner Strasse 6, D-6900 Heidelberg Schulze B, Brauns J, Schwalm I (1991) Neuartiges Baustellen-Messgerät zur Bestimmung der Fliessgrenze von Suspensionen. Sonderdruck aus Geotechnik 3/1991. Heidelberger Zement, Berliner Strasse 6, D-6900 Heidelberg
Zurück zum Zitat Shapley NC, Brown RA, Armstrong RC (2004) Evaluation of particle migration models based on laser Doppler velocimetry measurements in concentrated suspensions. J Rheol 48:255–279CrossRefADS Shapley NC, Brown RA, Armstrong RC (2004) Evaluation of particle migration models based on laser Doppler velocimetry measurements in concentrated suspensions. J Rheol 48:255–279CrossRefADS
Zurück zum Zitat Tabuteau H, Coussot P, de Bruyn JR (2007) Drag force on a sphere in steady motion through a yield-stress fluid. J Rheol 51:125–137CrossRefADS Tabuteau H, Coussot P, de Bruyn JR (2007) Drag force on a sphere in steady motion through a yield-stress fluid. J Rheol 51:125–137CrossRefADS
Zurück zum Zitat Tattersall GH, Banfill PFG (1983) The rheology of fresh concrete. Pitman, London Tattersall GH, Banfill PFG (1983) The rheology of fresh concrete. Pitman, London
Zurück zum Zitat Tattersall GH, Bloomer SJ (1979) Further development of the two-point test for workability and extension of its range. Mag Concr Res 31:202–210CrossRef Tattersall GH, Bloomer SJ (1979) Further development of the two-point test for workability and extension of its range. Mag Concr Res 31:202–210CrossRef
Zurück zum Zitat Tyrach J (2001) Rheologische charakterisierung von zementären baustoffsystemen. Dissertation, Universität Erlangen-Nürnberg Tyrach J (2001) Rheologische charakterisierung von zementären baustoffsystemen. Dissertation, Universität Erlangen-Nürnberg
Zurück zum Zitat Wallevik OH, Gjorv OE (1990) Development of a coaxial cylinder viscometer for fresh concrete. In: Proceeding of the rilem colloquium. Chapman and Hall, Hanover Wallevik OH, Gjorv OE (1990) Development of a coaxial cylinder viscometer for fresh concrete. In: Proceeding of the rilem colloquium. Chapman and Hall, Hanover
Zurück zum Zitat Whipple KX (1997) Open-Channel flow of Bingham fluids: Applications in debris flow research. J Geol 105:243–262CrossRefADS Whipple KX (1997) Open-Channel flow of Bingham fluids: Applications in debris flow research. J Geol 105:243–262CrossRefADS
Zurück zum Zitat Wilson SDR, Burgess SL (1998) The steady, spreading flow of a rivulet of mud. J Non-Newton Fluid Mech 79:77–85MATHCrossRef Wilson SDR, Burgess SL (1998) The steady, spreading flow of a rivulet of mud. J Non-Newton Fluid Mech 79:77–85MATHCrossRef
Metadaten
Titel
Rheometry for large-particulated fluids: analysis of the ball measuring system and comparison to debris flow rheometry
verfasst von
M. Schatzmann
G. R. Bezzola
H.-E. Minor
E. J. Windhab
P. Fischer
Publikationsdatum
01.08.2009
Verlag
Springer-Verlag
Erschienen in
Rheologica Acta / Ausgabe 7/2009
Print ISSN: 0035-4511
Elektronische ISSN: 1435-1528
DOI
https://doi.org/10.1007/s00397-009-0364-x

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