Turbine Inlet Cooling Systems Market - Industry Analysis, Share, Forecast 2022

Transparency Market
Research
Turbine Inlet Cooling Systems Market by Technology (Inlet Fogging Systems,
Mechanical Chillers, and Wet Compression Systems) - Global Industry
Analysis, Size, Share, Growth, Trends and Forecast 2014 - 2022
Published Date
23-Oct-2015
119 Page Report
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Press Release
Mechanical Chillers to Emerge as Preferred Technology in Global Turbine Inlet
Cooling Systems Market
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Turbine Inlet Cooling Systems Market
REPORT DESCRIPTION
Turbine Inlet Cooling Systems Market - Global Industry Analysis, Size, Share, Growth, Trends and
Forecast 2014 - 2022
Transparency Market Research has released a new market report titled Turbine Inlet Cooling Systems Market by
Technology - Global Industry Analysis, Size, Share, Growth, Trends and Forecast, 2014 - 2022. According to this report,
the global turbine inlet cooling systems market stood at US$7.8 bn in 2013 and is anticipated to surpass US$13.1 bn by
2022, at a CAGR of 6% from 2014 to 2022.
Download the Exclusive Report Sample Here :http://www.transparencymarketresearch.com/sample/sample.php?
flag=S&rep_id=5426
The report on the turbine inlet cooling systems market primarily focuses on inlet fogging, mechanical chillers, and wet
compression technologies. Of the three technologies, mechanical chillers is more common and is utilized in a large
number of gas turbines worldwide. Companies such as Mee Industries Inc. and Caldwell Energy have pioneered the inlet
cooling technology and provide complete inlet cooling packages to augment plant output. Increasing incidents of power
shortages due to the drop in turbine efficiencies, especially during the summer season, compel power companies to
install turbine inlet cooling systems. The number of mechanical chiller systems is further expected to grow on account of
increasing adoption of gas-fired power plants globally. As the number of gas-fired power plants increases, the demand
for gas turbine and hence gas turbine inlet cooling systems would increase. The installation of turbine inlet cooling
systems assists plant owners/operators to augment plant output.
Mechanical chillers is one of the most efficient as well as expensive turbine inlet cooling technologies. They can attain a
temperature drop in inlet air of about 45°F, which is higher than most of the available technologies. A mechanical chiller
consists of a compressor that works on steam turbine, natural gas engine, or electric motor. Chiller systems may come
with a thermal energy storage tank for chilled water supply. Overall, the assembly of chiller systems allows them to
provide higher power output enhancement and much lower temperature. Companies such as Stellar Energy and TAS
Energy Inc. have designed complete chiller system packages and are among the leading suppliers of chillers globally.
Decrease in the output of gas turbines, especially during the summer seasons, has compelled power companies to
retrofit their turbines with inlet cooling systems.
Inlet fogging is one of the most widely used methods of evaporative cooling. Inlet fogging systems are easy to install and
low cost as compared to other turbine inlet cooling technologies. Utilization of fogging systems increases the turbine
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Turbine Inlet Cooling Systems Market
output by nearly 10%, making it one of the low cost and effective turbine inlet cooling technologies. Currently, turbine
inlet fogging systems are installed in hundreds of gas turbines all over the world. Mee Industries, Inc. is one of the major
provider of turbine inlet fogging systems and offers inlet cooling solutions globally.
Similar to inlet fogging, wet compression is also an evaporative cooling technology. Wet compression is a complementary
technology utilized to provide added benefits to existing evaporative cooling technologies. In wet compression more fog
is added. The air containing the excess fog enters the compressor in the combustion turbine, where droplets are
evaporated which leads to cooling of air and increase in air mass. However, it is a relatively newer technology and is
costlier than inlet fogging. Companies such as Siemens AG and Caldwell Energy Company Inc. are major providers of wet
compression systems.
Browse the full Turbine Inlet Cooling Systems Market by Technology - Global Industry Analysis, Size, Share, Growth,
Trends and Forecast, 2014 – 2022 report at http://www.transparencymarketresearch.com/turbine-inlet-coolingmarket.html
Key participants in the global turbine inlet cooling systems market include American Moistening Company Inc., Caldwell
Energy Company Inc., Cat Pumps Inc., Humifrio S.L., Mee Industries Inc., Score Energy Limited, Siemens AG, UTC
Technologies Company, Camfil AB, and Baltec IES Pty. Ltd. This report provides an overview of these companies, followed
by their financial revenues, business strategies, and recent developments. Overall, the investment outlook for the
turbine inlet cooling system market is positive globally with a slightly greater preference for mechanical chiller
installations. The global market for inlet cooling systems has been segmented as follows:
Turbine Inlet Cooling Systems Market: Technology Analysis
Inlet Fogging
Mechanical Chillers
Wet Compression
Turbine Inlet Cooling Systems Market: Regional Analysis
North America
-U.S.
-Rest of North America
Europe
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Turbine Inlet Cooling Systems Market
-Turkey
-Italy
-Rest of Europe
Asia Pacific
-China
-Japan
-Australia
-Rest of Asia Pacific
Rest of the World
-GCC Countries
-Iran
-Other countries in Rest of the World
TABLE OF CONTENT
Chapter 1 Preface
Report Description
Market Segmentation
Research Scope
Research Methodology
Section 2 Executive Summary
Global Power Transmission Towers and Cables Market Estimates and Forecasts
Overview
Section 3 Industry Analysis
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Turbine Inlet Cooling Systems Market
Introduction
Value Chain Analysis of Power Transmission Towers and Cables Market
Market Dynamics
Driver 1 – Increasing demand for electricity
Driver 2 – Growing need for replacement of ageing power transmission infrastructure
Driver 3 – Increasing share of renewable energy sources in total power generation mix
Restraint 1 – High initial capital and installation costs
Opportunity 1 – Increasing adoption of newer technologies in power transmission infrastructure
Porter’s Five Forces Analysis
Bargaining power of suppliers
Bargaining power of buyers
Threat of new entrants
Degree of competition
Threat of substitutes
Market Attractiveness Analysis of Power Transmission Towers and Cables Market, 2014
Section 4 Power Transmission Towers and Cables: Type Overview
Global Power Transmission Towers and Cables Market, Revenue Share by Type Segment, 2014 and 2023
Global Power Transmission Towers and Cables Market Estimates and Forecast, By Region, 2014–2023 (Units) (Kms)
Global Power Transmission Towers and Cables Estimates and Forecast, By Region, 2014–2023 (US$ Mn)
Power Transmission Towers: Overview
Global Power Transmission Towers Market Estimates and Forecast, 2014–2023 (Units)
Global Power Transmission Towers Market Estimates and Forecast, 2014–2023 (US$ Mn)
Power Transmission Cables: Overview
Global Power Transmission Cables Market Estimates and Forecast, 2014–2023 (Kms)
Global Power Transmission Cables Market Estimates and Forecast, 2014–2023 (US$ Mn)
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Section 5 Power Transmission Towers and Cables: Regional Overview
Power Transmission Towers and Cables – North America
Power Transmission Towers and Cables Market – North America, 2014 to 2023 (Units) (Kms) (US$ Mn)
U.S. Power Transmission Towers and Cables Market, 2014 to 2023 (US$ Mn)
U.S. Power Transmission Towers and Cables Market, By Type, 2014 to 2023 (Units) (Kms)
Canada Power Transmission Towers and Cables Market, 2014 to 2023 (US$ Mn)
Canada Power Transmission Towers and Cables Market, By Type, 2014 to 2023 (Units) (Kms)
Mexico Power Transmission Towers and Cables Market, 2014 to 2023 (US$ Mn)
Mexico Power Transmission Towers and Cables Market, By Type, 2014 to 2023 (Units) (Kms)
Power Transmission Towers and Cables – Europe
Power Transmission Towers and Cables Market – Europe, 2014 to 2023 (Units) (Kms) (US$ Mn)
CIS Power Transmission Towers and Cables Market, 2014 to 2023 (US$ Mn)
CIS Power Transmission Towers and Cables Market, By Type, 2014 to 2023 (Units) (Kms)
Germany Power Transmission Towers and Cables Market, 2014 to 2023 (US$ Mn)
Germany Power Transmission Towers and Cables Market, By Type, 2014 to 2023 (Units) (Kms)
U.K Power Transmission Towers and Cables Market, 2014 to 2023 (US$ Mn)
U.K Power Transmission Towers and Cables Market, By Type, 2014 to 2023 (Units) (Kms)
Rest of Europe Power Transmission Towers and Cables Market, 2014 to 2023 (US$ Mn)
Rest of Europe Power Transmission Towers and Cables Market, By Type, 2014 to 2023 (Units) (Kms)
Power Transmission Towers and Cables – Asia Pacific
Power Transmission Towers and Cables Market – Asia Pacific, 2014 to 2023 (Units) (Kms) (US$ Mn)
China Power Transmission Towers and Cables Market, 2014 to 2023 (US$ Mn)
China Power Transmission Towers and Cables Market, By Type, 2014 to 2023 (Units) (Kms)
India Power Transmission Towers and Cables Market, 2014 to 2023 (US$ Mn)
India Power Transmission Towers and Cables Market, By Type, 2014 to 2023 (Units) (Kms)
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Rest of Asia Pacific Power Transmission Towers and Cables Market, 2014 to 2023 (US$ Mn)
Rest of Asia Pacific Power Transmission Towers and Cables Market, By Type, 2014 to 2023 (Units) (Kms)
Power Transmission Towers and Cables – Middle East and Africa
Power Transmission Towers and Cables Market – Middle East and Africa, 2014 to 2023 (Units) (Kms) (US$ Mn)
Saudi Arabia Power Transmission Towers and Cables Market, 2014 to 2023 (US$ Mn)
Saudi Arabia Power Transmission Towers and Cables Market, By Type, 2014 to 2023 (Units) (Kms)
South Africa Power Transmission Towers and Cables Market, 2014 to 2023 (US$ Mn)
South Africa Power Transmission Towers and Cables Market, By Type, 2014 to 2023 (Units) (Kms)
Rest of Middle East and Africa Power Transmission Towers and Cables Market, 2014 to 2023 (US$ Mn)
Rest of Middle East and Africa Power Transmission Towers and Cables Market, By Type, 2014 to 2023 (Units)
(Kms)
Power Transmission Towers and Cables – Latin and Central Americas
Power Transmission Towers and Cables Market – Latin and Central Americas, 2014 to 2023 (Units) (Kms) (US$
Mn)
Brazil Power Transmission Towers and Cables Market, 2014 to 2023 (US$ Mn)
Brazil Power Transmission Towers and Cables Market, By Type, 2014 to 2023 (Units) (Kms)
Argentina Power Transmission Towers and Cables Market, 2014 to 2023 (US$ Mn)
Argentina Power Transmission Towers and Cables Market, By Type, 2014 to 2023 (Units) (Kms)
Rest of Latin and Central Americas Power Transmission Towers and Cables Market, 2014 to 2023 (US$ Mn)
Rest of Latin and Central Americas Power Transmission Towers and Cables Market, By Type, 2014 to 2023
(Units) (Kms)
Section 6 Company Profiles
Kalpataru Power Transmission Ltd.
Zhejiang Shengda Steel Tower Co. Ltd.
Nanjing Daji Iron Tower Manufacturing Co. Ltd.
ShanDong DingChang Tower Co. Ltd.
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KEC International Ltd.
Prysmian S.p.A.
Nexans S.A.
General Cable Technologies Corporation
Sumitomo Electric Industries Ltd.
Southwire Company LLC
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Turbine Inlet Cooling Systems Market
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Global Turbine Inlet Cooling Systems Market stood at US$7.8 bn in 2013 and is anticipated to surpass US$13.1 bn by 2022, at a CAGR of 6% from 2014 to 2022