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International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 07 Issue: 03 | Mar 2020 www.irjet.net p-ISSN: 2395-0072
© 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 1701
WATER CONSERVATION: RAIN WATER HARVESTING PROJECT FOR
COLLEGE CAMPUS
Mr. S.S. Shinde1, Prof P.A. Hangargekar2
1ME Student, Department of Civil Engineering, ShriTuljaBhavani College of Engineering Tuljapur, India
2Assistant Professor, Department of Civil Engineering, ShriTuljaBhavani College Of Engineering, Tuljapur, India
---------------------------------------------------------------------***----------------------------------------------------------------------
Abstract: The paper discusses rainwater-harvesting
implementation at an educational institute from rural part of
Maharashtra. The authors have carried out theresearchwork
in the year 2018-19 & 2020. The selected institute belongs to
an drought prone area hence it is considered to be useful
research for the water conservation efforts taken by
government and other private entities. Initially all relevant
data has been collected through variousverifiablesourcesand
is used for optimization of rainwaterharvestingtask. Thedata
collected was number of Students, no of bore well, roof area,
average rainfall and coefficient of runoff. Then productofroof
area, average rainfall and coefficient of runoff etc. The
implementation part is helpful for minimizing the duplication
of ground water table. The ultimate aim of the work is to
reduce the dependency of occupants on other waterresources.
Key Words: Rainwater harvesting, Quantityofrainwater
collection, Bore well recharge.
1. INTRODUCTION
Rain water harvesting is well-known system for water
conservation. In the present work rain water is collected
from roof top of all buildings of an engineering college
Tuljapur Dist. Osmanabad (India). This area falls under hot
and dry climate zone and Osmanabad district is drought
prone district of Maharashtra state.Waterscarcityisexisting
in hot summer season for four months every year. The
rainfall intensity is varying every year from 400 mm to 900
mm from past data. It’s important to increase availability of
water in summer season the collection storage and well
recharge are technique implemented in this paper. The
following graphs shows the location of Tuljapur in
Maharashtra state.
Fig. 1 location of Tuljapur City.
2. Literature Review
(Morey et al., 2016) they publish a paper, “Rain Water
Harvesting System”, in April 2016, evaluated that Over the
years of the rising population practicesthatincreasedemand
of water supply have growingindustriesandtheexpansionof
agricultural.
(College, 2013) published paper, “Rooftop Rain Water
Harvesting for Groundwater Recharge inan Educational
Complex”,in 2013,they evaluate the rainwater harvesting
locally collects and stores rainfall through different
technologies, for future use to meet the demands of human
consumption or human activities.
(Julius et al., 2013), publish paper on, “Rainwater Harvesting
(RWH) - A Review”, in Aug 2013, stated that As the world
population increases, the demand increases for quality
drinking water.Surfaceandgroundwaterresourcesarebeing
utilized faster than they can be recharged.
(Mahajan et al., 2016) “Economic Aspects Of Rainwater
Harvesting, A Case Study On D.Y.Patil Knowledge City” in Dec
2016, studied that the proper plan and assessment of awater
collecting framework is important to enhance framework
execution and the soundness of the water supply. The
principle plan parameters of a water gathering framework
are precipitation,catchmentrange,accumulationproficiency,
tank volume and water request. Its operational parameters
incorporate water utilize effectiveness, water sparing
proficiency and cycle number.
(Access et al., 2011) in research article, “Rain Water
Harvesting and Ground Water Recharging in North Western
HimalayanRegion forSustainableAgriculturalProductivity”,in
2010reveals the study of low cost traditional water
harvesting structures that helps in improving thesocio-
economic status of the poor farmers of the hill region. In the
foothill region of North Western Himalayan region of India,
the soil erosion has converted most of the fertile soils into
barren, fallow and degraded lands.
3. Methodology:
As a part of background information rainfall details of
Osmanabad have been collected. The following figureshows
four zones as zone-I high rainfall, zone-II transition zone,
zone-III average rainfall, zone -IV assure rainfall zone. The
osmanabad district under zone IV.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 07 Issue: 03 | Mar 2020 www.irjet.net p-ISSN: 2395-0072
© 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 1702
Fig. 2Rainfall zones in Maharashtra state
Fig 3.Graphical representation of average annual
rainfall of Tuljapur City.
The following figure shows the layoutplanofcollegecampus
building and hostel buildings rainwaterfromrooftopistobe
collected from all buildings. Tis covers land area of 17.22
Acers.
Fig 4. Details of rainwater harvesting plan for building
of Shri. Tuljabhavaniengineering college Tuljapur
Fig 5. Details of rainwater harvesting plan for building of
Shri. Tuljabhavani engineering college Tuljapur.
3.1 The runoff coefficient for various catchment.
Table -1: Runoff Calculation
Sr.
No.
Name of
Department
Roof
Area
Qty of rain
water collected
in lit
1
Administrativ
e Building 1296 838317.6
2
Library
Building 577.55 373588.21
3
EC and ETC
Building 586.48 379364.588
4
Mechanical
Building 621 401693.85
5 Civil Building 555.72 359467.48
6
Fluid
Mechanics
Building 587.44 378045.014
7
Workshop
Building
1646.3
9 1064967.37
8
Sport
Building 107.33 69426.41
9
Computer
Centre 173.82 112435.46
10
Boy’s hostel
No 1 657.54 212664.87
11
Boy’s hostel
No 2 657.54 425329.74
12
Girl’s Hostel
(old) 650 420452.5
13
Girl’s Hostel
(New) 555.30 359195
Total 5394948
3.2 Water Use:
The collected rainwater from roof top is send to recharge of
tube well in front of Administrative buildings and remaining
part is stored in RCC tank of 1,00,000 Ltr. Capacity.
Constructed at back end of civil engineering near computer
centre since the natural slopeof all campus comes at this one
site.This water storage tank is covered with steel BCR mesh
along with green coloured net shade for this cover will
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 07 Issue: 03 | Mar 2020 www.irjet.net p-ISSN: 2395-0072
© 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 1703
control rate of evaporation and will stop entry of leaves and
other materials into water tank.The complete cost of project
2857974rs.The pay back periodperiod of these project
calculated based uponcostofwaterprovidedbywatertanker
at Rs 100 / 1000 ltrs.
4. Result & Discussion:
The total rain water collected in rainyseasonis5394948ltrs.
Considering 5 % of water for initial cleaning. The reaming
water is distributed for well recharge 2697474 Ltrs. And
water storage purpose 2697474 Ltrs.
The rain water from hotels 1417642 Ltrs.Can be stored for
summer season. It’s uses can be reduced by controlling it’s
supply and water pressure.
5. Conclusion:
The rainwater harvesting of college campus carried out in
this work shows that rainwater can be successfully utilized
for it’s uses in summer season. The project pay back period
is 2 years. This route project is feasible and commercially
visible option for water conservation.
6. REFERENCES
1) Access, O., Kumar, R., Thaman, S., Agrawal, G., Poonam,
S., Campus, S., & Specilist, J. E. (2011). Rain Water
Harvesting and Ground Water Recharging in North
Western Himalayan Region for Sustainable Agricultural
Productivity Abstract : 1(4), 539–544.
2) College, S. S. V. P. S. B. S. D. (2013). Rooftop Rain Water
Harvesting for Groundwater. 13(1).
3) Julius, J. R., Prabhavathy, R. A., & Ravikumar, G. (2013).
RAINWATER HARVESTING (RWH) - A REVIEW. 4(8),
276–282.
4) Mahajan, S. R., Waghmare, P. A. P., Ashish, P., Pg, P. W.,
Engg, C., & Soet, D. Y. P. (2016). Economic Aspects Of
Rainwater Harvesting, A Case Study On D . Y . Patil
Knowledge City. 1228–1232.
5) Morey, A., Dhurve, B., Haste, V., & Wasnik, B. (2016).
Rain water harvesting system. 2158–2162.

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  • 1. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 07 Issue: 03 | Mar 2020 www.irjet.net p-ISSN: 2395-0072 © 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 1701 WATER CONSERVATION: RAIN WATER HARVESTING PROJECT FOR COLLEGE CAMPUS Mr. S.S. Shinde1, Prof P.A. Hangargekar2 1ME Student, Department of Civil Engineering, ShriTuljaBhavani College of Engineering Tuljapur, India 2Assistant Professor, Department of Civil Engineering, ShriTuljaBhavani College Of Engineering, Tuljapur, India ---------------------------------------------------------------------***---------------------------------------------------------------------- Abstract: The paper discusses rainwater-harvesting implementation at an educational institute from rural part of Maharashtra. The authors have carried out theresearchwork in the year 2018-19 & 2020. The selected institute belongs to an drought prone area hence it is considered to be useful research for the water conservation efforts taken by government and other private entities. Initially all relevant data has been collected through variousverifiablesourcesand is used for optimization of rainwaterharvestingtask. Thedata collected was number of Students, no of bore well, roof area, average rainfall and coefficient of runoff. Then productofroof area, average rainfall and coefficient of runoff etc. The implementation part is helpful for minimizing the duplication of ground water table. The ultimate aim of the work is to reduce the dependency of occupants on other waterresources. Key Words: Rainwater harvesting, Quantityofrainwater collection, Bore well recharge. 1. INTRODUCTION Rain water harvesting is well-known system for water conservation. In the present work rain water is collected from roof top of all buildings of an engineering college Tuljapur Dist. Osmanabad (India). This area falls under hot and dry climate zone and Osmanabad district is drought prone district of Maharashtra state.Waterscarcityisexisting in hot summer season for four months every year. The rainfall intensity is varying every year from 400 mm to 900 mm from past data. It’s important to increase availability of water in summer season the collection storage and well recharge are technique implemented in this paper. The following graphs shows the location of Tuljapur in Maharashtra state. Fig. 1 location of Tuljapur City. 2. Literature Review (Morey et al., 2016) they publish a paper, “Rain Water Harvesting System”, in April 2016, evaluated that Over the years of the rising population practicesthatincreasedemand of water supply have growingindustriesandtheexpansionof agricultural. (College, 2013) published paper, “Rooftop Rain Water Harvesting for Groundwater Recharge inan Educational Complex”,in 2013,they evaluate the rainwater harvesting locally collects and stores rainfall through different technologies, for future use to meet the demands of human consumption or human activities. (Julius et al., 2013), publish paper on, “Rainwater Harvesting (RWH) - A Review”, in Aug 2013, stated that As the world population increases, the demand increases for quality drinking water.Surfaceandgroundwaterresourcesarebeing utilized faster than they can be recharged. (Mahajan et al., 2016) “Economic Aspects Of Rainwater Harvesting, A Case Study On D.Y.Patil Knowledge City” in Dec 2016, studied that the proper plan and assessment of awater collecting framework is important to enhance framework execution and the soundness of the water supply. The principle plan parameters of a water gathering framework are precipitation,catchmentrange,accumulationproficiency, tank volume and water request. Its operational parameters incorporate water utilize effectiveness, water sparing proficiency and cycle number. (Access et al., 2011) in research article, “Rain Water Harvesting and Ground Water Recharging in North Western HimalayanRegion forSustainableAgriculturalProductivity”,in 2010reveals the study of low cost traditional water harvesting structures that helps in improving thesocio- economic status of the poor farmers of the hill region. In the foothill region of North Western Himalayan region of India, the soil erosion has converted most of the fertile soils into barren, fallow and degraded lands. 3. Methodology: As a part of background information rainfall details of Osmanabad have been collected. The following figureshows four zones as zone-I high rainfall, zone-II transition zone, zone-III average rainfall, zone -IV assure rainfall zone. The osmanabad district under zone IV.
  • 2. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 07 Issue: 03 | Mar 2020 www.irjet.net p-ISSN: 2395-0072 © 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 1702 Fig. 2Rainfall zones in Maharashtra state Fig 3.Graphical representation of average annual rainfall of Tuljapur City. The following figure shows the layoutplanofcollegecampus building and hostel buildings rainwaterfromrooftopistobe collected from all buildings. Tis covers land area of 17.22 Acers. Fig 4. Details of rainwater harvesting plan for building of Shri. Tuljabhavaniengineering college Tuljapur Fig 5. Details of rainwater harvesting plan for building of Shri. Tuljabhavani engineering college Tuljapur. 3.1 The runoff coefficient for various catchment. Table -1: Runoff Calculation Sr. No. Name of Department Roof Area Qty of rain water collected in lit 1 Administrativ e Building 1296 838317.6 2 Library Building 577.55 373588.21 3 EC and ETC Building 586.48 379364.588 4 Mechanical Building 621 401693.85 5 Civil Building 555.72 359467.48 6 Fluid Mechanics Building 587.44 378045.014 7 Workshop Building 1646.3 9 1064967.37 8 Sport Building 107.33 69426.41 9 Computer Centre 173.82 112435.46 10 Boy’s hostel No 1 657.54 212664.87 11 Boy’s hostel No 2 657.54 425329.74 12 Girl’s Hostel (old) 650 420452.5 13 Girl’s Hostel (New) 555.30 359195 Total 5394948 3.2 Water Use: The collected rainwater from roof top is send to recharge of tube well in front of Administrative buildings and remaining part is stored in RCC tank of 1,00,000 Ltr. Capacity. Constructed at back end of civil engineering near computer centre since the natural slopeof all campus comes at this one site.This water storage tank is covered with steel BCR mesh along with green coloured net shade for this cover will
  • 3. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 07 Issue: 03 | Mar 2020 www.irjet.net p-ISSN: 2395-0072 © 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 1703 control rate of evaporation and will stop entry of leaves and other materials into water tank.The complete cost of project 2857974rs.The pay back periodperiod of these project calculated based uponcostofwaterprovidedbywatertanker at Rs 100 / 1000 ltrs. 4. Result & Discussion: The total rain water collected in rainyseasonis5394948ltrs. Considering 5 % of water for initial cleaning. The reaming water is distributed for well recharge 2697474 Ltrs. And water storage purpose 2697474 Ltrs. The rain water from hotels 1417642 Ltrs.Can be stored for summer season. It’s uses can be reduced by controlling it’s supply and water pressure. 5. Conclusion: The rainwater harvesting of college campus carried out in this work shows that rainwater can be successfully utilized for it’s uses in summer season. The project pay back period is 2 years. This route project is feasible and commercially visible option for water conservation. 6. REFERENCES 1) Access, O., Kumar, R., Thaman, S., Agrawal, G., Poonam, S., Campus, S., & Specilist, J. E. (2011). Rain Water Harvesting and Ground Water Recharging in North Western Himalayan Region for Sustainable Agricultural Productivity Abstract : 1(4), 539–544. 2) College, S. S. V. P. S. B. S. D. (2013). Rooftop Rain Water Harvesting for Groundwater. 13(1). 3) Julius, J. R., Prabhavathy, R. A., & Ravikumar, G. (2013). RAINWATER HARVESTING (RWH) - A REVIEW. 4(8), 276–282. 4) Mahajan, S. R., Waghmare, P. A. P., Ashish, P., Pg, P. W., Engg, C., & Soet, D. Y. P. (2016). Economic Aspects Of Rainwater Harvesting, A Case Study On D . Y . Patil Knowledge City. 1228–1232. 5) Morey, A., Dhurve, B., Haste, V., & Wasnik, B. (2016). Rain water harvesting system. 2158–2162.