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市場調查報告書
商品編碼
1716401
非聚光太陽能集熱器市場至2032年的預測:按類型、吸收板、最終用戶和地區的全球分析Non-concentrating Solar Collector Market Forecasts to 2032 - Global Analysis By Type (Flat-Plate Collectors, Evacuated Tube Collectors, Thermosyphon Systems, Glazed Collectors and Unglazed Collectors), Absorber Plate, End User and By Geography |
根據 Stratistics MRC 的資料,全球非聚光太陽能集熱器市場預計在2025年達到 34億美元,到2032年將達到 64億美元,預測期內的年複合成長率為 9.2%。
非聚光太陽能集熱器是一種目的是吸收陽光而不是將其集中在特定點的太陽能熱系統。這些集熱器可以在大面積範圍內收集直接和散射的太陽輻射,即使在晴天或陰天也能有效收集。它們通常用於住宅熱水和空間供暖,在相對較低的溫度下運行,並以價格實惠、易於安裝和維護成本低而聞名。常見的例子包括平板和真空管集熱器。由於它們能夠全天持續捕獲太陽能,因此廣泛用於家庭和商業用途。
根據美國能源局的資料,預計到2030年,太陽能將提供美國約20%的電力,而非聚光技術在這一轉變中發揮著非常重要的作用。
能源效率意識不斷增強
對減少碳排放重視推動了對節能太陽能技術的需求。非聚光集熱器在住宅和商業供暖應用中的使用越來越多。公共和私人對再生能源採用的獎勵加速市場滲透。這些系統特別適用於寒冷氣候下的生活熱水和空間加熱。非聚光技術的簡單性和成本效益使其適合大規模部署。
與聚光系統相比效率有限
非聚光太陽能集熱器在低溫下運行,限制了其在工業應用中的有效性。無法追蹤太陽會減少能量吸收,尤其是在較高緯度地區。與聚光系統相比,能量轉換率較低。因此,它的用途僅限於低溫熱利用。這種效率差距讓尋求最佳投資收益的商業用戶心存疑慮。
與智慧建築技術的整合
智慧家庭和建築採用太陽能熱系統,實現永續能源利用。與物聯網和自動化平台的整合增強了系統效能和監控。資料驅動的能源最佳化允許用戶根據使用模式最大化熱量輸出。各國政府推動智慧型能源維修,包括安裝太陽能加熱系統。這種協同效應為城市基礎設施中的非聚光收集器應用開闢了新的領域。
光電太陽能板的競爭日益激烈
在某些市場,光伏(PV)板的快速發展掩蓋太陽能熱技術。太陽能價格的下降以及它既能發電又能供熱的能力使太陽熱能發電具有優勢。消費者通常選擇具有電池儲存的光電系統來滿足一體化能源需求。光伏系統的多功能性和擴充性吸引更多投資轉向太陽能熱解決方案。競爭加劇可能會限制未來對平板和真空管集熱器的需求。
疫情導致建設活動暫時停止,太陽能安裝也延後。供應鏈中斷導致計劃延遲和材料成本上升。然而,停工期間推動能源獨立引發了人們對分散式能源系統的新興趣。隨著各國政府將再生能源納入其經濟復甦計劃,太陽能集熱器間接受益。由於住宅安裝和綠色建築趨勢的持續,市場顯示出復甦的跡象。
平板集熱器區隔預計將成為預測期內最大的市場
平板集熱器區隔由於其成本效益、易於安裝以及在熱水和空間加熱等各種太陽能熱應用中的多功能性,預計將在預測期內佔據最大的市場佔有率。平板集熱器因其耐用的結構和在適度溫度條件下的高效性能而廣泛應用於住宅和商業領域。它與建築整合系統的兼容性以及無需追蹤太陽即可運行的能力進一步推動了它的採用。
預計預測期內銅區隔的年複合成長率最高。
在預測期內,銅區隔預計將實現最高的成長率,因為其優異的導熱性、耐用性和耐腐蝕性使其成為太陽能熱系統的理想選擇。其有效傳熱的能力有助於提高收集器的性能和能量輸出。住宅和工業應用中高性能太陽能集熱器的日益普及推動對銅基系統的需求。此外,製造技術的進步和對能源效率的日益關注進一步推動了這一領域在新興和前沿市場的成長軌跡。
預計預測期內亞太地區將佔據非聚光太陽能集熱器市場的最大佔有率。中國、印度和日本等國家憑藉著強大的太陽能政策、較高的太陽照度以及對永續供暖解決方案日益成長的需求,成為太陽能的主要採用者。快速的都市化,加上不斷擴大的住宅和商業建築業,加速太陽能熱系統的部署。此外,政府支持採用再生能源的舉措,如對太陽能發電設施的補貼和獎勵,幫助擴大市場。
預計北美地區在預測期內將呈現最高的年複合成長率。日益成長的環境問題和不斷上漲的能源成本正推動全部區域對再生能源技術進行大量投資。美國和加拿大透過稅收優惠、補貼和再生能源授權積極推廣太陽能熱解決方案。由於長期成本節約和永續性效益,人們越來越青睞住宅和工業應用中的太陽能加熱系統。此外,技術創新、不斷增強的消費者意識和有利的政策框架加速北美採用非聚光太陽能集熱器。
According to Stratistics MRC, the Global Non-concentrating Solar Collector Market is accounted for $3.4 billion in 2025 and is expected to reach $6.4 billion by 2032 growing at a CAGR of 9.2% during the forecast period. A non-concentrating solar collector is a solar thermal system designed to absorb sunlight without concentrating it on a specific point. These collectors gather both direct and scattered solar radiation across a broad area, making them efficient even in less sunny or overcast weather. Commonly applied in residential water heating and space heating, they function at relatively low temperatures and are known for their affordability, ease of installation, and low upkeep. Popular examples include flat-plate and evacuated tube collectors. Due to their ability to continuously capture solar energy throughout the day, they are widely adopted for both household and commercial purposes.
According to the U.S. Department of Energy, solar energy is projected to contribute around 20% of the nation's electricity by 2030, with non-concentrating technologies playing a pivotal role in this transition.
Increasing awareness of energy efficiency
The growing emphasis on reducing carbon emissions is pushing demand for energy-efficient solar technologies. Non-concentrating collectors are increasingly used in residential and commercial heating applications. Public and private incentives for renewable energy adoption are accelerating market penetration. These systems are particularly popular for domestic water heating and space heating in cold climates. The simplicity and cost-effectiveness of non-concentrating technologies make them suitable for mass deployment.
Limited efficiency compared to concentrating systems
Non-concentrating collectors operate at lower temperatures, limiting their effectiveness in industrial applications. Their inability to track the sun reduces energy absorption, especially in high-latitude areas. When compared to concentrating systems, they offer lower energy conversion rates. This restricts their usage to low-temperature thermal applications only. The efficiency gap creates hesitation among commercial users seeking optimal return on investment.
Integration with smart building technologies
Smart homes and buildings are incorporating solar thermal systems for sustainable energy use. Integration with IoT and automation platforms enhances system performance and monitoring. Data-driven energy optimization allows users to maximize heat output based on usage patterns. Governments are promoting smart energy retrofits, which include solar heating installations. This synergy opens up a new frontier for non-concentrating collector applications in urban infrastructure.
Rising competition from PV solar panels
The rapid advancement of photovoltaic (PV) panels has overshadowed solar thermal technologies in some markets. Falling PV prices and their ability to generate electricity, not just heat, give them an edge. Consumers often opt for PV systems with battery storage for all-in-one energy needs. The versatility and scalability of PV systems are diverting investment away from solar thermal solutions. This growing competition could restrict future demand for flat-plate and evacuated tube collectors.
The pandemic temporarily halted construction activities and delayed solar installations. Supply chain interruptions caused project postponements and increased material costs. However, the push for energy independence during lockdowns renewed interest in decentralized energy systems. Governments included renewable energy in economic recovery packages, indirectly benefiting solar collectors. The market showed signs of resilience due to ongoing residential installations and green building trends.
The flat-plate collectors segment is expected to be the largest during the forecast period
The flat-plate collectors segment is expected to account for the largest market share during the due to their cost-effectiveness, ease of installation, and versatility in various solar thermal applications such as water heating and space heating. Flat-plate collectors are widely used in residential and commercial sectors owing to their durable structure and efficient performance under moderate temperature conditions. Their compatibility with building-integrated systems and ability to operate without tracking the sun further enhances their adoption.
The Copper segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the Copper segment is predicted to witness the highest growth rate due to its superior thermal conductivity, durability, and resistance to corrosion, making it ideal for use in solar thermal systems. Its ability to efficiently transfer heat contributes to better collector performance and energy output. The rising adoption of high-performance solar collectors in residential and industrial applications is pushing the demand for copper-based systems. Additionally, advancements in manufacturing technologies and increased focus on energy efficiency are further propelling the segment's growth trajectory across emerging and developed markets.
During the forecast period, the Asia Pacific region is expected to hold the largest market share in the non-concentrating solar collector market during the forecast period. Countries such as China, India, and Japan are leading adopters due to their strong solar energy policies, high solar irradiance, and growing demand for sustainable heating solutions. Rapid urbanization, coupled with the expanding residential and commercial construction sectors, is accelerating the deployment of solar thermal systems. Additionally, government initiatives supporting renewable energy adoption, including subsidies and incentives for solar installations, are fostering market expansion.
Over the forecast period, the North America region is anticipated to exhibit the highest CAGR. Growing environmental concerns and rising energy costs are prompting significant investments in renewable energy technologies across the region. The U.S. and Canada are actively promoting solar thermal solutions through tax incentives, grants, and renewable energy mandates. There is an increasing preference for solar heating systems in residential and industrial applications due to their long-term cost savings and sustainability benefits. Furthermore, technological innovations, coupled with heightened consumer awareness and favourable, policy frameworks, are driving the accelerated adoption of non-concentrating solar collectors in North America.
Key players in the market
Some of the key players in Non-concentrating Solar Collector Market include Greenonetec, Soletrol, Prosunpro, Bosch Thermotechnik, Viessmann, Solahart, Vaillant Group, Xne Group, Dimas. Solimpeks. Rheem Manufacturing Company, American Solar Direct, Tata Power Solar, SolarWorld and Ariston Thermo Group.
In February 2025, Bosch Thermotechnik launched a new series of flat-plate solar collectors designed for residential heating applications, emphasizing improved efficiency and ease of installation.
In January 2025, Viessmann Group announced a strategic partnership with a leading construction firm to integrate its non-concentrating solar collectors into new eco-friendly housing projects across Europe.
In January 2025, Vaillant introduced the auroTHERM VFK 150, a non-concentrating collector optimized for integration with smart home heating systems.