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市場調查報告書
商品編碼
1603887
到 2030 年強制鼓風機市場預測:按類型、設計配置、驅動器、應用、最終用戶和地區進行的全球分析Forced Draft Fan Market Forecasts to 2030 - Global Analysis By Type (Axial Fans, Centrifugal Fans, Backward Curved Fans, Forward Curved Fans, Mixed Flow Fans and Other Types), Design Configuration, Drive, Application, End User and By Geography |
根據 Stratistics MRC 的數據,2024 年全球強制鼓風機市場規模將達到 30 億美元,預計到 2030 年將達到 44 億美元,預測期內複合年成長率為 6.8%。
強制風扇 (FDF) 是工業環境中使用的機械風扇,用於向高溫設備提供燃燒空氣。迫使新鮮空氣進入燃燒室,以保持最佳氣壓,從而實現高效燃燒和穩定運作。 FDF 對於維持平衡的燃燒環境、提高燃油效率、減少污染物和最大限度地減少維護要求至關重要。 FDF 設計用於承受高溫,並配有阻尼器,可根據燃燒需求調節氣流。 FDF 用於發電、石化和製造業,在這些產業中,精確的空氣控制至關重要。
對燃燒系統的需求增加
隨著工業化程度的提高,發電、化學製造和精製等行業需要高效的通風系統來實現最佳運作條件。這增加了對強制鼓風機的需求,強制鼓風機對於為鍋爐和熔爐的燃燒過程提供空氣非常重要。依賴這些過程的工業的擴張需要更多的強制鼓風機來實現高效的燃料燃燒和能源生產。
初始成本和維護成本高
中小型企業 (SME) 發現由於初始成本較高而難以實施強制通風風扇 (FDF),這會減少其潛在客戶群。高昂的初始成本和持續的維護成本阻礙了低度開發國家的工業採用 FDF,特別是在資金匱乏或優先考慮具有成本效益的設備時。因此,這些市場的採用率正在下降,尤其是在該行業不斷成長的地區。
能源效率和排放法規
強制風扇 (FDF) 越來越受歡迎,因為它們可以調節燃燒過程、減少燃料消耗並提高效率。隨著政府和監管機構實施更嚴格的能源法規,工業界面臨採用更節能技術的壓力。 FDF 可促進有效燃燒並減少二氧化碳和顆粒物等污染物,對於排放合規性也至關重要。因此,FDF對於企業滿足法律要求和刺激消費者需求是必要的。
激烈的市場競爭
面對激烈的市場競爭,當生產者降低價格吸引顧客時,就會出現價格競爭。雖然這可能在短期內使消費者受益,但會降低 FDF 生產商的利潤率。壓縮利潤率可能使營運商難以再投資於研發、創新和品質提升,整體市場擴張可能會產生阻礙市場成長的效果。
COVID-19 的影響
由於供應鏈中斷、行業活動減少和建設計劃延誤,COVID-19 大流行對強制風扇 (FDF) 市場產生了負面影響。此外,發電、水泥和製造業等行業面臨停產和需求減少,減少了對 FDF 的迫切需求。然而,隨著產業的復甦,對節能和排放氣體合規系統的需求逐漸恢復,推動了疫情後的市場成長。
軸流風機產業預計在預測期內將是最大的
軸流風機產業將在預測期內成長,因為軸流風機是通風和冷卻系統等大容量空氣運動應用的理想選擇,從而提高發電和化學加工等工業過程的性能,預計將佔據市場佔有率。隨著公司尋求可靠的通風解決方案,強制鼓風機因其適用於暖通空調、製造和食品加工等多種行業而有望在新興市場中成長。
預計直接驅動產業在預測期內複合年成長率最高
當與變頻驅動器結合使用時,直接驅動風扇可精確控制氣流和風扇速度,從而提高變速時的性能。這種靈活性對於必須隨著條件變化而改變氣流的應用至關重要。特別是在工業環境中,沒有皮帶意味著機械應力更小,風扇壽命更長。
市場佔有率。發電廠和設施需要可靠的燃燒系統來滿足不斷成長的能源需求,特別是在新興國家,並且正在推動該地區的市場成長。
由於嚴格的空氣品質和排放法規,預計北美地區在預測期內將呈現良好的成長率,特別是在美國和加拿大。這些風機透過簡化燃燒過程、減少排放氣體並確保遵守環境法規,幫助公司採用低排放氣體、節能技術。
According to Stratistics MRC, the Global Forced Draft Fan Market is accounted for $3.0 billion in 2024 and is expected to reach $4.4 billion by 2030 growing at a CAGR of 6.8% during the forecast period. Forced Draft Fans (FDFs) are mechanical fans used in industrial settings to supply combustion air into high-temperature equipment. They forcefully push fresh air into the combustion chamber, maintaining optimal air pressure for efficient combustion and stable operation. FDFs are critical in maintaining a balanced combustion environment, enhancing fuel efficiency, reducing pollutants, and minimizing maintenance requirements. They are designed to withstand high temperatures and equipped with dampers to regulate airflow rate based on combustion needs. FDFs are used in power generation, petrochemical, and manufacturing industries, where precise air control is vital.
Increased demand for combustion system
As industrialization increases, sectors like power generation, chemical manufacturing, and oil refining require efficient ventilation systems for optimal operating conditions. This boosts demand for forced draft fans, which are crucial for supplying air to combustion processes in boilers and furnaces. The expansion of industries relying on these processes necessitates more forced draft fans for efficient fuel combustion and energy production.
High initial costs and maintenance
Small and medium-sized businesses (SMEs) find it difficult to get started with forced draft fans (FDFs) because of the high initial cost, which could reduce their potential clientele. High upfront costs and continuing maintenance costs deter industries in underdeveloped nations from implementing FDFs, particularly when funding is scarce or cost-effective equipment is given priority. As a result, adoption is decreased in these markets, especially in areas where industry is growing.
Energy efficiency and emission regulations
The ability of forced draft fans (FDFs) to regulate combustion processes, lowering fuel consumption and increasing efficiency, is the reason for their growing popularity. Industries are facing pressure to implement fuel-efficient technology as governments and regulatory agencies impose more stringent energy regulations. By facilitating effective combustion and lowering pollutants like carbon dioxide and particulate matter, FDFs are also essential for emission compliance. They are therefore necessary for businesses to satisfy legal requirements and stimulate consumer demand.
Intense market competition
Price wars may result from producers cutting their prices to draw clients in a fiercely competitive market. Short-term consumer gains may result from this, but FDF producers' profit margins are strained. Reduced margins may make it more difficult for businesses to reinvest in R&D, innovation, and quality enhancements, which could have an impact on market expansion as a whole hampering the market growth.
Covid-19 Impact
The COVID-19 pandemic negatively impacted the Forced Draft Fan (FDF) market due to disruptions in supply chains, reduced industrial activity, and delays in construction projects. Additionally, industries such as power generation, cement, and manufacturing faced operational halts or reduced demand, which lowered the immediate need for FDFs. However, as industries recovered, there was a gradual rebound in demand for energy-efficient and emission-compliant systems, driving market growth post-pandemic.
The axial fans segment is expected to be the largest during the forecast period
Over the forecasted timeframe, the axial fans segment is anticipated to dominate the market share, as they improve performance in industrial processes like power generation and chemical processing because they are perfect for large-volume air movement applications like ventilation and cooling systems. As businesses look for dependable ventilation solutions, the market for forced draft fans is expected to develop due to its adaptability in a variety of industries, including HVAC, manufacturing, and food processing.
The direct drive segment is expected to have the highest CAGR during the forecast period
The direct drive segment is projected to have the highest CAGR in the forced draft fan market during the extrapolated period, by combining with variable frequency drives, direct drive fans provide improved performance at variable speeds by giving precise control over airflow and fan speed. In applications where airflow must be modified in response to changing conditions, this flexibility is essential. Particularly in industrial settings, the lack of belts prolongs the life of fans by lowering mechanical stress.
The Asia Pacific region is projected to account for the largest market share during the forecast period due to the need for forced draft fans in combustion systems is rising as a result of the substantial industrial growth in China, India, and Southeast Asia in industries including petrochemicals, steel, cement, and power generation. Reliable combustion systems in power plants and facilities are necessary to meet the rising demand for energy, especially in emerging nations driving the market growth in this region.
The North America region is predicted to witness the lucrative growth rate throughout the forecast period, owing to North America's strict air quality and emissions restrictions, especially in the United States and Canada. These fans help enterprises adopt low-emission and energy-efficient technology by streamlining combustion processes, lowering emissions, and guaranteeing adherence to environmental regulations.
Key players in the market
Some of the key players profiled in the Forced Draft Fan Market include ABB Group, Alstom Power, BHEL (Bharat Heavy Electricals Limited), Buffalo Blower (New York Blower Company), Dongfang Electric Corporation, FlaktGroup, GE Power, Howden Group, Kawasaki Heavy Industries, Mitsubishi Heavy Industries, Siemens AG, TLT-Turbo GmbH, Yutong Blower, Zibo Fan Limited Company and Twin City Fan & Blower .
In October 2024, Siemens partnered with Alliander to accelerate flexible grid management in the Netherlands. Accelerate the energy transition and tackle key challenges in distribution grid management.
In August 2024, ABB announced that it has signed an agreement to acquire Fodisch Group, a leading developer of advanced measurement and analytical solutions for the energy and industrial sectors.
In June 2024, ABB Robotics launched OmniCore(TM), an intelligent automation platform that is faster, more precise and more sustainable, to empower, enhance and futureproof businesses. The OmniCore platform, the result of more than $170 million of investment in next generation robotics, is a step change to modular and futureproof control architecture.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.