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市場調査レポート
商品コード
1616405
燃焼制御、機器、システムの世界市場規模:製品別、用途別、地域別、範囲および予測Global Combustion Controls, Equipment And Systems Market Size By Product (Components, Thermal Oxidizers, Incinerators), By Application (Process Industries, Metallurgy, Cement Industry), By Geographic Scope And Forecast |
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燃焼制御、機器、システムの世界市場規模:製品別、用途別、地域別、範囲および予測 |
出版日: 2024年08月07日
発行: Verified Market Research
ページ情報: 英文 202 Pages
納期: 2~3営業日
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燃焼制御、機器、システムの市場規模は、2021年に1,317億2,000万米ドルと評価され、2022年から2030年にかけてCAGR 4.61%で成長し、2030年には1,963億4,000万米ドルに達すると予測されています。燃焼制御、機器、システムの世界市場の増加は、燃焼制御、機器、システムは、最先端の汚染制御アプローチと高品質の基準を採用することにより、よりクリーンな環境作りを支援するために作成されています。世界の産業セクターの継続的な上昇と電力ニーズの増大により、より大規模な発電施設の建設が必要となっています。この調査レポートは、燃焼制御、機器、システムの世界市場を総合的に評価します。主要セグメント、動向、市場促進要因、抑制要因、競合情勢、市場で重要な役割を果たしている要因などを包括的に分析しています。
世界の燃焼制御、機器、システム市場の定義
燃焼プロセスは、熱の発生をもたらす酸化剤と燃料の間の複雑な一連の化学的相互作用であり、様々な機器、制御、システムが関与しています。燃焼の結果放出されるエネルギーは、さまざまな用途に利用できます。燃焼によって生み出されるエネルギーは、飛行機やロケットの推進力、発電など、さまざまなものに利用できます。米国エネルギー技術研究所(NETL)によれば、構造材料に最も要求の厳しい用途のひとつは、航空機や産業用発電に使用されるガスタービンエンジンです。
あらゆる種類の材料が、性能と効率の向上への要望が高まるにつれて、より高い温度性能へと押し上げられています。発電に使用される巨大な産業用ガスタービン(IGT)の生産と効率は着実に伸びています。この成長には、高温構造材料の登場が大きく貢献しています。過去30年間で、改良された材料の使用により、ガスタービンの燃焼温度は982℃(1800oF)から1427℃(2600oF)以上に上昇しました。ガスタービンのコンバインドサイクル効率は、燃焼温度が10℃上昇するごとに約1%上昇します。
顧客に最も安いコストで電力を提供しようとする電力会社は、効率を1%向上させることで、数百万米ドルを節約することができます。1425℃(2600oF)以上の温度で燃焼する先進的な産業用ガスタービンには、金属温度を設計限界内に維持するための高度な冷却ソリューションが必要です。航空エンジンは、対流冷却やフィルム冷却の実質的な使用など、部品の温度を必要なレベルに維持するための高度な空冷技術を採用していますが、航空機に搭載しなければならないタービンで利用できる唯一のアプローチであるため、これらの技術に限られています。一方、産業用ガスタービンにはこのような重量制限がないため、バケットやノズルの蒸気冷却など、別の冷却方法を採用することができます。
燃焼制御、機器、システムの世界市場概要
大規模な産業拡大が進む新興国は、追加電力を求める主要なライバルです。世界の燃焼制御、機器、システム市場は、発電能力増強のために行われる大規模な投資、原子力発電に対する反対運動の高まり、揮発性有機化合物(VOC)や有害大気汚染物質(HAP)の排出に関する懸念の高まりが原動力となっています。一方、競争の激化、競争価格、代替品の入手可能性は市場抑制要因として作用します。ドイツやスイスのような国々が原子力発電の廃止を決定し、代替エネルギー源の需要を生み出しているため、世界の燃焼制御、機器、システム市場は成長の余地が大きいです。
これにより、エネルギー生産と管理に必要な燃焼制御装置と機器の需要が増加します。さらに、世界のシェールガス需要の高まりは、燃焼制御、機器、システム業界を前進させる好機と見なされるかもしれないです。サーマルオキシダイザーのコストとその運用は、いずれもかなり高額です。これが市場成長の妨げとなっています。継続的な産業の拡大と電力需要の増加により、世界中で発電施設の建設が必要となっています。この需要は、現在大規模な産業拡大が行われている新興国で特に強いです。
燃焼装置、制御装置、システムの世界市場は、APAC地域の巨大な発電産業によって牽引される可能性が高いです。中国とインドはともに、現在の5カ年計画で発電能力の拡大に大規模な投資を目指しています。米国国立エネルギー技術研究所(NETL)によると、ガスタービンは、発電、石油・ガス、プロセスプラント、航空、家庭や小規模の関連事業などの重要なセクターで、さまざまな様式で使用することができ、現在市場で最も汎用性の高いターボ機械です。ガスタービンは、圧縮空気と燃料を効果的に結合し、圧縮機モジュールで点火します。
その結果生じるガスは、タービンを使って膨張されます。タービンのシャフトは回転し続け、同じシャフト上のコンプレッサーを駆動し、運転が続けられます。タービンの回転が設計速度に達し、ユニット全体の運転を維持できるようになるまでは、別の始動ユニットを使用して最初のローター運動を発生させます。どのようなガスタービンの用途でも、他の産業分野のエンドユーザーに提供できることは多いです。ガスタービンが可変負荷/ピーキング義務に使用されない限り、発電はガスタービンにとって最も要求の低い用途であることが多いです。負荷変動は、機械式駆動装置ではより起こりやすいです。混合油田」(石油・ガス・海水堆積物)の石油・ガス生産の一環として、変化する量の海水を土壌に注入するタービン駆動ポンプは、その一例です。
Combustion Controls, Equipment And Systems Market size was valued at USD 131.72 Billion in 2021 and is projected to reach USD 196.34 Billion by 2030 , growing at a CAGR of 4.61% from 2022 to 2030. The Global Combustion Controls, Equipment and Systems Market Increase due to Combustion controls, equipment, and systems are being created to aid in the creation of a cleaner environment by employing cutting-edge pollution control approaches and high-quality standards. The continual rise of the industrial sector around the world, as well as the ever-increasing need for power, has necessitated the construction of larger electricity-producing facilities. The Global Combustion Controls, Equipment And Systems Market report provides a holistic evaluation of the market. The report offers a comprehensive analysis of key segments, trends, drivers, restraints, competitive landscape, and factors that are playing a substantial role in the market.
Global Combustion Controls, Equipment And Systems Market Definition
The combustion process is a complex series of chemical interactions between an oxidant and a fuel that results in the generation of heat, and it involves a variety of equipment, controls, and systems. The energy released as a result of combustion can be put to a variety of uses. The energy produced by combustion can be used for a variety of things, including airplane and rocket propulsion, power generation. According to The National Energy Technology Laboratory(NETL), One of the most demanding applications for structural materials is gas turbine engines, which are used in both aircraft and industrial power generation.
All kinds of materials are being pushed to higher temperature capabilities as the desire for increased performance and efficiency grows. steady growth in the production and efficiency of huge industrial gas turbines (IGT) used to generate electricity. The emergence of high-temperature structural materials has contributed significantly to this growth. Over the last 30 years, the usage of improved materials has resulted in a rise in gas turbine firing temperature from 982oC (1800oF) to greater than 1427oC (2600oF). The combined-cycle efficiency of a gas turbine increases by around 1% for every 10°C (50°F) increase in the firing temperature.
An electrical power producer trying to offer electricity at the lowest cost to its customers can save millions of dollars by improving efficiency by 1%. Advanced cooling solutions are required for advanced industrial gas turbines firing at temperatures of 1425oC (2600oF) and above to order to keep metal temperatures within design limits While aviation engines have employed advanced air cooling techniques to maintain part temperatures at needed levels, such as substance use of convection and film cooling, they are limited to these techniques because they are the only approaches available for turbines that must be flown aboard airplanes. Industrial gas turbines, on the other hand, do not have these weight restrictions and can thus employ alternate cooling methods, such as steam cooling for buckets and nozzles.
Global Combustion Controls, Equipment And Systems Market Overview
Emerging economies, which are undergoing large-scale industrial expansion, are the leading rivals for additional power. The global Combustion Controls, Equipment And Systems Market has been driven by large investments made to increase the goal of increasing power generation capacities, growing opposition to nuclear power, and rising concerns about volatile organic compounds (VOC) and hazardous air pollution (HAP) emissions. Increased competition, competitive prices, and the availability of substitutes, on the other hand, operate as market restraints. The global Combustion Controls, Equipment And Systems Market have a lot of room for growth because countries like Germany and Switzerland have decided to phase out nuclear power, creating a demand for alternate energy sources.
This will increase the demand for combustion controls and equipment, which are required for energy production and management. Additionally, the rising global demand for shale gas might be viewed as an opportunity, propelling the combustion controls, equipment, and systems industry forward. The cost of a thermal oxidizer and its operation are both quite costly. This factor hampers the growth of the market. Continuous industrial expansion and rising electricity demand have necessitated the construction of more power-producing facilities around the world. This demand is particularly strong in emerging economies that are currently undergoing massive industrial expansion.
The global market for combustion equipment, controls, and systems is likely to be driven by the APAC region's huge power generation industry. China and India both aim to invest extensively in expanding their power generation capacities under their current five-year plans. According to The National Energy Technology Laboratory (NETL), The gas turbine is the most versatile turbomachinery on the market today In vital sectors such as power generation, oil, and gas, process plants, aviation, as well as home and smaller connected businesses, it can be used in a variety of modalities. A gas turbine effectively combines compressed air and fuel, which is subsequently ignited, in its compressor module.
The gases that result are expanded using a turbine. The turbine's shaft continues to rotate, driving the compressor on the same shaft, and the operation continues. Until the turbine's spin gets up to design speed and can keep the entire unit operating, a separate starting unit is utilized to produce the first rotor motion. Any gas turbine application could have a lot to offer end-users in other industrial areas. Unless a gas turbine is employed in variable load/peaking duty, power production is frequently the least demanding application for it. Load swings are more likely with mechanical driving units. Turbine-driven pumps that inject changing volumes of seawater into the soil as part of "mixed field" (oil, gas, and seawater deposits) oil and gas production are one example.
The Global Combustion Controls, Equipment And Systems Market is segmented on the basis of Product, Application, And Geography.
Based on Product, The market is classified into Components, Thermal Oxidizers, Incinerators, Gas Turbines, Systems, and Monitoring & Control Instruments. A thermal oxidizer (also known as a thermal oxidizer or thermal incinerator) is processing equipment used in several industrial facilities to manage air pollution by decomposing dangerous gases at high temperatures and releasing them into the atmosphere. Thermal oxidizers, also known as thermal incinerators, are combustion machines that convert VOC, CO, and volatile HAP emissions to CO2 and water. Catalytic oxidizers are comparable to thermal oxidizers (catalytic oxidizers use a catalyst to promote the oxidation reaction). Thermal (high enough to ignite the organic components in the waste stream), residence time (enough time for the combustion process to take place), and turbulence (mixing of the combustion air with the waste gas) are all crucial design characteristics.
Based on Application, The market is classified into Process Industries, Metallurgy, Cement Industry, Refining & Petrochemicals, Energy & Power, and Aerospace & Marine. In Process Industries Combustion control and burner management systems are the brains of equipment, controlling oxygen trim, surplus air, and burner modulation, among other activities. Control systems provide you visibility into what's going on with equipment and set protections in place to keep employees safe while also ensuring that the equipment runs smoothly. Pacific Combustion Engineering creates, builds, installs, and maintains these reliable control systems.
Our market analysis also entails a section solely dedicated to such major players wherein our analysts provide an insight into the financial statements of all the major players, along with its product benchmarking and SWOT analysis. The competitive landscape section also includes key development strategies, market share, and market ranking analysis of the above-mentioned players globally.