世界の高エネルギー効率モーター市場...市場調査レポートについてご紹介

【英文タイトル】Energy Efficient Motors Market (2013–2018): By Product (Synchronous (Reluctance, Permanent Magnet), Asynchronous (Squirrel Cage, Wound Rotor), DC Motor (Brushless, Brushed)); Type (IE3, IE2, IE1, NEMA); Application (Fans, Pump, HVAC, Compressed Air)

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【レポートの概要(一部)】

TABLE OF CONTENTS

1 INTRODUCTION
1.1 KEY TAKE-AWAYS
1.2 REPORT DESCRIPTION
1.3 MARKETS COVERED
1.4 STAKEHOLDERS
1.5 RESEARCH METHODOLOGY
1.5.1 MARKET SIZE
1.5.2 KEY DATA POINTS TAKEN FROM SECONDARY SOURCES
1.5.3 KEY DATA POINTS TAKEN FROM PRIMARY SOURCES
1.5.4 ASSUMPTIONS MADE FOR THIS REPORT
1.5.5 LIST OF COMPANIES COVERED DURING REPORT

2 EXECUTIVE SUMMARY

3 MARKET OVERVIEW
3.1 MARKET SEGMENTATION
3.2 HISTORY & EVOLUTION OF ENERGY-EFFICIENT MOTORS
3.3 MARKET DYNAMICS
3.3.1 DRIVERS
3.3.1.1 ENERGY COST SAVING
3.3.1.2 INCREASING GOVERNMENT FUNDING
3.3.1.3 HUGE DEMAND FOR GREENHOUSE GAS REDUCTION
3.3.1.4 HUGE DEMAND FROM THE INDUSTRIAL SECTOR
3.3.2 RESTRAINTS
3.3.2.1 HIGH PURCHASING PRICE
3.3.2.2 LACK OF INFORMATION
3.3.2.3 RISK & UNCERTAINTY
3.3.3 OPPORTUNITIES
3.3.3.1 ADOPTION OF THE INTERNATIONAL STANDARDS IN THE DEVELOPING REGIONS
3.3.3.2 EMERGING GREEN FIELD PLANTS IN THE DEVELOPING NATIONS
3.4 WINNING IMPERATIVE
3.4.1 STRICT REGULATIONS ON THE ENERGY STAR RATINGS FOR THE ENERGY APPLIANCES
3.5 BURNING ISSUE
3.5.1 CONFLICTING INCENTIVES FOR THE SUPPLIERS
3.6 PENETRATION & ADOPTION OF ENERGY EFFICIENT MOTORS
3.7 COMPARISON WITH NORMAL MOTORS
3.8 FACTORS AFFECTING THE EFFICIENCY OF MOTORS
3.8.1 VOLTAGE VARIANCE
3.8.2 VOLTAGE UNBALANCE
3.8.3 MOTOR LOAD
3.8.4 TOTAL HARMONIC DISTORTION
3.8.5 POWER FACTOR
3.8.6 LOSSES
3.8.7 LACK OF MAINTENANCE
3.9 INDUSTRY LIFECYCLE
3.10 LIFE CYCLE COST ANALYSIS
3.11 PORTER’S FIVE FORCES
3.11.1 BARGAINING POWER OF BUYERS
3.11.2 BARGAINING POWER OF SUPPLIERS
3.11.3 THREAT OF NEW ENTRANTS
3.11.4 THREAT OF SUBSTITUTES
3.11.5 INTENSITY OF RIVALRY
3.12 VALUE CHAIN ANALYSIS
3.12.1 MATERIALS
3.12.2 MANUFACTURE & ASSEMBLE
3.12.3 SYSTEM INTEGRATION
3.12.4 END-USERS
3.12.5 SUPPORTING INSTITUTIONS
3.13 EFFECT OF ENERGY EFFICIENCY ON MOTOR REPAIR OR REPLACEMENT
3.14 RECENT DEVELOPMENTS OF THE IE STANDARD MOTORS IN VARIOUS REGIONS

4 ENERGY EFFICIENT MOTORS MARKET- BY MOTOR TYPES
4.1 INTRODUCTION
4.2 IE3 OR NEMA STANDARD MOTORS ARE EXPECTED TO HIT IN THE OVERALL MARKET
4.3 DIFFERENT ASPECTS BEHIND THE ADOPTION OF ENERGY EFFICIENT SOLUTIONS
4.4 IE STANDARDS
4.4.1 IE3 STANDARDS EQUIVALENT TO NEMA PREMIUM EFFICIENCY IN U.S.
4.4.2 SUPER PREMIUM – IE4
4.4.3 PREMIUM-IE3
4.4.3.1 IE3 MOTORS OFFER UPTO 95% EFFICIENCY
4.4.3.2 TIME LINE FOR THE IE3 PREMIUM LEVEL MOTORS
4.4.4 HIGH-IE2
4.4.4.1 IE2 EFFICIENCY STANDARDS ADOPTED BY MAJOR COUNTRIES IN EUROPE AND APAC REGION
4.4.4.2 TIME LINE FOR THE IE2 PREMIUM LEVEL MOTORS
4.4.5 STANDARD-IE1
4.5 NEMA PREMIUM ENERGY EFFICIENT MOTORS
4.6 EPACT

5 ENERGY EFFICIENT MOTORS MARKET – BY BASE MATERIALS
5.1 INTRODUCTION
5.2 COMPOSITION OF MATERIALS IN AN ENERGY-EFFICIENT MOTOR FOR REDUCING LOSSES
5.2.1 STATOR LOSSES CONTRIBUTE MORE THAN 66% OF I2R LOSSES
5.2.2 MAGNETIC CORE LOSSES ACCOUNT FOR MORE THAN 20% OF TOTAL LOSSES
5.3 IMPROVED MATERIALS FOR BETTER EFFICIENCY
5.4 COPPER
5.5.1 COPPER HELPS REDUCE ELECTRICAL LOSSES & INCREASES MOTOR EFFICIENCY
5.5 STEEL
5.6 ALUMINUM
5.7 METAL CASTINGS
5.8 ELECTRICAL COMPONENTS AND OTHERS

6 ENERGY EFFICIENT MOTORS MARKET – BY PRODUCT TYPES
6.1 INTRODUCTION
6.2 ASYNCHRONOUS MOTORS CONTINUE TO BE MAJOR MARKET SHARE HOLDER IN TERMS OF SHIPMENTS
6.3 SYNCHRONOUS MOTORS
6.3.1 PERMANENT MAGNET SYNCHRONOUS MOTORS HAVE HIGHER EFFICIENCY THAN THE INDUCTION MOTORS
6.3.2 TYPES OF ENERGY-EFFICIENT SYNCHRONOUS MOTORS
6.3.2.1 RELUCTANCE MOTOR
6.3.2.2 PERMANENT MAGNET MOTOR
6.3.3 MARKET BY APPLICATIONS
6.3.4 MARKET BY END-USERS
6.3.5 MARKET BY GEOGRAPHY
6.4 ASYNCHRONOUS MOTORS
6.4.1 MAJORITY OF IE3 EFFICIENCY CLASS MOTORS ARE ASYNCHRONOUS TYPE
6.4.2 TYPES OF ENERGY-EFFICIENT ASYNCHRONOUS MOTORS
6.4.2.1 SQUIRREL CAGE MOTOR
6.4.2.2 WOUND ROTOR INDUCTION MOTOR
6.4.3 MARKET BY APPLICATIONS
6.4.4 PUMPS CONTRIBUTED MAXIMUM REVENUE TO THE ASYNCHRONOUS EFFICIENT MOTORS MARKET
6.4.5 MARKET BY END-USERS
6.4.6 MARKET BY GEOGRAPHY
6.5 DC MOTORS
6.5.1 THREE WAYS TO IMPROVE THE EFFICIENCY OF A DC MOTOR
6.5.2 TYPES OF ENERGY-EFFICIENT SYNCHRONOUS MOTORS
6.5.2.1 BRUSHLESS PERMANENT MAGNET MOTORS
6.5.2.2 BRUSHED DC MOTORS
6.5.3 TYPES OF ENERGY-EFFICIENT SYNCHRONOUS MOTORS
6.5.3.1 SERIES MOTOR
6.5.3.2 SHUNT MOTOR
6.5.3.3 COMPOUND MOTOR
6.5.3.4 BRUSHED PERMANENT MAGNET MOTOR
6.5.4 MARKET BY APPLICATIONS
6.5.5 MARKET BY END-USERS
6.5.6 MARKET BY GEOGRAPHY

7 ENERGY EFFICIENT MOTORS MARKET- BY APPLICATIONS TYPES
7.1 INTRODUCTION
7.2 PUMPING APPLICATION CONSUMES THE HIGHEST AMOUNT OF ELECTRICITY
7.3 BCG MATRIX FOR THE ENERGY EFFICIENT MOTORS MARKET BY APPLICATION
7.4 TARGET APPLICATIONS OF THE ENERGY EFFICIENT MOTORS MARKET
7.5 HEATING, VENTILATION AND AIR CONDITIONING (HVAC)
7.6 PUMPS
7.6.1 DYNAMIC PUMPS ARE MOST COMMON TYPE OF PUMPS
7.6.2 MARKET BY PRODUCT TYPES
7.6.3 MARKET BY END-USERS
7.6.4 MARKET BY GEOGRAPHY
7.7 FANS
7.7.1 CENTRIFUGAL FANS ARE COMMONLY USED IN VARIOUS END USERS ACTIVITIES
7.7.2 MARKET BY PRODUCT TYPES
7.7.3 MARKET BY END-USERS
7.7.4 MARKET BY GEOGRAPHY
7.8 COMPRESSED AIR
7.8.1 MARKET BY PRODUCT TYPES
7.8.2 MARKET BY END-USERS
7.8.3 MARKET BY GEOGRAPHY
7.9 REFRIGERATION
7.9.1 REFRIGERATION FOR THE INDUSTRIAL PROCESSES ARE LESS EFFICIENT AS COMPARED TO THE DOMESTIC PROCESSES
7.9.2 MARKET BY PRODUCT TYPES
7.9.3 MARKET BY END-USERS
7.9.4 MARKET BY GEOGRAPHY
7.10 MATERIAL HANDLING
7.10.1 MARKET BY PRODUCT TYPES
7.10.2 MARKET BY END-USERS
7.10.3 MARKET BY GEOGRAPHY
7.11 MATERIAL PROCESSING
7.11.1 MARKET BY PRODUCT TYPES
7.11.2 MARKET BY END-USERS
7.11.3 MARKET BY GEOGRAPHY

8 ENERGY EFFICIENT MOTORS MARKET – BY END-USERS
8.1 INTRODUCTION
8.1.1 CATEGORIZATION OF THE APPLICATIONS OF THE MOTORS AMONG DIFFERENT END USERS
8.1.2 AEROSPACE & DEFENSE SECTOR BOOST THE OVERALL MARKET OF ENERGY EFFICIENT MOTORS
8.2 BCG MATRIX FOR THE ENERGY EFFICIENT MOTORS MARKET BY END-USERS
8.3 TARGET END USERS OF THE ENERGY EFFICIENT MOTORS MARKET
8.4 INDUSTRIAL
8.4.1 ELECTRIC MOTORS CONSUME MORE THAN 70% OF ELECTRICITY
8.4.2 MEASURES TO IMPROVE AND MAINTAIN EFFICIENCY OF MOTORS
8.4.3 MARKET BY PRODUCT TYPES
8.4.4 MARKET BY APPLICATIONS
8.4.5 MARKET BY GEOGRAPHY
8.5 COMMERCIAL BUILDINGS
8.5.1 EFFICIENT MOTORS CAN REDUCE 30% TO 50% CONSUMPTION OF ELECTRICITY IN COMMERCIAL BUILDINGS
8.5.2 MARKET BY PRODUCT TYPES
8.5.3 MARKET BY APPLICATIONS
8.5.4 MARKET BY GEOGRAPHY
8.6 RESIDENTIAL
8.6.1 ORIGINAL EQUIPMENT MANUFACTURER (OEM) PLAYS A MAJOR ROLE IN THE VALUE CHAIN
8.6.2 MARKET BY PRODUCT TYPES
8.6.3 MARKET BY APPLICATIONS
8.6.4 MARKET BY GEOGRAPHY
8.7 TRANSPORTATION
8.7.1 ELECTRIC VEHICLES AND HYBRID VEHICLES ARE EXPECTED TO BOOST THE MARKET IN THE TRANSPORTATION SECTOR
8.7.2 MARKET BY PRODUCT TYPES
8.7.3 MARKET BY APPLICATIONS
8.7.4 MARKET BY GEOGRAPHY
8.8 AEROSPACE & DEFENSE
8.8.1 BOEING LEADS THE AVIATION INDUSTRY IN TERMS OF REVENUE
8.8.2 MARKET BY PRODUCT TYPES
8.8.3 MARKET BY APPLICATIONS
8.8.4 MARKET BY GEOGRAPHY
8.9 AGRICULTURAL SECTOR
8.9.1 POTENTIAL SAVINGS IN THE AGRICULTURAL SECTOR IS AROUND $1 BILLION PER YEAR BY USING EFFICIENT MOTORS
8.9.2 MARKET BY PRODUCT TYPES
8.9.3 MARKET BY APPLICATIONS
8.9.4 MARKET BY GEOGRAPHY

9 ENERGY EFFICIENT MOTORS MARKET – BY GEOGRAPHY
9.1 INTRODUCTION
9.2 APAC (EXCLUDING CHINA) IS EXPECTED TO BOOST THE MARKET
9.3 BCG MATRIX FOR THE ENERGY EFFICIENT MOTORS MARKET BY GEOGRAPHY
9.4 NORTH AMERICA
9.4.1 MOTORS DEPLOYED IN CEMENT & PETROLEUM REFINERIES CONSUME MORE THAN 70% OF ELECTRICITY
9.4.2 MARKET BY PRODUCT TYPES
9.4.3 MARKET BY APPLICATIONS
9.4.4 MARKET BY END-USERS
9.5 EUROPE
9.5.1 MOTORS DEPLOYED IN CHEMICAL INDUSTRIES CONSUME MORE THAN 50% OF ELECTRICITY
9.5.2 MARKET BY PRODUCT TYPES
9.5.3 MARKET BY APPLICATIONS
9.5.4 COMPRESSED AIR APPLICATION IS EXPECTED TO HIT IN THE MARKET OF EUROPE
9.5.5 MARKET BY END-USERS
9.6 APAC (EXCLUDING CHINA)
9.6.1 BARRIERS IN ADOPTING THE ENERGY EFFICIENT SOLUTIONS
9.6.2 MARKET BY PRODUCT TYPES
9.6.3 MARKET BY APPLICATIONS
9.6.4 MARKET BY END-USERS
9.7 CHINA
9.7.1 CHINA IS ONE OF THE MAJOR EXPORTERS OF EFFICIENT MOTORS
9.7.2 MARKET BY PRODUCT TYPES
9.7.3 MARKET BY APPLICATIONS
9.7.4 MARKET BY END-USERS
9.8 ROW
9.8.1 CEMENT, PAPER & PULP SECTORS CONSUME MORE THAN 80% OF ELECTRICITY
9.8.2 MARKET BY PRODUCT TYPES
9.8.3 MARKET BY APPLICATIONS
9.8.4 MARKET BY END-USERS
9.9 KEY GROWTH STRATEGIES
9.10 COMPETITIVE SITUATION & TRENDS
9.10.1 NEW PRODUCT DEVELOPMENTS & ANNOUNCEMENTS
9.10.2 AGREEMENTS, PARTNERSHIPS, JOINT VENTURES AND COLLABORATIONS
9.10.3 MERGERS AND ACQUISITIONS

10 COMPANY PROFILES
10.1 ABB LTD.
10.2 BALDOR ELECTRIC COMPANY INC.
10.3 CROMPTON GREAVES
10.4 EMERSON ELECTRIC CO.
10.5 GENERAL ELECTRIC
10.6 HONEYWELL INTERNATIONAL, INC.
10.7 JOHNSON CONTROLS INC.
10.8 KIRLOSKAR ELECTRIC COMPANY
10.9 LEESON ELECTRIC CORPORATION
10.10 MAGNETEK, INC.
10.11 MARATHON ELECTRIC
10.12 MICROCHIP TECHNOLOGY, INC.
10.13 MITSUBISHI ELECTRIC CORPORATION
10.14 NIDEC MOTOR CORPORATION
10.15 POWER EFFICIENCY CORPORATION
10.16 REGAL-BELOIT CORPORATION
10.17 SCHNEIDER ELECTRIC S.A.
10.18 SIEMENS AG
10.19 TOSHIBA CORPORATION
10.20 UQM TECHNOLOGIES, INC.
10.21 WEG S.A.


【レポート販売概要】

■ タイトル:世界の高エネルギー効率モーター市場
■ 英文:Energy Efficient Motors Market (2013–2018): By Product (Synchronous (Reluctance, Permanent Magnet), Asynchronous (Squirrel Cage, Wound Rotor), DC Motor (Brushless, Brushed)); Type (IE3, IE2, IE1, NEMA); Application (Fans, Pump, HVAC, Compressed Air)
■ 発行日:2013年2月
■ 調査会社:MarketsandMarkets
■ 商品コード:SE 1124
■ 調査対象地域:グローバル
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