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市场调查报告书
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1351062
2030 年太阳能车棚市场预测 - 按类型、设计、容量、用途和地区进行的全球分析Solar Carport Market Forecasts to 2030 - Global Analysis By Type, Design, Capacity, Application and By Geography |
根据 Stratistics MRC 的数据,2023 年全球太阳能车棚市场规模为 4.671 亿美元,预计到 2030 年将达到 10.588 亿美元,预测期内年复合成长率为 12.4%。太阳能车库的工作原理是捕获太阳能并将其转化为电力供您的家庭使用。
太阳能由覆盖车库屋顶的太阳能电池板产生。根据太阳能电池板的数量,您可以满足家庭的全部或部分能源需求。建造太阳能车库有几个优点。太阳能车库是降低或消除能源成本的好方法。太阳能车棚利用太阳能板作为屋顶,解决了屋顶角度、遮阳、朝向、尺寸等问题。大多数屋顶无法接收最佳阳光,但太阳能车棚的支撑系统是专门为此设计的。
根据SolarPower Europe统计,从2011年到2020年的过去10年度里,太阳能发电量从2011年的3013万千瓦快速增长到2020年的1.382亿千瓦,主要得益于公用事业规模项目和含氟聚合物太阳能背板市场正在推动成长。
推动该行业发展的主要要素是公众对太阳能价值的了解不断加深。太阳能是一种可再生能源,可用于多种用途。太阳能车棚适用于多种气候,这是推动该产业发展的另一个因素。在结冰地区,它可以保护汽车免受冰雪侵害,并减少除雪的需求。在温暖的气候下,车库可以提供遮阳,使汽车比暴露在阳光直射下凉爽得多。太阳能车库将未使用和低效率的空间转变为成功的长期投资。这些因素正在推动太阳能车棚市场的发展。
采用太阳能电池板需要改造现有停车场和建筑物,这会增加整体成本和复杂性。因此,需要建造一个能够抵御大风、降雪、地震等各种天气波动的车棚。在保持车库结构完整性的同时纳入太阳能电池板需要仔细的工程和设计。改造旧车库以适应太阳能电池板增加的重量在技术上可能很困难。
太阳能车棚系统变得更加扩充性和模组化,可以轻鬆扩展和修改以满足特定的能源需求。它们的多功能性使其成为各种用途和现场要求的理想选择。如今,电池有时会安装在光伏车库中,以储存全天产生的多余能量。如果出现需求高峰或停电,这些储存的能量可用于提供备用电源并提高系统弹性,从而在整个预测期内创造广泛的可能性。
太阳能车棚作为生产可再生能源的可行选择越来越受欢迎。然而,市场扩张受到场地和空间限制以及结构问题的阻碍。例如,光伏车库需要大量的空间来容纳车辆和太阳能电池板。找到具有足够安装空间的合适地点很困难,特别是在土地供应有限的大都市地区,从而阻碍了市场扩张。
COVID-19 的疫情对全球太阳能车棚市场产生了重大负面影响。受COVID-19疫情影响,几乎所有主要国家的经济发展都放缓,影响了消费者的购买习惯。由于许多国家运输系统关闭,供需失衡扩大,对国内和国际供应链产生负面影响。因此,原材料供不应求预计将阻碍太阳能车棚的生产并对市场扩张产生负面影响。然而,随着各国政府放宽全球标准以重启经济活动,情况预计会有所改善。
由于在具有两条轨道的车库中放置两排车辆,预计两排双坡车辆放置车库部分将出现良好的增长。作为最受欢迎的车棚样式之一,其紧凑的设计可容纳许多汽车,非常适合商业用途。因此,在预测期内,2班列车将主导太阳能车棚产业。
由于饭店和餐厅、教育机构、医疗保健设施、体育设施等各种商业领域对光伏车棚的需求不断增加,预计商业领域在预测期内将出现最高的年复合成长率年增长率。此外,可再生能源的使用越来越多,以及太阳能车库为家庭和企业提供的绝佳替代品正在推动市场成长。
随着太阳能车棚的平均係统价格持续下降,以及商业太阳能开发商可能以更大的项目规模和更好的节电形式为消费者提供附加价值,北美地区预计将增长。预计将在此期间占据最大的市场占有率。开发商放弃垂直整合,转向更便宜的结构供应商,而供应商寻求扩大服务范围以应对价格下跌,这一趋势预计也将支持该地区的发展。
由于商业太阳能开发商的大量项目和显着的能源节约,预计欧洲在预测期内的年复合成长率最高。作为额外的好处,随着越来越多的人意识到太阳能的好处,该行业正在不断扩大。推动欧洲市场扩张的关键因素之一是电动汽车製造的增加。
According to Stratistics MRC, the Global Solar Carport Market is accounted for $467.1 million in 2023 and is expected to reach $1058.8 million by 2030 growing at a CAGR of 12.4% during the forecast period. Solar carports function by capturing solar energy and converting it into electricity for home. Solar power is produced by the solar panels that cover the carport's roof. Depending on how many solar panels use to create home, they can provide all or some of the energy it requires to operate. There are several advantages to constructing a solar carport. Solar carports are a fantastic way to lower or perhaps get rid of your energy cost. Solar carports solve the problems of roof angle, shade, orientation, and size by using solar panels as the roof. Most roofs are unable to give optimum sunlight exposure; however, solar carport support systems are designed expressly to do so.
According to SolarPower Europe, over the past decade, between 2011 and 2020, solar power increased rapidly from 30.13 GW in 2011 to 138.2 GW in 2020, primarily aided by utility-scale projects and the fluoropolymer solar backsheet market.
The main factor driving this industry is people's increasing understanding of the value of solar energy. Because it is a renewable energy source with several applications, solar energy is free and comes from a natural source. Solar carports are suitable in a range of climates, which is one of the other elements driving the industry. In icy places, they shield automobiles from ice and snow, lessening the need for plowing. In warm climates, a carport offers shade, keeping automobiles far cooler than if they were exposed to direct sunlight. Solar carports transform unused, ineffective space into a successful, long-term investment. These elements are fuelling the market for solar-powered carports.
It can be necessary to remodel existing parking lots or buildings in order to incorporate solar panels, which might raise the overall cost and complexity. These carports must thus be built to resist a variety of weather variables, including wind, snow loads, and seismic activity. It needs careful engineering and design to incorporate solar panels while maintaining the carport's structural integrity. It might be technically difficult to retrofit old carports to accommodate the added weight of solar panels.
The scalability and modularity of solar carport systems were increasing, enabling simple extension and modification in response to particular energy requirements. They were ideal for a variety of applications and site requirements because of their versatility. These days, battery storage devices may be included in PV carports to store extra energy produced throughout the day. When there is a surge in demand or a power outage, this stored energy may be utilized to provide backup power and improve system resilience creating wide range of opportunities through the forecast period.
As a viable option for producing renewable energy, solar carports which shade automobiles while combining solar panels to produce electricity have grown in popularity. However, market expansion is probably hampered by site and space limitations as well as structural issues. For instance, PV carports need a lot of room to fit the vehicles and solar panels within. Finding appropriate sites with enough room for installation can be difficult, particularly in metropolitan areas with limited land availability thus hamper the growth of the market.
The COVID-19 epidemic has had a significant negative influence on the global market for solar carports. Nearly all of the main nations had slower economic development as a result of the COVID-19 epidemic, which had an impact on consumer purchasing habits. The supply-demand imbalance has widened as a result of the lockdown that has been enacted in a number of nations' transportation systems, which has adversely affected both domestic and international supply chains. Thus, inadequate raw material supply is anticipated to hinder solar carport manufacturing, which would have a negative effect on the market's expansion. However, given that governments have begun easing global standards for restarting economic activity, the situation is anticipated to get better.
The two-row dual slope vehicle arrangement carport segment is estimated to have a lucrative growth, as a carport with two tracks has two rows of cars in it. One of the most popular styles of carport, it is best suited for commercial usage due to its compact design and ability to hold many automobiles. Based on this, the two-row vehicle class will rule the solar carport industry over the predicted period.
The commercial segment is anticipated to witness the highest CAGR growth during the forecast period, due to the increase in demand for PV carports from different commercial areas, including institutions, such as hotels and restaurants, educational institutions, healthcare facilities, and sports complexes, the commercial segment now commands the market. In addition the rising use of renewable energy and the wonderful alternative that solar-powered carports offer to households and businesses are driving the growth of the market.
North America is projected to hold the largest market share during the forecast period due to the average system price of solar carports continuing to decline, commercial solar developers may provide additional value to consumers in the form of larger project sizes and better power savings, which will cause North America to be the largest market over the next years. Trends like developers abandoning vertical integration to access less expensive structural suppliers and vendors striving to broaden their service offerings to counteract dropping prices are also anticipated to support the development of this region.
Europe is projected to have the highest CAGR over the forecast period, owing to the vast number of projects that are available from commercial solar developers, together with considerable power savings. Additionally, the industry is expanding as more people become aware of solar energy's benefits. One significant element propelling the market expansion in Europe is the increase in manufacturing of electronic cars.
Some of the key players profiled in the Solar Carport Market include: Antai Technology Co. Ltd, CHIKOUSA, SunPower Corporation, Flexisolar, Schletter, KDC Solar LLC, Enova, Kokko Shisetsu Kogyo Co., Ltd, Tata Power, RenEnergy Ltd., Xiamen Mibet New Energy Co., Ltd, Quest Renewables, Inc., EvoEnergy, GE Industry, Solarcentury, Upsolar global, AG Japan and Nichiei Intec
In April 2023, the port authority of New York and New Jersey (PANYNJ) announces a deal with TotalEnergies to begin constructing New York's largest solar carport project at John F Kennedy International Airport in 2023.
In June 2022, Maruti Suzuki installs Asia's largest 20 MWp solar carport in their plant at Manesar. The initiative will contribute 28,000 MWH2 annually to the company's energy requirements.