目次
第1章 方法論と範囲
1.1. 調査方法
1.2. 調査範囲と前提
1.3. 情報収集
1.3.1. 購入データベース
1.3.2. GVR社内データベース
1.3.3. 二次情報源
1.3.4. 第三者視点
1.3.5. 一次調査
1.4. 情報分析
1.4.1. データ分析モデル
1.5. 市場の策定とデータの視覚化
1.6. データの検証と公開
第2章 エグゼクティブサマリー
2.1. 市場の見通し
2.2. セグメントの見通し
2.3. 競合他社の洞察
第3章 市場変数、トレンド、および範囲
3.1. 市場のセグメント化と範囲
3.2. 浸透と成長の見通しマッピング
3.3. 業界バリューチェーン分析
3.4. 技術概要
3.5. 規制枠組み
3.6. 市場力学
3.6.1. 市場推進要因分析
3.6.2. 市場抑制要因分析
3.6.3. 市場機会分析
3.6.4. 業界の課題
3.7. 業界分析
3.7.1. ポーターの分析
3.7.2. マクロ経済分析
3.8. 経済のメガトレンド
3.9. 価格分析
3.10. ESG慣行と温風暖房機市場への影響
3.11. ベンダー・マトリクス
3.11.1. 主要コンポーネント・プロバイダーの一覧
3.11.2. 主要メーカーの一覧
3.11.3. 主要販売業者の一覧
第4章 温風暖房機市場:タイプ別予測とトレンド分析
4.1. タイプ別分析および市場シェア、2022年および2030年
4.1.1. 市場予測および予測、2018年~2030年(百万米ドル
4.2. ガス温風暖房機
4.2.1. 市場予測および予測、2018年~2030年(百万米ドル
4.3. 石油温風暖房機
4.3.1. 市場予測と予測、2018年~2030年(百万米ドル)
第5章 温風暖房機市場:用途別予測と傾向分析
5.1. 用途別分析と市場シェア、2022年と2030年
5.1.1. 市場予測と予測、2018年~2030年(百万米ドル)
5.2. 住宅用
5.2.1. 市場予測と予測、2018年~2030年(百万米ドル)
5.3. 商業用
5.3.1. 市場予測と予測、2018年~2030年(百万米ドル)
5.4. 産業用
5.4.1. 市場予測と予測、2018年~2030年(百万米ドル)
第6章 温風暖房炉市場:地域別予測と動向分析
6.1. 地域別市場概観
6.2. 北米
6.2.1. 市場予測と予測、2018年~2030年(百万米ドル)
6.2.2. 米国
6.2.2.1. マクロ経済の見通し
6.2.2.2. 市場予測と見通し、2018年~2030年(百万米ドル)
6.2.3. カナダ
6.2.3.1. マクロ経済の見通し
6.2.3.2. 市場予測と見通し、2018年~2030年(百万米ドル)
6.2.4. メキシコ
6.2.4.1. マクロ経済の見通し
6.2.4.2. 市場予測と予測、2018年~2030年(百万米ドル)
6.3. ヨーロッパ
6.3.1. 市場予測と予測、2018年~2030年(百万米ドル)
6.3.2. ドイツ
6.3.2.1. マクロ経済の見通し
6.3.2.2. 市場予測と予測、2018年~2030年(百万米ドル)
6.3.3. フランス
6.3.3.1. マクロ経済の見通し
6.3.3.2. 市場予測と予測、2018年~2030年(百万米ドル)
6.3.4. イタリア
6.3.4.1. マクロ経済の見通し
6.3.4.2. 市場予測、2018年~2030年(百万米ドル)
6.3.5. スウェーデン
6.3.5.1. マクロ経済の見通し
6.3.5.2. 市場予測、2018年~2030年(百万米ドル)
6.3.6. スペイン
6.3.6.1. マクロ経済の見通し
6.3.6.2. 市場予測、2018年~2030年(百万米ドル)
6.3.7. フィンランド
6.3.7.1. マクロ経済の見通し
6.3.7.2. 市場予測、2018年~2030年(百万米ドル)
6.4. アジア太平洋
6.4.1. 市場予測および予測、2018年~2030年(百万米ドル)
6.4.2. 中国
6.4.2.1. マクロ経済の見通し
6.4.2.2. 市場予測および予測、2018年~2030年(百万米ドル)
6.4.3. 日本
6.4.3.1. マクロ経済の見通し
6.4.3.2. 市場予測、2018年~2030年(百万米ドル)
6.4.4. オーストラリア
6.4.4.1. マクロ経済の見通し
6.4.4.2. 市場予測、2018年~2030年(百万米ドル)
6.4.5. インド
6.4.5.1. マクロ経済の見通し
6.4.5.2. 市場予測、2018年~2030年(百万米ドル)
6.4.6. 韓国
6.4.6.1. マクロ経済の見通し
6.4.6.2. 市場予測、2018年~2030年(百万米ドル)
6.5. 中南米
6.5.1. 市場予測および予測、2018年~2030年(百万米ドル)
6.5.2. ブラジル
6.5.2.1. マクロ経済の見通し
6.5.2.2. 市場予測および予測、2018年~2030年(百万米ドル)
6.5.3. アルゼンチン
6.5.3.1. マクロ経済の見通し
6.5.3.2. 市場予測、2018年~2030年(百万米ドル)
6.6. 中東およびアフリカ
6.6.1. 市場予測、2018年~2030年(百万米ドル)
6.6.2. サウジアラビア
6.6.2.1. マクロ経済の見通し
6.6.2.2. 市場予測と予測、2018年~2030年(百万米ドル)
6.6.3. UAE
6.6.3.1. マクロ経済の見通し
6.6.3.2. 市場予測と予測、2018年~2030年(百万米ドル)
第7章 競合分析
7.1. 主要市場参加者の最近の動向と影響分析
7.2. 企業分類
7.3. 参加者の概要
7.4. 財務概要
7.5. 製品ベンチマーキング
7.6. 企業の市場ポジショニング
7.7. 2022年の企業市場シェア分析
7.8. 企業ヒートマップ分析
7.9. 戦略マッピング
第8章 企業プロフィール
SLB
Ingersoll Rand
Carrier Corporation
Mitsubishi Electric Corporation
Emerson Electric Co.
Ingersoll-Rand Plc
Daikin Industries, Ltd.
Rheem Manufacturing
Lennox International
Johnson Controls, Inc.
Robert Bosch GmbH
Viessmann Group
Goodman Manufacturing
Fujitsu
The global warm air furnace market size is expected to reach USD 10,900.7 million by 2030, registering to grow at a CAGR of 3.4% from 2025 to 2030 according to a new report by Grand View Research, Inc. Increasing construction spending, as well as growing demand for highly energy-efficient heating solutions, are expected to drive demand for warm air furnaces across the globe. Furthermore, favorable government measures such as incentives for the installation of energy-efficient warm air furnaces are expected to benefit the market.
The U.S. construction activity increased by over 6% yearly in 2021 and 2022 after a 1.9% drop in 2020. The demand for single-family homes is the main factor driving the rapid residential construction. The strong demand for home remodeling and upgrading is still present because of increased discretionary household spending. A large portion of this growth will come from a significant rise in spending on residential building construction. The demand for warm air furnaces in the residential application segment is expected to be driven by the expanding residential sector in the U.S.
Furnaces use heat to circulate hot air using ducts throughout residential spaces due to the presence of drastic temperature changes. Furthermore, in the year 2022, the U.S. Energy Information Administration (EIA) reported that 538,000 of the 911,000 new single-family homes had forced-air furnaces installed.
The minimum Annual Fuel Utilization Efficiency (AFUE) standard governs furnace efficiency in the U.S. Seasonal efficiency is estimated using AFUE, which averages peak and part-load conditions. In addition to estimating the amount of electricity required by the air handler, inducer fan, and controls, AFUE accounts for start-up, cool-down, and other operating losses that happen under actual operating conditions. The higher the AFUE, the furnace or boiler is more efficient. These aforementioned factors are expected to drive the demand for warm air furnaces in the coming years.
Commercial warm-air furnaces must have a capacity of at least 225,000 Btu/hr. They are intended to supply hot air via a duct system. In practice, commercial furnaces are the gas or propane heating parts of bundled roof-top units that are utilized in small to medium-sized business buildings. As condensing technology allows for energy savings from warm air furnaces, condensing furnaces extract additional heat by condensing the water vapor in the gases and achieve 90% or greater efficiency levels. These aforementioned factors are projected to increase the warm-air furnace demand in the forecasted years.
Warm Air Furnace Market Report Highlights
• The gas-warm air furnace segment led the market and accounted for a 94.6% share of the global revenue in 2024. Gas-warm air furnaces are cost-effective and versatile. Moreover, when natural gas burns, it causes little impact on the environment while reliably keeping the area warm. These aforementioned factors are anticipated to drive the demand for gas-warm air furnaces in the coming years
• The oil-warm air furnaces segment accounted for a 5.4% share of the global market in 2024. Oil-warm air furnaces are a popular alternative in areas of the country where natural gas is scarce. These provide a possibility to heat the area with renewable fuels. Several companies are now offering heating oil that has been combined with biodiesel, allowing their consumers to minimize their reliance on foreign oil while utilizing a domestic energy source. Moreover, biodiesel mixes emit fewer pollutants than pure heating oil
• The commercial segment led the market and accounted for a 40.7% share of the global revenue in 2024. For commercial properties such as offices, factories, and warehouses, warm air furnaces are used to heat the space quickly and cost-effectively. Further, the U.S. government is working on various efforts to upgrade its community infrastructure
• For instance, the U.S. Department of Transportation announced a USD 905.3 million investment in infrastructure development projects around the country in June 2021. The projects are carried out through the Infrastructure for Rebuilding America (INFRA) discretionary funding program. Twenty projects in twenty states are anticipated to be funded to rebuild bridges, ports, highways, and railroads. As a result, increased commercial building will likely boost the demand for warm air furnaces in the projected period
• The residential application segment is expected to witness a CAGR of 3.9% over the forecast period. The Consortium for Energy Efficiency (CEE) reports that 50% of American houses utilize natural gas furnaces as their major source of space heating, making furnaces the most common type of residential heating system in the country. Thus, increasing the use of warm air furnaces for residential applications is expected to propel the demand in the coming years
Table of Contents
Chapter 1. Methodology and Scope
1.1. Research Methodology
1.2. Research Scope & Assumption
1.3. Information Procurement
1.3.1. Purchased Database
1.3.2. GVR’s Internal Database
1.3.3. Secondary Sources
1.3.4. Third-Party Perspectives
1.3.5. Primary Research
1.4. Information Analysis
1.4.1. Data Analysis Models
1.5. Market Formulation & Data Visualization
1.6. Data Validation & Publishing
Chapter 2. Executive Summary
2.1. Market Outlook
2.2. Segmental Outlook
2.3. Competitive Insights
Chapter 3. Market Variables, Trends & Scope
3.1. Market Segmentation & Scope
3.2. Penetration and Growth Prospect Mapping
3.3. Industry Value Chain Analysis
3.4. Technology Overview
3.5. Regulatory Framework
3.6. Market Dynamics
3.6.1. Market Driver Analysis
3.6.2. Market Restraint Analysis
3.6.3. Market Opportunity Analysis
3.6.4. Industry Challenges
3.7. Industry Analysis
3.7.1. Porter’s analysis
3.7.2. Macroeconomic Analysis
3.8. Economic Mega Trend
3.9. Pricing Analysis
3.10. ESG Practices and its impact on warm air furnaces market
3.11. Vendor Matrix
3.11.1. List of key component providers
3.11.2. List of key manufacturers
3.11.3. List of key distributors
Chapter 4. Warm Air Furnaces Market: Type Estimates & Trend Analysis
4.1. Type Analysis & Market Share, 2022 & 2030
4.1.1. Market estimates and forecasts, 2018 - 2030 (USD Million)
4.2. Gas Warm Air Furnaces
4.2.1. Market estimates and forecasts, 2018 - 2030 (USD Million)
4.3. Oil Warm Air Furnaces
4.3.1. Market estimates and forecasts, 2018 - 2030 (USD Million)
Chapter 5. Warm Air Furnaces Market: Application Estimates & Trend Analysis
5.1. Application Analysis & Market Share, 2022 & 2030
5.1.1. Market estimates and forecasts, 2018 - 2030 (USD Million)
5.2. Residential
5.2.1. Market estimates and forecasts, 2018 - 2030 (USD Million)
5.3. Commercial
5.3.1. Market estimates and forecasts, 2018 - 2030 (USD Million)
5.4. Industrial
5.4.1. Market estimates and forecasts, 2018 - 2030 (USD Million)
Chapter 6. Warm Air Furnaces Market: Regional Estimates & Trend Analysis
6.1. Regional Market Snapshot
6.2. North America
6.2.1. Market estimates and forecasts, 2018 - 2030 (USD Million)
6.2.2. U.S.
6.2.2.1. Macroeconomic Outlook
6.2.2.2. Market estimates and forecasts, 2018 - 2030 (USD Million)
6.2.3. Canada
6.2.3.1. Macroeconomic Outlook
6.2.3.2. Market estimates and forecasts, 2018 - 2030 (USD Million)
6.2.4. Mexico
6.2.4.1. Macroeconomic Outlook
6.2.4.2. Market estimates and forecasts, 2018 - 2030 (USD Million)
6.3. Europe
6.3.1. Market estimates and forecasts, 2018 - 2030 (USD Million)
6.3.2. Germany
6.3.2.1. Macroeconomic Outlook
6.3.2.2. Market estimates and forecasts, 2018 - 2030 (USD Million)
6.3.3. France
6.3.3.1. Macroeconomic Outlook
6.3.3.2. Market estimates and forecasts, 2018 - 2030 (USD Million)
6.3.4. Italy
6.3.4.1. Macroeconomic Outlook
6.3.4.2. Market estimates and forecasts, 2018 - 2030 (USD Million)
6.3.5. Sweden
6.3.5.1. Macroeconomic Outlook
6.3.5.2. Market estimates and forecasts, 2018 - 2030 (USD Million)
6.3.6. Spain
6.3.6.1. Macroeconomic Outlook
6.3.6.2. Market estimates and forecasts, 2018 - 2030 (USD Million)
6.3.7. Finland
6.3.7.1. Macroeconomic Outlook
6.3.7.2. Market estimates and forecasts, 2018 - 2030 (USD Million)
6.4. Asia Pacific
6.4.1. Market estimates and forecasts, 2018 - 2030 (USD Million)
6.4.2. China
6.4.2.1. Macroeconomic Outlook
6.4.2.2. Market estimates and forecasts, 2018 - 2030 (USD Million)
6.4.3. Japan
6.4.3.1. Macroeconomic Outlook
6.4.3.2. Market estimates and forecasts, 2018 - 2030 (USD Million)
6.4.4. Australia
6.4.4.1. Macroeconomic Outlook
6.4.4.2. Market estimates and forecasts, 2018 - 2030 (USD Million)
6.4.5. India
6.4.5.1. Macroeconomic Outlook
6.4.5.2. Market estimates and forecasts, 2018 - 2030 (USD Million)
6.4.6. South Korea
6.4.6.1. Macroeconomic Outlook
6.4.6.2. Market estimates and forecasts, 2018 - 2030 (USD Million)
6.5. Central & South America
6.5.1. Market estimates and forecasts, 2018 - 2030 (USD Million)
6.5.2. Brazil
6.5.2.1. Macroeconomic Outlook
6.5.2.2. Market estimates and forecasts, 2018 - 2030 (USD Million)
6.5.3. Argentina
6.5.3.1. Macroeconomic Outlook
6.5.3.2. Market estimates and forecasts, 2018 - 2030 (USD Million)
6.6. Middle East & Africa
6.6.1. Market estimates and forecasts, 2018 - 2030 (USD Million)
6.6.2. Saudi Arabia
6.6.2.1. Macroeconomic Outlook
6.6.2.2. Market estimates and forecasts, 2018 - 2030 (USD Million)
6.6.3. UAE
6.6.3.1. Macroeconomic Outlook
6.6.3.2. Market estimates and forecasts, 2018 - 2030 (USD Million)
Chapter 7. Competitive Analysis
7.1. Recent Developments & Impact Analysis, By Key Market Participants
7.2. Company Categorization
7.3. Participant’s Overview
7.4. Financial Overview
7.5. Product Benchmarking
7.6. Company Market Positioning
7.7. Company Market Share Analysis, 2022
7.8. Company Heat Map Analysis
7.9. Strategy Mapping
Chapter 8. Company Profiles
8.1. Carrier Corporation
8.2. Mitsubishi Electric Corporation
8.3. Emerson Electric Co.
8.4. Ingersoll-Rand Plc
8.5. Daikin Industries, Ltd.
8.6. Rheem Manufacturing
8.7. Lennox International
8.8. Johnson Controls, Inc.
8.9. Robert Bosch GmbH
8.10. Viessmann Group
8.11. Goodman Manufacturing
8.12. Fujitsu
8.13. Navien Inc.
*** 温風暖房機の世界市場に関するよくある質問(FAQ) ***
・温風暖房機の世界市場規模は?
→Grand View Research社は2025年の温風暖房機の世界市場規模をXX米ドルと推定しています。
・温風暖房機の世界市場予測は?
→Grand View Research社は2030年の温風暖房機の世界市場規模を109億700万米ドルと予測しています。
・温風暖房機市場の成長率は?
→Grand View Research社は温風暖房機の世界市場が2025年~2030年に年平均3.4%成長すると展望しています。
・世界の温風暖房機市場における主要プレイヤーは?
→「SLB, Ingersoll Rand, Carrier Corporation, Mitsubishi Electric Corporation, Emerson Electric Co., Ingersoll-Rand Plc, Daikin Industries, Ltd., Rheem Manufacturing, Lennox International, Johnson Controls, Inc., Robert Bosch GmbH, Viessmann Group, Goodman Manufacturing, Fujitsuなど ...」を温風暖房機市場のグローバル主要プレイヤーとして判断しています。
※上記FAQの市場規模、市場予測、成長率、主要企業に関する情報は本レポートの概要を作成した時点での情報であり、最終レポートの情報と少し異なる場合があります。
*** 免責事項 ***
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