page 1
page 2
page 3
page 4
page 5
page 6
page 7
page 8
page 9
page 10
page 11
page 12
page 13
page 14
page 15
page 16
page 17
page 18
page 19
page 20
page 21
page 22
page 23
page 24
page 25
page 26
page 27
page 28
page 29
page 30
page 31
page 32
page 33
page 34
page 35
page 36
page 37
page 38
page 39
page 40
page 41
page 42
page 43
page 44
page 45
page 46
page 47
page 48
page 49
page 50
page 51
page 52
page 53
page 54
page 55
page 56
page 57
page 58
page 59
page 60
page 61
page 62
page 63
page 64
page 65
page 66
page 67
page 68
page 69
page 70
page 71
page 72
page 73
page 74
page 75
page 76
page 77
page 78
page 79
page 80
page 81
page 82
page 83
page 84
page 85
page 86
page 87
page 88
page 89
page 90
page 91
page 92
page 93
page 94
page 95
page 96
page 97
page 98
page 99
page 100
page 101
page 102
page 103
page 104
page 105
page 106
page 107
page 108
page 109
page 110
page 111
page 112
page 113
page 114
page 115
page 116
page 117
page 118
page 119
page 120
page 121
page 122
page 123
page 124
page 125
page 126
page 127
page 128
page 129
page 130
page 131
page 132
page 133
page 134
page 135
page 136
page 137 page 138
page 139
page 140
page 141
page 142
page 143
page 144
< prev - next > Energy Mechanical Power tech_guidelines_gravity_goods_ropeway (Printable PDF)
Reference and Bibliography
6Annex
Approach for development of agriculture and rural roads, DoLIDAR
Arnold. E. (1967). Theories of suspension bridges. LTD Publishers
DoLIDAR. ( 2004). Technical manual – Long span trail bridge standard
Gyawali, D. and Dixit. A. (2004). Ropeways in Nepal
Hoffmann, K. Recent development in rope drawn urban transport system. Vienna University of
Technology: Institute for engineering design and logistics engineering
International Labour Office (ILO), Advisory Support Information Services and Training (ASIST).
(2000). Guidelines for the design and construction of suspension footbridges
Juli Groups China, Usha Martin, India and Hanes Supply Catalogues
Meeting notes from the meeting with Prof. R.K Ghakkar. (2008) Department of mechanical and
industrial engineering. IIT Roorkie, India
NPC/IUCN. (1993). National Environmental Impact Assessment Guideline. The world Conservation
Union. Kathmandu, Nepal
Practical Action. Community based rural transport interventions. Sri Lanka
Practical Action Nepal Office. Gravity ropeway study tour report. Himanchal/Uttranchal, India
Practical Action Nepal Office. (2007-09). Study reports and visit reports
Practical Action Nepal Office. Technical brief gravity ropeway. Kathmandu, Nepal
Practical Action Nepal Office. (2009). Wire and wire rope test inspection report
Schineiget, Z. Aerial ropeways and funicular railways. Oxford, London: Pergsmon press
Trzesniowski, A. (ND). Wood transport in steep terrain. A paper presented on seminar on
environmentally sound forest roads and wood transport
Zakora, K. M. (1998). Rope stabilisation for wind and moving load effect. Journal of wind engineering
and industrial aerodynamics
IS codes for aerial ropeway for transport of Material (IS 9706:1997),
IS Code for aerial ropeways for transportation of passengers (IS 5229:1998)
Code of Practices for passenger ropeways in New Zealand – 1998 edition
Code of practice on the design, manufacture and installation of Aerial Ropeways –
Hong Kong Government, 2002
British Standard BS 2763:1982. Specification for Round Carbon steel wire for wire Ropes
129