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Transmission Tower & Tele Communication Tower with Galvanizing Plant - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study

The purpose of a transmission line tower is to support conductors carrying electrical power and one or two ground wires at suitable distances above the ground level and from each other. A transmission line tower is a space-frame and high order indeterminate structure. Its cost is influenced by its weight. Reliability of a transmission structure depends not only upon its design, but also on the development of structural arrangement, detailing of connections, uniformity of quality of structural sections, accurate fabrication, erection in the field and ultimately maintenance. Transmission lines are subjected to various loads during their lifetime. These loads are classified into climatic loads, failure containment loads and construction and maintenance loads. Proper fabrication while maintaining permissible tolerance, galvanizing and testing of towers are very essential. An economical foundation design and proper erection techniques are also very vital for the safety of the tower. The demand is growing for mobile telephony towers. There is an increasing demand for telecom towers in rural/semi-urban areas as the penetration is still very low. The demand for telecom towers is also a function of steadily growing subscriber base and higher usage time of subscribers. India would have an estimated 42.5 crore mobile subscribers by 2010, creating a demand for 4.5 lakh base transmission stations, with major demand coming from rural areas. There is a good scope for new entrants.
Plant capacity: 24,000 MT /YearPlant & machinery: 149 Lakhs
Working capital: -T.C.I: Cost of Project : 716 Lakhs
Return: 46.00%Break even: 53.00%
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Transmission Towers & Tele Communication Towers With Galvanizing Plant - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study

A transmission tower (colloquially termed an electricity pylon in the United Kingdom and parts of Europe, an ironman in Australia, and a hydro tower in English Canada) is a tall structure, usually a steel lattice tower, used to support an overhead power line. They are used in high voltage AC and DC systems, and come in a wide variety of shapes and sizes. Typical height ranges from 15 to 55 metres (49 to 180 ft), though the tallest are the 370 m (1,214 ft) towers of a 2700 metres long span of Zhoushan Island Overhead Powerline Tie. In addition to steel, other materials may be used, including concrete and wood. The products of the Proposed Fabrication units are covered by well designed and fabricated structures for a. state electricity boards for the purposes of electricity supply (i,e) a) power transmission Towers, TV and Radio Towers, Telecommunication Towers, b) Railway and Highway bridges etc. c. Industrial structures etc. Some transmission towers combine these basic functions. Transmission towers and their overhead power lines are often considered to be a form of visual pollution. Methods to reduce the visual impact include undergrounding. Tower structures can be classified by the way in which they support the line conductors. Suspension structures support the conductor vertically using suspension insulators. . Strain structures resist net tension in the conductors and the conductors attach to the structure through strain insulators. Dead end structures support the full weight of the conductor and also all the tension in it, and also use strain insulators. Where the conductors are straight, a tangent tower is used. Angle towers are used where a line must change direction. Structures are classified as tangent suspension, angle suspension, tangent strain, angle strain, tangent dead end and angle dead end.
Plant capacity: 144 MT /day Plant & machinery: 11576 Lakh
Working capital: -T.C.I: Cost of Project : 15505 lakh
Return: 22.45%Break even: 42.26%
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Transmission Towers & Tele Communication Towers With Galvanizing Plant - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study

A transmission tower (colloquially termed an electricity pylon in the United Kingdom and parts of Europe, an ironman in Australia, and a hydro tower in English Canada) is a tall structure, usually a steel lattice tower, used to support an overhead power line. They are used in high-voltage AC and DC systems, and come in a wide variety of shapes and sizes. Typical height ranges from 15 to 55 metres (49 to 180 ft), though the tallest are the 370 m (1,214 ft) towers of a 2700 metres long span of Zhoushan Island Overhead Powerline Tie. In addition to steel, other materials may be used, including concrete and wood. Uses & Applications The products of the Proposed Fabrication units are covered by Well designed and fabricated structures for a. state electricity boards for the purposes of electricity supply (i,e) a) power transmission Towers, TV and Radio Towers, Telecommunication Towers, b) Railway and Highway bridges etc. c. Industrial structures etc. Four major functions of transmission towers are in use: Suspension Towers, Terminal Tower, Tension Towers & Transposition Tower. Market Survey The Indian market has also the potential to generate 150,000 MW of hydro power. The Vadodara facility received fresh investments of about USD 30 mn with a scalable manufacturing capacity that currently stands at 1500 MW per annum. The Vadodara facility is one of the three largest hydro equipments facilities in the world. With the fast development of cellular telephones, a completely new segment of tower industry has emerged. The demand has increased precipitately in sympathy with the galloping expansion of cellular telephones.
Plant capacity: 24000 Mt/ Annum Plant & machinery: 163 Lakhs
Working capital: -T.C.I: Cost of Project : 833 Lakhs
Return: 45.00%Break even: 43.00%
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Transmission Tower & Tele Communication Tower with Galvanizing Plant - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study

A transmission tower (colloquially termed an electricity pylon in the United Kingdom and parts of Europe, an ironman in Australia, and a hydro tower in English Canada) is a tall structure, usually a steel lattice tower, used to support an overhead power line. They are used in high-voltage AC and DC systems, and come in a wide variety of shapes and sizes. Typical height ranges from 15 to 55 metres (49 to 180 ft), though the tallest are the 370 m (1,214 ft) towers of a 2700 metres long span of Zhoushan Island Overhead Powerline Tie. In addition to steel, other materials may be used, including concrete and wood. The products are covered by Well-designed and fabricated structures for state electricity boards for the purposes of electricity supply (i,e) a) power transmission Towers, TV and Radio Towers, Telecommunication Towers, b) Railway and Highway bridges etc. c. Industrial structures etc. Transmission towers constitute a major component of infrastructure for the power sector. These carry the load of power conductors. With the expansion of power generation, the length of transmission and distribution lines has also gone up. Any entrepreneur venture into this field will be successful. Few Indian Major Players are as under • Associated Transrail Structures Ltd. • Baroda Power Transmission Ltd. • Diamond Power Infrastructure Ltd. • Gammon India Ltd. • Hirakud Industrial Works Ltd. • Jyoti Structures Ltd. • K E C International Ltd. • Kalpataru Power Transmission Ltd. • Larsen & Toubro Ltd. • R P G Transmission Ltd. • Shrijee Heavy Projects Works Ltd. • Suzlon Towers & Structures Ltd. • Tata Projects Ltd. • Transpower Engineering Ltd. • Transrail Lighting Ltd. • Unitech Power Transmission Ltd.
Plant capacity: Transmission & Tele Communication Tower: 80 MT/ DayPlant & machinery: Rs 239 Lakhs
Working capital: -T.C.I: Cost of Project: Rs 1309 Lakhs
Return: 28.00%Break even: 46.00%
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