Skip to main content
Erschienen in: Innovative Infrastructure Solutions 1/2018

01.12.2018 | State-of-the-Art Paper

Application of geoinclusions for sustainable rail infrastructure under increased axle loads and higher speeds

verfasst von: Buddhima Indraratna, Fernanda Bessa Ferreira, Yujie Qi, Trung Ngoc Ngo

Erschienen in: Innovative Infrastructure Solutions | Ausgabe 1/2018

Einloggen

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

Given the ongoing demand for faster trains for carrying heavier loads, conventional ballasted railroads require considerable upgrading in order to cope with the increasing traffic-induced stresses. During train operations, ballast deteriorates due to progressive breakage and fouling caused by the infiltration of fine particles from the surface or mud-pumping from the underneath layers (e.g. sub-ballast, sub-grade), which decreases the load bearing capacity, impedes drainage and increases the deformation of ballasted tracks. Suitable ground improvement techniques involving geosynthetics and resilient rubber sheets are commonly employed to enhance the stability and longevity of rail tracks. This keynote paper focuses mainly on research projects undertaken at the University of Wollongong to improve track performance by emphasising the main research outcomes and their practical implications. Results from laboratory tests, computational modelling and field trials have shown that track behaviour can be significantly improved by the use of geosynthetics, energy-absorbing rubber mats, rubber crumbs and infilled-recycled tyres. Full-scale monitoring of instrumented track sections supported by rail industry (ARTC) has been performed, and the obtained field data for in situ stresses and deformations could verify the track performance, apart from validating the numerical simulations. The research outcomes provide promising approaches that can be incorporated into current track design practices to cater for high-speed freight trains carrying heavier loads.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft"

Online-Abonnement

Mit Springer Professional "Wirtschaft" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 340 Zeitschriften

aus folgenden Fachgebieten:

  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Versicherung + Risiko




Jetzt Wissensvorsprung sichern!

Literatur
1.
Zurück zum Zitat AS 2758.7 (1996) Aggregates and rock for engineering purposes. Part 7: Railway Ballast. Standard Australia, Sydney, Australia AS 2758.7 (1996) Aggregates and rock for engineering purposes. Part 7: Railway Ballast. Standard Australia, Sydney, Australia
2.
Zurück zum Zitat ASTM D6270 (2008) Standard practice for use of scrap tyres in civil engineering applications. ASTM D International, West Conshohocken ASTM D6270 (2008) Standard practice for use of scrap tyres in civil engineering applications. ASTM D International, West Conshohocken
3.
Zurück zum Zitat Aursudkij B, McDowell GR, Collop AC (2009) Cyclic loading of railway ballast under triaxial conditions and in a railway test facility. Granul Matter 11:391–401CrossRef Aursudkij B, McDowell GR, Collop AC (2009) Cyclic loading of railway ballast under triaxial conditions and in a railway test facility. Granul Matter 11:391–401CrossRef
4.
Zurück zum Zitat Bathurst RJ, Raymond GP (1987) Geogrid reinforcement of ballasted track. Transp Res Rec 1153:8–14 Bathurst RJ, Raymond GP (1987) Geogrid reinforcement of ballasted track. Transp Res Rec 1153:8–14
5.
Zurück zum Zitat Biabani MM, Ngo NT, Indraratna B (2016) Performance evaluation of railway subballast stabilised with geocell based on pull-out testing. Geotext Geomembr 44(4):579–591CrossRef Biabani MM, Ngo NT, Indraratna B (2016) Performance evaluation of railway subballast stabilised with geocell based on pull-out testing. Geotext Geomembr 44(4):579–591CrossRef
6.
Zurück zum Zitat Brown SF, Kwan J, Thom NH (2007) Identifying the key parameters that influence geogrid reinforcement of railway ballast. Geotext Geomembr 25(6):326–335CrossRef Brown SF, Kwan J, Thom NH (2007) Identifying the key parameters that influence geogrid reinforcement of railway ballast. Geotext Geomembr 25(6):326–335CrossRef
7.
Zurück zum Zitat Cundall PA, Strack ODL (1979) A discrete numerical model for granular assemblies. Geotechnique 29(1):47–65CrossRef Cundall PA, Strack ODL (1979) A discrete numerical model for granular assemblies. Geotechnique 29(1):47–65CrossRef
8.
Zurück zum Zitat Fernandes G, Palmeira EM, Gomes RC (2008) Performance of geosynthetic-reinforced alternative sub-ballast material in a railway track. Geosynth Int 15(5):311–321CrossRef Fernandes G, Palmeira EM, Gomes RC (2008) Performance of geosynthetic-reinforced alternative sub-ballast material in a railway track. Geosynth Int 15(5):311–321CrossRef
9.
Zurück zum Zitat Ferreira FB, Indraratna B (2017) Deformation and degradation response of railway ballast under impact loading—effect of artificial inclusions. In: First international conference on rail transportation, Chengdu, China, July 2017, Paper ID: 362 Ferreira FB, Indraratna B (2017) Deformation and degradation response of railway ballast under impact loading—effect of artificial inclusions. In: First international conference on rail transportation, Chengdu, China, July 2017, Paper ID: 362
10.
Zurück zum Zitat Ferreira TM, Teixeira PF, Cardoso R (2012) Impact of bituminous subballast on railroad track deformation considering atmospheric actions. J Geotech Geoenviron Eng 137(3):288–292CrossRef Ferreira TM, Teixeira PF, Cardoso R (2012) Impact of bituminous subballast on railroad track deformation considering atmospheric actions. J Geotech Geoenviron Eng 137(3):288–292CrossRef
11.
Zurück zum Zitat Frederick CO, Round DJ (1985) Vertical track loading. Track Technology. Thomas Telford, London, pp 135–149 Frederick CO, Round DJ (1985) Vertical track loading. Track Technology. Thomas Telford, London, pp 135–149
12.
Zurück zum Zitat Hussaini SKK, Indraratna B, Vinod JS (2016) A laboratory investigation to assess the functioning of railway ballast with and without geogrids. Transp Geotech 6:45–54CrossRef Hussaini SKK, Indraratna B, Vinod JS (2016) A laboratory investigation to assess the functioning of railway ballast with and without geogrids. Transp Geotech 6:45–54CrossRef
13.
Zurück zum Zitat Indraratna B (2016) Railroad performance with special reference to ballast and substructure characteristics. 1st Proctor Lecture of ISSMGE. Transp Geotech 7:74–114CrossRef Indraratna B (2016) Railroad performance with special reference to ballast and substructure characteristics. 1st Proctor Lecture of ISSMGE. Transp Geotech 7:74–114CrossRef
14.
Zurück zum Zitat Indraratna B, Hussaini SKK, Vinod JS (2012) On the shear behaviour of ballast-geosynthetic interfaces. Geotech Test J 35(2):1–8 Indraratna B, Hussaini SKK, Vinod JS (2012) On the shear behaviour of ballast-geosynthetic interfaces. Geotech Test J 35(2):1–8
15.
Zurück zum Zitat Indraratna B, Lackenby J, Christie D (2005) Effect of confining pressure on the degradation of ballast under cyclic loading. Geotechnique 55(4):325–328CrossRef Indraratna B, Lackenby J, Christie D (2005) Effect of confining pressure on the degradation of ballast under cyclic loading. Geotechnique 55(4):325–328CrossRef
16.
Zurück zum Zitat Indraratna B, Navaratnarajah SK, Nimbalkar S, Rujikiatkamjorn C (2014) Use of shock mats for enhanced stability of railroad track foundations. Aust Geomech J 49(4):101–110 Indraratna B, Navaratnarajah SK, Nimbalkar S, Rujikiatkamjorn C (2014) Use of shock mats for enhanced stability of railroad track foundations. Aust Geomech J 49(4):101–110
17.
Zurück zum Zitat Indraratna B, Ngo N, Nimbalkar S, Rujikiatkamjorn C (2018a) Two decades of advancement in process simulation testing of ballast strength, deformation, and degradation. Railroad Ballast Testing and Properties, ASTM STP1605. Stark RSTD, Swan Jr RF (Eds). ASTM International, West Conshohocken, pp 1–28. http://dx.doi.org/10.1520/STP160520170029 CrossRef Indraratna B, Ngo N, Nimbalkar S, Rujikiatkamjorn C (2018a) Two decades of advancement in process simulation testing of ballast strength, deformation, and degradation. Railroad Ballast Testing and Properties, ASTM STP1605. Stark RSTD, Swan Jr RF (Eds). ASTM International, West Conshohocken, pp 1–28. http://​dx.​doi.​org/​10.​1520/​STP160520170029 CrossRef
18.
Zurück zum Zitat Indraratna B, Ngo NT, Rujikiatkamjorn C (2011) Behavior of geogrid-reinforced ballast under various levels of fouling. Geotext Geomembr 29(3):313–322CrossRef Indraratna B, Ngo NT, Rujikiatkamjorn C (2011) Behavior of geogrid-reinforced ballast under various levels of fouling. Geotext Geomembr 29(3):313–322CrossRef
19.
Zurück zum Zitat Indraratna B, Ngo NT, Rujikiatkamjorn C (2013) Deformation of coal fouled ballast stabilized with geogrid under cyclic load. J Geotech Geoenviron Eng 139(8):1275–1289CrossRef Indraratna B, Ngo NT, Rujikiatkamjorn C (2013) Deformation of coal fouled ballast stabilized with geogrid under cyclic load. J Geotech Geoenviron Eng 139(8):1275–1289CrossRef
20.
Zurück zum Zitat Indraratna B, Ngo NT, Rujikiatkamjorn C, Vinod J (2014) Behaviour of fresh and fouled railway ballast subjected to direct shear testing—a discrete element simulation. Int J Geomech ASCE 14(1):34–44CrossRef Indraratna B, Ngo NT, Rujikiatkamjorn C, Vinod J (2014) Behaviour of fresh and fouled railway ballast subjected to direct shear testing—a discrete element simulation. Int J Geomech ASCE 14(1):34–44CrossRef
21.
Zurück zum Zitat Indraratna B, Ngo T (2018) Ballast railroad design: smart-uow approach. CRC Press, LondonCrossRef Indraratna B, Ngo T (2018) Ballast railroad design: smart-uow approach. CRC Press, LondonCrossRef
22.
Zurück zum Zitat Indraratna B, Nimbalkar S, Anantanasakul P, Rujikiatkamjorn C, Neville T (2013b) Performance monitoring of rail tracks stabilized by geosynthetics and shock mats: case studies at Bulli and Singleton in Australia. Geotechnical Special Publication, pp 19–33 Indraratna B, Nimbalkar S, Anantanasakul P, Rujikiatkamjorn C, Neville T (2013b) Performance monitoring of rail tracks stabilized by geosynthetics and shock mats: case studies at Bulli and Singleton in Australia. Geotechnical Special Publication, pp 19–33
23.
Zurück zum Zitat Indraratna B, Nimbalkar S, Christie D, Rujikiatkamjorn C, Vinod J (2010) Field assessment of the performance of a ballasted rail track with and without geosynthetics. J Geotech Geoenviron Eng 136(7):907–917CrossRef Indraratna B, Nimbalkar S, Christie D, Rujikiatkamjorn C, Vinod J (2010) Field assessment of the performance of a ballasted rail track with and without geosynthetics. J Geotech Geoenviron Eng 136(7):907–917CrossRef
24.
Zurück zum Zitat Indraratna B, Nimbalkar SS, Ngo NT, Neville T (2016) Performance improvement of rail track substructure using artificial inclusions—experimental and numerical studies. Transp Geotech 8:69–85CrossRef Indraratna B, Nimbalkar SS, Ngo NT, Neville T (2016) Performance improvement of rail track substructure using artificial inclusions—experimental and numerical studies. Transp Geotech 8:69–85CrossRef
25.
Zurück zum Zitat Indraratna B, Nimbalkar S, Rujikiatkamjorn C (2014) Enhancement of rail track performance through utilisation of geosynthetic inclusions. Geotech Eng J 45(1):17–27 Indraratna B, Nimbalkar S, Rujikiatkamjorn C (2014) Enhancement of rail track performance through utilisation of geosynthetic inclusions. Geotech Eng J 45(1):17–27
26.
Zurück zum Zitat Indraratna B, Qi YJ, Heitor A (2018) Evaluating the properties of mixtures of steel furnace slag, coal wash, and rubber crumbs used as subballast. J Mater Civil Eng 30(1):04017251CrossRef Indraratna B, Qi YJ, Heitor A (2018) Evaluating the properties of mixtures of steel furnace slag, coal wash, and rubber crumbs used as subballast. J Mater Civil Eng 30(1):04017251CrossRef
27.
Zurück zum Zitat Indraratna B, Salim W, Rujikiatkamjorn C (2011) Advanced rail geotechnology—ballasted track. CRC Press, LondonCrossRef Indraratna B, Salim W, Rujikiatkamjorn C (2011) Advanced rail geotechnology—ballasted track. CRC Press, LondonCrossRef
28.
Zurück zum Zitat Indraratna B, Sun Q, Heitor A, Grant J (2018) Performance of rubber tire-confined capping layer under cyclic loading for railroad conditions. J Mater Civ Eng 30(3):06017021CrossRef Indraratna B, Sun Q, Heitor A, Grant J (2018) Performance of rubber tire-confined capping layer under cyclic loading for railroad conditions. J Mater Civ Eng 30(3):06017021CrossRef
29.
Zurück zum Zitat Indraratna B, Sun Q, Ngo NT, Rujikiatkamjorn C (2017) Current research into ballasted rail tracks: model tests and their practical implications. Aust J Struct Eng 18(3):204–220CrossRef Indraratna B, Sun Q, Ngo NT, Rujikiatkamjorn C (2017) Current research into ballasted rail tracks: model tests and their practical implications. Aust J Struct Eng 18(3):204–220CrossRef
30.
Zurück zum Zitat Itasca (2016) Particle flow code in three dimensions (PFC3D). Itasca Consulting Group Inc, Minnesota Itasca (2016) Particle flow code in three dimensions (PFC3D). Itasca Consulting Group Inc, Minnesota
31.
Zurück zum Zitat Jeffs T, Tew GP (1991) A review of track design procedures: sleepers and ballast. Railways of Australia, Melbourne Jeffs T, Tew GP (1991) A review of track design procedures: sleepers and ballast. Railways of Australia, Melbourne
32.
Zurück zum Zitat Jenkins HM, Stephenson JE, Clayton GA, Moorland JW, Lyon D (1974) The effect of track and vehicle parameters on wheel/rail vertical dynamic forces. Railw Eng J 3(1):2–16 Jenkins HM, Stephenson JE, Clayton GA, Moorland JW, Lyon D (1974) The effect of track and vehicle parameters on wheel/rail vertical dynamic forces. Railw Eng J 3(1):2–16
33.
Zurück zum Zitat Kaewunruen S, Remennikov AM (2010) Dynamic crack propagations in prestressed concrete sleepers in railway track systems subjected to severe impact loads. ASCE J Struct Eng 136(6):749–754CrossRef Kaewunruen S, Remennikov AM (2010) Dynamic crack propagations in prestressed concrete sleepers in railway track systems subjected to severe impact loads. ASCE J Struct Eng 136(6):749–754CrossRef
34.
Zurück zum Zitat Li B, Huang MS, Zeng XW (2016) Dynamic behavior and liquefaction analysis of recycled-rubber sand mixtures. J Mater Civ Eng 28(11):04016122CrossRef Li B, Huang MS, Zeng XW (2016) Dynamic behavior and liquefaction analysis of recycled-rubber sand mixtures. J Mater Civ Eng 28(11):04016122CrossRef
35.
Zurück zum Zitat Li D, Hyslip JP, Sussmann TR, Chrismer SM (2016) Railway geotechnics. CRC Press, Boca Raton Li D, Hyslip JP, Sussmann TR, Chrismer SM (2016) Railway geotechnics. CRC Press, Boca Raton
36.
Zurück zum Zitat Lobo-Guerrero S, Vallejo LE (2006) Discrete element method analysis of rail track ballast degradation during cyclic loading. Granul Matter 8(3–4):195–204CrossRef Lobo-Guerrero S, Vallejo LE (2006) Discrete element method analysis of rail track ballast degradation during cyclic loading. Granul Matter 8(3–4):195–204CrossRef
37.
Zurück zum Zitat Marsal RJ (1967) Large scale testing of rockfill materials. J Soil Mech Found Div ASCE 93(2):27–43 Marsal RJ (1967) Large scale testing of rockfill materials. J Soil Mech Found Div ASCE 93(2):27–43
38.
Zurück zum Zitat McDowell GR, Bolton MD (1998) On the micromechanics of crushable aggregates. Geotechnique 48(5):667–679CrossRef McDowell GR, Bolton MD (1998) On the micromechanics of crushable aggregates. Geotechnique 48(5):667–679CrossRef
39.
Zurück zum Zitat McDowell GR, Harireche O, Konietzky H, Brown SF, Thom NH (2006) Discrete element modelling of geogrid-reinforced aggregates. Proc ICE Geotech Eng 159(1):35–48CrossRef McDowell GR, Harireche O, Konietzky H, Brown SF, Thom NH (2006) Discrete element modelling of geogrid-reinforced aggregates. Proc ICE Geotech Eng 159(1):35–48CrossRef
40.
Zurück zum Zitat McDowell GR, Lim WL, Collop AC, Armitage R, Thom NH (2008) Comparison of ballast index tests for railway trackbeds. Geotech Eng 157(3):151–161CrossRef McDowell GR, Lim WL, Collop AC, Armitage R, Thom NH (2008) Comparison of ballast index tests for railway trackbeds. Geotech Eng 157(3):151–161CrossRef
42.
Zurück zum Zitat Navaratnarajah SK, Indraratna B, Ngo NT (2018) Influence of under sleeper pads on ballast behavior under cyclic loading—experimental and numerical Studies. J Geotech Geoenviron Eng 144:04018068CrossRef Navaratnarajah SK, Indraratna B, Ngo NT (2018) Influence of under sleeper pads on ballast behavior under cyclic loading—experimental and numerical Studies. J Geotech Geoenviron Eng 144:04018068CrossRef
43.
Zurück zum Zitat Ngo NT, Indraratna B, Ferreira FB, Rujikiatkamjorn C (2018) Improved performance of geosynthetics enhanced ballast: laboratory and numerical studies. In: Proceedings of the Institution of Civil Engineers-Ground Improvement, pp 1–21CrossRef Ngo NT, Indraratna B, Ferreira FB, Rujikiatkamjorn C (2018) Improved performance of geosynthetics enhanced ballast: laboratory and numerical studies. In: Proceedings of the Institution of Civil Engineers-Ground Improvement, pp 1–21CrossRef
44.
Zurück zum Zitat Ngo NT, Indraratna B, Rujikiatkamjorn C (2014) DEM simulation of the behaviour of geogrid stabilised ballast fouled with coal. Comput Geotech 55:224–231CrossRef Ngo NT, Indraratna B, Rujikiatkamjorn C (2014) DEM simulation of the behaviour of geogrid stabilised ballast fouled with coal. Comput Geotech 55:224–231CrossRef
45.
Zurück zum Zitat Ngo NT, Indraratna B, Rujikiatkamjorn C (2016) Modelling geogrid-reinforced railway ballast using the discrete element method. Transp Geotech 8:86–102CrossRef Ngo NT, Indraratna B, Rujikiatkamjorn C (2016) Modelling geogrid-reinforced railway ballast using the discrete element method. Transp Geotech 8:86–102CrossRef
46.
Zurück zum Zitat Ngo NT, Indraratna B, Rujikiatkamjorn C (2017) Micromechanics-based investigation of fouled ballast using large-scale triaxial tests and discrete element modeling. J Geotech Geoenviron Eng 134(2):04016089CrossRef Ngo NT, Indraratna B, Rujikiatkamjorn C (2017) Micromechanics-based investigation of fouled ballast using large-scale triaxial tests and discrete element modeling. J Geotech Geoenviron Eng 134(2):04016089CrossRef
47.
Zurück zum Zitat Ngo NT, Indraratna B, Rujikiatkamjorn C (2017) Stabilisation of track substructure with geo-inclusions—experimental evidence and DEM simulation. Int J Rail Transp 5(2):63–86CrossRef Ngo NT, Indraratna B, Rujikiatkamjorn C (2017) Stabilisation of track substructure with geo-inclusions—experimental evidence and DEM simulation. Int J Rail Transp 5(2):63–86CrossRef
48.
Zurück zum Zitat Ngo NT, Indraratna B, Rujikiatkamjorn C (2017) A study of the geogrid–subballast interface via experimental evaluation and discrete element modelling. Granul Matter 19(3):54CrossRef Ngo NT, Indraratna B, Rujikiatkamjorn C (2017) A study of the geogrid–subballast interface via experimental evaluation and discrete element modelling. Granul Matter 19(3):54CrossRef
49.
Zurück zum Zitat Ngo NT, Indraratna B, Rujikiatkamjorn C, Biabani MM (2016) Experimental and discrete element modeling of geocell-stabilised subballast subjected to cyclic loading. J Geotech Geoenviron Eng 142(4):04015100CrossRef Ngo NT, Indraratna B, Rujikiatkamjorn C, Biabani MM (2016) Experimental and discrete element modeling of geocell-stabilised subballast subjected to cyclic loading. J Geotech Geoenviron Eng 142(4):04015100CrossRef
50.
Zurück zum Zitat Nguyen TT, Indraratna B (2016) Hydraulic behaviour of parallel fibres under longitudinal flow: a numerical treatment. Can Geotech J 53(7):1081–1092CrossRef Nguyen TT, Indraratna B (2016) Hydraulic behaviour of parallel fibres under longitudinal flow: a numerical treatment. Can Geotech J 53(7):1081–1092CrossRef
51.
Zurück zum Zitat Nimbalkar S, Indraratna B (2016) Improved performance of ballasted rail track using geosynthetics and rubber shockmat. J Geotech Geoenviron Eng 142(8):04016031CrossRef Nimbalkar S, Indraratna B (2016) Improved performance of ballasted rail track using geosynthetics and rubber shockmat. J Geotech Geoenviron Eng 142(8):04016031CrossRef
52.
Zurück zum Zitat Nimbalkar S, Indraratna B, Dash S, Christie D (2012) Improved performance of railway ballast under impact loads using shock mats. J Geotech Geoenviron Eng 138(3):281–294CrossRef Nimbalkar S, Indraratna B, Dash S, Christie D (2012) Improved performance of railway ballast under impact loads using shock mats. J Geotech Geoenviron Eng 138(3):281–294CrossRef
53.
Zurück zum Zitat O’Sullivan C, Cui L, O’Neill C (2008) Discrete element analysis of the response of granular materials during cyclic loading. Soils Found 48(4):511–530CrossRef O’Sullivan C, Cui L, O’Neill C (2008) Discrete element analysis of the response of granular materials during cyclic loading. Soils Found 48(4):511–530CrossRef
54.
Zurück zum Zitat Powrie W, Yang LA, Clayton CRI (2007) Stress changes in the ground below ballasted railway track during train passage. Proc Inst Mech Eng F J Rail Rapid Transit 221:247–261CrossRef Powrie W, Yang LA, Clayton CRI (2007) Stress changes in the ground below ballasted railway track during train passage. Proc Inst Mech Eng F J Rail Rapid Transit 221:247–261CrossRef
55.
Zurück zum Zitat Qi YJ, Indraratna B, Heitor A, Vinod JS (2018) Effect of rubber crumbs on the cyclic behaviour of steel furnace slag and coal wash mixtures. J Geotech Geoenviron Eng 144(2):04017107CrossRef Qi YJ, Indraratna B, Heitor A, Vinod JS (2018) Effect of rubber crumbs on the cyclic behaviour of steel furnace slag and coal wash mixtures. J Geotech Geoenviron Eng 144(2):04017107CrossRef
56.
Zurück zum Zitat Qi Y, Indraratna B, Heitor A, Vinod JS (2018b) The influence of rubber crumbs on the energy absorbing property of waste mixtures. In: Proceedings of the international symposium on geotechnics of transportation infrastructure (ISGTI 2018). New Delhi, India, pp 455–460 Qi Y, Indraratna B, Heitor A, Vinod JS (2018b) The influence of rubber crumbs on the energy absorbing property of waste mixtures. In: Proceedings of the international symposium on geotechnics of transportation infrastructure (ISGTI 2018). New Delhi, India, pp 455–460
57.
Zurück zum Zitat Rochard BP, Schmidt F (2004) Benefits of lower-mass trains for high speed rail operations. Proc Inst Civil Eng Transp 157(1):51–64 Rochard BP, Schmidt F (2004) Benefits of lower-mass trains for high speed rail operations. Proc Inst Civil Eng Transp 157(1):51–64
58.
Zurück zum Zitat Rujikiatkamjorn C, Indraratna B, Ngo NT, Coop M (2012) A laboratory study of railway ballast behaviour under various fouling degree. In: The 5th Asian regional conference on geosynthetics, pp 507–514 Rujikiatkamjorn C, Indraratna B, Ngo NT, Coop M (2012) A laboratory study of railway ballast behaviour under various fouling degree. In: The 5th Asian regional conference on geosynthetics, pp 507–514
59.
Zurück zum Zitat Selig ET, Waters JM (1994) Track geotechnology and substructure management. Thomas Telford, LondonCrossRef Selig ET, Waters JM (1994) Track geotechnology and substructure management. Thomas Telford, LondonCrossRef
60.
Zurück zum Zitat Sol-Sanchez M, Thom NH, Moreno-Navarro F, Rubio-Gamez MC, Airey GD (2015) A study into the use of crumb rubber in railway ballast. Constr Build Mater 75:19–24CrossRef Sol-Sanchez M, Thom NH, Moreno-Navarro F, Rubio-Gamez MC, Airey GD (2015) A study into the use of crumb rubber in railway ballast. Constr Build Mater 75:19–24CrossRef
61.
Zurück zum Zitat Suiker ASJ, Selig ET, Frenkel R (2005) Static and cyclic triaxial testing of ballast and subballast. J Geotech Geoenviron Eng ASCE 131(6):771–782CrossRef Suiker ASJ, Selig ET, Frenkel R (2005) Static and cyclic triaxial testing of ballast and subballast. J Geotech Geoenviron Eng ASCE 131(6):771–782CrossRef
62.
Zurück zum Zitat Sun QD, Indraratna B, Nimbalkar S (2015) Deformation and degradation mechanisms of railway ballast under high frequency cyclic loading. J Geotech Geoenviron Eng 142(1):04015056CrossRef Sun QD, Indraratna B, Nimbalkar S (2015) Deformation and degradation mechanisms of railway ballast under high frequency cyclic loading. J Geotech Geoenviron Eng 142(1):04015056CrossRef
63.
Zurück zum Zitat Sussmann TR, Ruel M, Chrismer SM (2012) Source of ballast fouling and influence considerations for condition assessment criteria. Transportation Research Record: Journal of the Transportation Research Board, Transportation Research Board of the National Academies, No. 2289. Washington, D.C., 2012, pp 87–94 Sussmann TR, Ruel M, Chrismer SM (2012) Source of ballast fouling and influence considerations for condition assessment criteria. Transportation Research Record: Journal of the Transportation Research Board, Transportation Research Board of the National Academies, No. 2289. Washington, D.C., 2012, pp 87–94
64.
Zurück zum Zitat Tennakoon N, Indraratna B, Rujikiatkamjorn C, Nimbalkar S, Neville T (2012) The role of ballast-fouling characteristics on the drainage capacity of rail substructure. Geotech Test J 35(4):1–11CrossRef Tennakoon N, Indraratna B, Rujikiatkamjorn C, Nimbalkar S, Neville T (2012) The role of ballast-fouling characteristics on the drainage capacity of rail substructure. Geotech Test J 35(4):1–11CrossRef
65.
Zurück zum Zitat T.S. 3402 (2001) Specification for supply of aggregates for Ballast. Rail Infrastructure Corporation of NSW, Sydney T.S. 3402 (2001) Specification for supply of aggregates for Ballast. Rail Infrastructure Corporation of NSW, Sydney
66.
Zurück zum Zitat Tutumluer E, Dombrow W, Huang H (2008) Laboratory characterization of coal dust fouled ballast behaviour. In: AREMA 2008 annual conference & exposition, Salt Lake City, UT, USA Tutumluer E, Dombrow W, Huang H (2008) Laboratory characterization of coal dust fouled ballast behaviour. In: AREMA 2008 annual conference & exposition, Salt Lake City, UT, USA
67.
Zurück zum Zitat Tutumluer E, Huang H, Bian X (2012) Geogrid-aggregate interlock mechanism investigated through aggregate imaging-based discrete element modeling approach. Int J Geomech 12(4):391–398CrossRef Tutumluer E, Huang H, Bian X (2012) Geogrid-aggregate interlock mechanism investigated through aggregate imaging-based discrete element modeling approach. Int J Geomech 12(4):391–398CrossRef
68.
Zurück zum Zitat Zheng YF, Kevin SG (2000) Dynamic properties of granulated rubber/sand mixtures. Geotech Test J 23(3):338–344CrossRef Zheng YF, Kevin SG (2000) Dynamic properties of granulated rubber/sand mixtures. Geotech Test J 23(3):338–344CrossRef
Metadaten
Titel
Application of geoinclusions for sustainable rail infrastructure under increased axle loads and higher speeds
verfasst von
Buddhima Indraratna
Fernanda Bessa Ferreira
Yujie Qi
Trung Ngoc Ngo
Publikationsdatum
01.12.2018
Verlag
Springer International Publishing
Erschienen in
Innovative Infrastructure Solutions / Ausgabe 1/2018
Print ISSN: 2364-4176
Elektronische ISSN: 2364-4184
DOI
https://doi.org/10.1007/s41062-018-0174-z

Weitere Artikel der Ausgabe 1/2018

Innovative Infrastructure Solutions 1/2018 Zur Ausgabe