市场调查报告书
商品编码
1270742
气象雷达的全球市场 - 市场规模,占有率,成长分析:各平台,各零件,各用途,产业预测(2022年~2028年)Global Weather Radar Market Size, Share, Growth Analysis, By Platform(Airborne Weather Information Radar, Land-based Information Radar), By Component(Transmitter, Antenna), By Application(Meteorology, Hydrology) - Industry Forecast 2022-2028 |
全球气象雷达的市场规模在2021年估算为13亿美金,在预测期间(2023年~2030年)时预计将以6.5%的年复合成长率增长,从2022年的13亿9,000万美元到2030年达到23亿1,000万美元。
本报告提供全球气象雷达市场相关调查分析,提供市场动态及预测,市场区隔分别分析,企业简介等资讯。
Global Weather Radar Market size was valued at USD 1.3 billion in 2021 and is poised to grow from USD 1.39 billion in 2022 to USD 2.31 billion by 2030, growing at a CAGR of 6.5% in the forecast period (2023-2030).
Weather radar is a versatile technology that can be used to assess the atmosphere. These critical systems include estimates of future rainfall, cloud inferences, and the rate and direction of cell migration. A weather radar is a pulse-doppler radar that detects the velocity and intensity of rain, snow, or hail in order to investigate and provide information on weather conditions. The radar system's data is used by a variety of industries, including agriculture, tourism, public safety, the aviation industry, and others. The rising frequency of natural disasters such as thunderstorms, cyclones, ice storms, and snowstorms is boosting demand for weather radar systems. The tremendous growth in traffic around the world is driving up demand for airborne-based radar systems. However, the rising availability of alternative technologies is a factor restraining market growth.
Top-down and bottom-up approaches were used to estimate and validate the size of global Weather Radar Market and to estimate the size of various other dependent submarkets. The research methodology used to estimate the market size includes the following details: The key players in the market were identified through secondary research, and their market shares in the respective regions were determined through primary and secondary research. This entire procedure includes the study of the annual and financial reports of the top market players and extensive interviews for key insights from industry leaders such as CEOs, VPs, directors, and marketing executives. All percentage shares split, and breakdowns were determined by using secondary sources and verified through Primary sources. All possible parameters that affect the markets covered in this research study have been accounted for, viewed in extensive detail, verified through primary research, and analysed to get the final quantitative and qualitative data.
Segments covered in this report
The Global Weather Radar Market is segmented based on Platform, Component, Application, and region. Based on the Platform, the Weather Radar Market is segmented as Airborne Weather Information Radar and Land-based Information Radar. Based on the Component the Weather Radar Market is segmented as Transmitter, Antenna, Receiver, and Display. Based on the Application, the Weather Radar Market is segmented as Meteorology and Hydrology, Aviation, and Military. Based on Region Weather Radar Market is categorized into North America, Europe, Asia-Pacific, South America, and MEA.
Driver
In recent years, the enormous turbulence caused during the flight has resulted in injuries to passengers and crew. Other incidents have occurred, such as reported aircraft damage from hailstorms. It has become critical to identify and avoid harsh weather conditions in order to ensure a comfortable and secure travel. Climate change has also contributed to the destruction of infrastructure and human lives. Radar's increasing application in weather analysis is expected to drive market growth. Australia, for example, has 60 land-based weather information radars and is working to install more radar systems due to the continent's vulnerability to severe climatic shifts and thunderstorms.
Airborne weather data radars are built inside aircraft to warn the captain, aircrew, and passengers about weather conditions and help them avoid entering severe weather. Due to the importance of radar systems in the development of every new aircraft, rising aircraft deliveries are expected to fuel market expansion. The surge in aircraft deliveries is due to the rapidly increasing demand for air transportation as the economies of many emerging nations improve. The choice of airlines to expand their fleet in response to increased air travel has resulted in high demand for new aircraft. The growing need for new aircraft has boosted the demand for airborne weather radars.
Restraint
The weather radar uses a beam reflected from water droplets in the atmosphere to analyse the weather. It can only detect the presence of liquid, which is a severe shortcoming. Reflectivity, for example, is not inversely proportional to risk because the intensity of water droplets in a thunderstorm decreases with height. As a result, because radar readings used for weather monitoring are erroneous, individuals have shifted to other technologies. These inadequacies are predicted to stymie weather radar market growth over the forecast period.
Radar can detect rain, wet hail, moist eddy, and wind shear but not ice crystals, dry hail, dry snow, clear sky eddy, sandstorms, or lightning. All of these have the potential to be disastrous for an aeroplane. As a result, in order to overcome these limitations, manufacturers are focusing their efforts on developing substitute radar technologies such as B. A wind profiler that works in all weather conditions. This market's growth is expected to be limited by increased demand for the introduction of substitute technologies that can give more exact meteorological data, and so the use of substitute solutions may limit market growth.
Market Trends
The recently announced AN/TPY(V)1 mobile weather radar from the United States is likely to be well received. Drones, fifth-generation aircraft, and hypersonic missiles can all be tracked by the mobile radar. While its complex software-defined design allows for rapid upgrades to combat new and emerging threats, it can also give the performance needed in today's highly fought and crowded battlespace. This technology allows for software changes in hours or even minutes, as compared to weeks or months for conventional ground-based radars.