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The International Journal Of Engineering And Science (IJES)
|| Volume || 4 || Issue || 5 || Pages || PP.05-08 || 2015 ||
ISSN (e): 2319 – 1813 ISSN (p): 2319 – 1805
www.theijes.com The IJES Page 5
An alteration to rapid transit: futristics approach
Abhay Dixit1
Dr. Sanjay Gaur 2
,N.C.Vashitsh3
, Manvender Sharma4
,
-----------------------------------------------------------ABSTRACT----------------------------------------------------------
With the increase in population and less power to provide; it has become an utmost priority to provide solution
to these problems without hindering the environment .this research paper concentrates on altering the existing
rapid transit system also known as metro. The results of this transportation system will produce electricity and
clean water without changing the existing system of rapid transit system
KEYWORDS: rapid transit, electricity, cleans water.
---------------------------------------------------------------------------------------------------------------------------------------
Date of Submission: 04-May-2015 Date of Accepted: 20-May-2015
---------------------------------------------------------------------------------------------------------------------------------------
I. INTRODUCTION:
i. Rapid transit:
The Rapid transit, also known as metro, subway or underground, is a high-capacity public transport
generally found in urban cities. Metro uses electric railways system that operate on an exclusive right-of-way,
which cannot be used by pedestrians or other light and heavy vehicles, and which is constructed separately in
tunnels or on elevated railways.
Modern services on rapid transit systems are provided on selected railway lines between stations
typically using numerous electrical units on rail tracks, while some systems use guided rubber tyres , magnetic
levitation, or monorail. The stations typically have high platforms, without steps inside the trains. They are
typically incorporated with other public transport and often operated by the same public transport authorities,
but does not hinders a fully isolated light rail transit. It has an ability to transport large numbers of people
rapidly over short distances with limited use of land.
ii. Infrastructure:
Most Metro’s are electric multiple units with lengths from 3 to 10cars. Power is commonly delivered
by a third rail or by overhead wires. Most of them run on conventional steel railway tracks, although some also
use rubber tires, for example the Montreal Metro and Mexico City Metro and some lines in the Paris Metro.
Rubber tires allow steeper gradients and a softer ride, but have higher maintenance costs and are less energy
efficient.
iii. Water turbine:
A water turbine is a rotary engine that takes energy from moving water.
Water turbines were developed in the 19th century and were widely used for industrial power prior to electrical
grids. Now they are mostly used for electric power generation. Water turbines are mostly found in dams to
generate electric power from water kinetic energy.
Centrifugal pumps are a sub-class of dynamic axis symmetric work-absorbing turbo machinery.
Centrifugal pumps are used to transport fluids by conversion of rotational kinetic energy to the hydrodynamic
energy of the fluid. The rotational energy basically comes from an engine or electric motor. The fluid enters the
pump impeller along to the rotating axis and is accelerated by the impeller, flowing radially outward into a
diffuser (casing), from where it exits.
1
Author is affiliated to Maharishi Arvind College of Engg. And research centre ,Sirsi road, Jaipur
2
HoD, Civil Dept, Maharishi Arvind College of Engg. And research centre, Sirsi road, Jaipur.
3
Asst professor, Civil Dept, Maharishi Arvind College of Engg. And research centre, Sirsi road, Jaipur.
4
Asst professor, Civil Dept, Maharishi Arvind College of Engg. And research centre, Sirsi road, Jaipur.
An alteration to rapid transit: futristics approach
www.theijes.com The IJES Page 6
II. THEORY:
a circle system of rails are laid down in such an order that the maximum height of one column/pier be
12m(say), is reduc3ed in order to provide a slope & with smallest pier been 8m (say) .the rain water is collected
by the pier top is transmitted to the lowest point where the height of the is less ,which creates a lot of kinetic
energy (due to gravitation), when this water is discharged from pier it creates a lot of amount of head due to
existing kinetic energy and gravitational force it experienced when it is allow to fall down ,which in turn rotates
the blade of the turbine placed at the bottom of the smallest pier.
Let, the actual power available be pa, W be the weight of water equals to 9.810kn/m3
, q equals to discharge, H
equals to gross head
Then,
Pa =wqhno
Where no =overall efficiency of the plant (80%)
Pa=9.81*q*h*no
No=80%
Pa=.80*9.81*q*h
Pa=7.84qh
Therefore,
Available energy E= (7.8484*365*24*) q*h
E= (68748.5) qh
An alteration to rapid transit: futristics approach
www.theijes.com The IJES Page 7
The left over water is after passing through the turbine is stored to use it for daily consumptions, the electricity
so produced and the water collected will be used for daily consumption.
III. PROCEDURE:
 A circle network is adopted to lay tracks for the metro.
 The tallest and the smallest pier are placed at opposite to each other.
 The intermediate pier are so placed that the size of the column increases towards the tallest pier and
reduces towards the smallest pier.
 A water carrying unit mainly an open channel is provide on the pier and beneath the metro tracks in order
to guide the water towards the smallest pier.
 The water from the smallest pier is then allowed to fall down freely under the effect of gravitation force
which will create head over this section.
 The water with high velocity and head falls onto the blades of turbine which rotates the blades of turbine,
thus in this phase the mechanical energy is been created.
 The turbine is coupled with the rotor which converts the mechanical energy to electrical energy.
 The water is then carried to the treatment plant.
 After the treatment of the water, this water can be used for daily consumption.
IV. CONCLUSION:
This method of harvesting water and electricity by altering the design of the metro is useful but the cost
of construction and efficiency is less.
V. ADVANTAGE:
 Creates electricity
 Controls flood
 Provide quality water
VI. DISADVANTAGE:
 Cost of construction is high.
 Less efficient during summer.
REFERENCES:
[1]. a b Wilson 1995, pp. 507f.; Wikander 2000, p. 377; Donners, Waelkens & Deckers 2002, p. 13
[2]. R. Sackett, p. 16.
[3]. Barker Turbine/Hacienda Buena Vista (1853) Nomination. American Society of Mechanical Engineers. Nomination Number
177.
[4]. W. A. Doble, The Tangential Water Wheel, Transactions of the American Institute of Mining Engineers, Vol. XXIX, 1899.
[5]. W. F. Durrand, the Pelton Water Wheel, Stanford University, Mechanical Engineering, 1939.
[6]. Francis hydro turbines
[7]. Fasol, Karl Heinz (August 2002). "A Short History of Hydropower Control". IEEE Control Systems Magazine: 68–76.
Retrieved29 January 2015.
[8]. Cline, Roger:Mechanical Overhaul Procedures for Hydroelectric Units (Facilities Instructions, Standards, and Techniques,
Volume 2-7); United States Department of the Interior Bureau of Reclamation, Denver, Colorado, July 1994 .
[9]. United States Department of the Interior Bureau of Reclamation; Duncan, William (revised April 1989): Turbine Repair
(Facilities Instructions, Standards & Techniques, Volume 2-5)
[10]. Banister, David and Berechman, Joseph (2000). Transport Investment and Economic Development. Routledge. ISBN 0-419-
25590-7.
[11]. Bobrick, Benson (1981). Labyrinths of Iron: a[n] History of the World's Subways. New York: Newsweek Books. ISBN 0-
88225-299-2.
[12]. Cervero, Robert (1998). The Transit Metropolis. Island Press. ISBN 1-55963-591-6.
[13]. European Conference of Ministers of Transport (2003). Safe & Sustainable Transport. Paris: OECD Publishing. ISBN 92-821-
1303-5.
[14]. Fjellstrom, K.; Wright, L. (2002). "Mass Transit Options" (PDF). Sustainable Transport: A Sourcebook for Policy-Makers in
Developing Cities. Deutsche Gesellschaft für Technische Zusammenarbeit. Retrieved 2009-07-09.
[15]. Kjenstad, Rune (1994). På skinner i Bymarka (in Norwegian). Oslo: Baneforlaget. ISBN 82-91448-01-9.
[16]. Ovenden, Mark (2007). Transit Maps of the World. London: Penguin. ISBN 978-0-14-311265-5.
[17]. Needle, Jerome A.; Transportation Security Board and Cobb, Renée M. (1997). Improving Transit Security. Transportation
Security Board. ISBN 0-309-06013-3.
[18]. Strom, Marianne (1998). Metro Art. ACR Edition. ISBN 2-86770-068-X.
[19]. White, Peter (2002). Public Transport: Its Planning, Management, and Operation. Taylor & Francis. ISBN 0-415-25772-7.
[20]. Uslan, Mark; American Foundation for the Blind, Peck, Alec; Wiener, William and Stern, Arlene (1990). Access to Mass
Transit for Blind and Visually Impaired Travelers. American Foundation for the Blind. ISBN 0-89128-166-5.
[21]. Executive ed.: Joseph P. Pickert... (2000). the American Heritage Dictionary of the English Language, Fourth Edition.
Houghton Mifflin Company. ISBN 0-618-08230-1.
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www.theijes.com The IJES Page 8
[22]. Layton, Edwin T. "From Rule of Thumb to Scientific Engineering: James B. Francis and the Invention of the Francis Turbine,"
NLA Monograph Series. Stony Brook, NY: Research Foundation of the State University of New York, 1992
[23]. Shepard, Dennis G. (1956). Principles of Turbo machinery. McMillan. ISBN 0-471-85546-4. LCCN 56002849.
[24]. Reti, Ladislao; Di Giorgio Martini, Francesco (Summer 1963). "Francesco di Giorgio (Armani) Martini's Treatise on
Engineering and Its Plagiarists". Technology and Culture 4 (3): 287–298 (290). Doi: 10.2307/3100858.
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Published by Texas A&M University, Texas, USA.
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Newness. p. 13. ISBN 0750662735. Retrieved 3 April 2015.
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An alteration to rapid transit: futristics approach

  • 1. The International Journal Of Engineering And Science (IJES) || Volume || 4 || Issue || 5 || Pages || PP.05-08 || 2015 || ISSN (e): 2319 – 1813 ISSN (p): 2319 – 1805 www.theijes.com The IJES Page 5 An alteration to rapid transit: futristics approach Abhay Dixit1 Dr. Sanjay Gaur 2 ,N.C.Vashitsh3 , Manvender Sharma4 , -----------------------------------------------------------ABSTRACT---------------------------------------------------------- With the increase in population and less power to provide; it has become an utmost priority to provide solution to these problems without hindering the environment .this research paper concentrates on altering the existing rapid transit system also known as metro. The results of this transportation system will produce electricity and clean water without changing the existing system of rapid transit system KEYWORDS: rapid transit, electricity, cleans water. --------------------------------------------------------------------------------------------------------------------------------------- Date of Submission: 04-May-2015 Date of Accepted: 20-May-2015 --------------------------------------------------------------------------------------------------------------------------------------- I. INTRODUCTION: i. Rapid transit: The Rapid transit, also known as metro, subway or underground, is a high-capacity public transport generally found in urban cities. Metro uses electric railways system that operate on an exclusive right-of-way, which cannot be used by pedestrians or other light and heavy vehicles, and which is constructed separately in tunnels or on elevated railways. Modern services on rapid transit systems are provided on selected railway lines between stations typically using numerous electrical units on rail tracks, while some systems use guided rubber tyres , magnetic levitation, or monorail. The stations typically have high platforms, without steps inside the trains. They are typically incorporated with other public transport and often operated by the same public transport authorities, but does not hinders a fully isolated light rail transit. It has an ability to transport large numbers of people rapidly over short distances with limited use of land. ii. Infrastructure: Most Metro’s are electric multiple units with lengths from 3 to 10cars. Power is commonly delivered by a third rail or by overhead wires. Most of them run on conventional steel railway tracks, although some also use rubber tires, for example the Montreal Metro and Mexico City Metro and some lines in the Paris Metro. Rubber tires allow steeper gradients and a softer ride, but have higher maintenance costs and are less energy efficient. iii. Water turbine: A water turbine is a rotary engine that takes energy from moving water. Water turbines were developed in the 19th century and were widely used for industrial power prior to electrical grids. Now they are mostly used for electric power generation. Water turbines are mostly found in dams to generate electric power from water kinetic energy. Centrifugal pumps are a sub-class of dynamic axis symmetric work-absorbing turbo machinery. Centrifugal pumps are used to transport fluids by conversion of rotational kinetic energy to the hydrodynamic energy of the fluid. The rotational energy basically comes from an engine or electric motor. The fluid enters the pump impeller along to the rotating axis and is accelerated by the impeller, flowing radially outward into a diffuser (casing), from where it exits. 1 Author is affiliated to Maharishi Arvind College of Engg. And research centre ,Sirsi road, Jaipur 2 HoD, Civil Dept, Maharishi Arvind College of Engg. And research centre, Sirsi road, Jaipur. 3 Asst professor, Civil Dept, Maharishi Arvind College of Engg. And research centre, Sirsi road, Jaipur. 4 Asst professor, Civil Dept, Maharishi Arvind College of Engg. And research centre, Sirsi road, Jaipur.
  • 2. An alteration to rapid transit: futristics approach www.theijes.com The IJES Page 6 II. THEORY: a circle system of rails are laid down in such an order that the maximum height of one column/pier be 12m(say), is reduc3ed in order to provide a slope & with smallest pier been 8m (say) .the rain water is collected by the pier top is transmitted to the lowest point where the height of the is less ,which creates a lot of kinetic energy (due to gravitation), when this water is discharged from pier it creates a lot of amount of head due to existing kinetic energy and gravitational force it experienced when it is allow to fall down ,which in turn rotates the blade of the turbine placed at the bottom of the smallest pier. Let, the actual power available be pa, W be the weight of water equals to 9.810kn/m3 , q equals to discharge, H equals to gross head Then, Pa =wqhno Where no =overall efficiency of the plant (80%) Pa=9.81*q*h*no No=80% Pa=.80*9.81*q*h Pa=7.84qh Therefore, Available energy E= (7.8484*365*24*) q*h E= (68748.5) qh
  • 3. An alteration to rapid transit: futristics approach www.theijes.com The IJES Page 7 The left over water is after passing through the turbine is stored to use it for daily consumptions, the electricity so produced and the water collected will be used for daily consumption. III. PROCEDURE:  A circle network is adopted to lay tracks for the metro.  The tallest and the smallest pier are placed at opposite to each other.  The intermediate pier are so placed that the size of the column increases towards the tallest pier and reduces towards the smallest pier.  A water carrying unit mainly an open channel is provide on the pier and beneath the metro tracks in order to guide the water towards the smallest pier.  The water from the smallest pier is then allowed to fall down freely under the effect of gravitation force which will create head over this section.  The water with high velocity and head falls onto the blades of turbine which rotates the blades of turbine, thus in this phase the mechanical energy is been created.  The turbine is coupled with the rotor which converts the mechanical energy to electrical energy.  The water is then carried to the treatment plant.  After the treatment of the water, this water can be used for daily consumption. IV. CONCLUSION: This method of harvesting water and electricity by altering the design of the metro is useful but the cost of construction and efficiency is less. V. ADVANTAGE:  Creates electricity  Controls flood  Provide quality water VI. DISADVANTAGE:  Cost of construction is high.  Less efficient during summer. REFERENCES: [1]. a b Wilson 1995, pp. 507f.; Wikander 2000, p. 377; Donners, Waelkens & Deckers 2002, p. 13 [2]. R. Sackett, p. 16. [3]. Barker Turbine/Hacienda Buena Vista (1853) Nomination. American Society of Mechanical Engineers. Nomination Number 177. [4]. W. A. Doble, The Tangential Water Wheel, Transactions of the American Institute of Mining Engineers, Vol. XXIX, 1899. [5]. W. F. Durrand, the Pelton Water Wheel, Stanford University, Mechanical Engineering, 1939. [6]. Francis hydro turbines [7]. Fasol, Karl Heinz (August 2002). "A Short History of Hydropower Control". IEEE Control Systems Magazine: 68–76. Retrieved29 January 2015. [8]. Cline, Roger:Mechanical Overhaul Procedures for Hydroelectric Units (Facilities Instructions, Standards, and Techniques, Volume 2-7); United States Department of the Interior Bureau of Reclamation, Denver, Colorado, July 1994 . [9]. United States Department of the Interior Bureau of Reclamation; Duncan, William (revised April 1989): Turbine Repair (Facilities Instructions, Standards & Techniques, Volume 2-5) [10]. Banister, David and Berechman, Joseph (2000). Transport Investment and Economic Development. Routledge. ISBN 0-419- 25590-7. [11]. Bobrick, Benson (1981). Labyrinths of Iron: a[n] History of the World's Subways. New York: Newsweek Books. ISBN 0- 88225-299-2. [12]. Cervero, Robert (1998). The Transit Metropolis. Island Press. ISBN 1-55963-591-6. [13]. European Conference of Ministers of Transport (2003). Safe & Sustainable Transport. Paris: OECD Publishing. ISBN 92-821- 1303-5. [14]. Fjellstrom, K.; Wright, L. (2002). "Mass Transit Options" (PDF). Sustainable Transport: A Sourcebook for Policy-Makers in Developing Cities. Deutsche Gesellschaft für Technische Zusammenarbeit. Retrieved 2009-07-09. [15]. Kjenstad, Rune (1994). På skinner i Bymarka (in Norwegian). Oslo: Baneforlaget. ISBN 82-91448-01-9. [16]. Ovenden, Mark (2007). Transit Maps of the World. London: Penguin. ISBN 978-0-14-311265-5. [17]. Needle, Jerome A.; Transportation Security Board and Cobb, Renée M. (1997). Improving Transit Security. Transportation Security Board. ISBN 0-309-06013-3. [18]. Strom, Marianne (1998). Metro Art. ACR Edition. ISBN 2-86770-068-X. [19]. White, Peter (2002). Public Transport: Its Planning, Management, and Operation. Taylor & Francis. ISBN 0-415-25772-7. [20]. Uslan, Mark; American Foundation for the Blind, Peck, Alec; Wiener, William and Stern, Arlene (1990). Access to Mass Transit for Blind and Visually Impaired Travelers. American Foundation for the Blind. ISBN 0-89128-166-5. [21]. Executive ed.: Joseph P. Pickert... (2000). the American Heritage Dictionary of the English Language, Fourth Edition. Houghton Mifflin Company. ISBN 0-618-08230-1.
  • 4. An alteration to rapid transit: futristics approach www.theijes.com The IJES Page 8 [22]. Layton, Edwin T. "From Rule of Thumb to Scientific Engineering: James B. Francis and the Invention of the Francis Turbine," NLA Monograph Series. Stony Brook, NY: Research Foundation of the State University of New York, 1992 [23]. Shepard, Dennis G. (1956). Principles of Turbo machinery. McMillan. ISBN 0-471-85546-4. LCCN 56002849. [24]. Reti, Ladislao; Di Giorgio Martini, Francesco (Summer 1963). "Francesco di Giorgio (Armani) Martini's Treatise on Engineering and Its Plagiarists". Technology and Culture 4 (3): 287–298 (290). Doi: 10.2307/3100858. [25]. Johann Friedrich Gülich , title=centrifugal pump second edition , ISBN 978-3-642-12823-3 ,2010 [26]. Baha Abulnaga (2004). Pumping Oils and Froth (PDF). 21st International Pump Users Symposium, Baltimore, Maryland. Published by Texas A&M University, Texas, USA. [27]. Moniz, Paresh Girdhar, Octo (2004). Practical centrifugal pumps design, operation and maintenance (1. publ. Ed.). Oxford: Newness. p. 13. ISBN 0750662735. Retrieved 3 April 2015. [28]. Larry Bachus, Angle Custodio (2003). Know and understand centrifugal pumps. Elsevier Ltd. ISBN 1856174093. [29]. Pump Handbook: third edition [30]. Pumping Profits & Productivity, The Magic Of Magnetic Drive Pumps: Part I [31]. Fluid mechanics by Frank M White,pg-696,6e