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卫星运载火箭全球市场研究报告——2023-2030 年行业分析、规模、份额、增长、趋势和预测Global Satellite Launch Vehicle Market Research Report - Industry Analysis, Size, Share, Growth, Trends and Forecast 2023 to 2030 |
全球对卫星运载火箭市场的需求预计将从 2022 年的 149 亿美元增长到 2030 年的 459 亿美元,预计 2023-2030 年研究期间的复合年增长率为 15.1%。
卫星运载火箭 (SLV) 是一种火箭系统,旨在将卫星送入太空。 SLV 通常是多级火箭,旨在为环绕地球或其他天体的轨道卫星提供必要的推力和高度。 SLV 通常由多个级组成,每个级都有一个或多个火箭发动机。 第一级是最大的,包含最强大的发动机,通常提供初始推力,将火箭从发射台推向大气层。 随着火箭获得高度和速度,第一级分离并落向地球,而第二级点燃并继续向其目标轨道推进。 一旦 SLV 达到目标高度和速度,有效载荷(通常是卫星)与火箭分离并进入环绕地球的轨道。 根据任务的不同,它可能携带额外的有效载荷,如科学设备、通信设备和宇航员用品。
随着对通信、遥感、导航和广播等基于卫星的服务需求的增加,对卫星发射的需求也在不断扩大。 随着使用卫星的应用和服务变得更加广泛,预计这种需求将继续增长。 此外,世界各国政府出于发展科学研究、开发新领域和加强国家安全的目的,正在积极投资太空发展。 此外,太空探索的商业投资正在增加,因为它寻求新的商业机会和潜在的收入来源。 新材料、推进系统和其他技术的发展使火箭设计更加高效和具有成本效益,导致火箭供应商数量不断增加,并推动了市场竞争和创新。 世界各国政府正在实施政策和政策来支持卫星发射行业的发展。 例如,一些国家向投资于火箭及相关技术研发的企业提供税收优惠和补贴等支持。 对立方体卫星等小型卫星的需求不断增长,这增加了对更小、更具成本效益的火箭的需求,并开创了新的火箭设计以满足小型卫星市场的需求。
这份研究报告描述了波特的五力模型、市场吸引力分析和价值链分析。 这些工具可帮助您清楚地了解您的行业结构并评估您在全球范围内的竞争吸引力。 此外,这些工具还能够全面评估全球卫星运载火箭市场的各个细分市场。 卫星运载火箭行业的发展和趋势为这项研究提供了一个整体方法。
本节提供按国家和地区划分的卫星运载火箭市场细分的详细数据,以帮助战略家确定各自产品和服务的目标受众,从而带来未来的商机。我会支持你的。
本部分提供了北美、欧洲、亚太地区、拉丁美洲以及中东和非洲卫星运载火箭市场当前和未来需求的区域展望。 此外,我们还关注所有主要地区各个应用领域的需求、估计和预测。
该研究报告还涵盖了市场主要参与者的综合概况和全球竞争格局的详细视图。 卫星运载火箭市场的主要参与者是 SpaceX(美国)、United Launch Alliance, LLC(美国)、Northrop Grumman Corporation(美国)、Blue Origin(美国)和Mitsubishi(日本)。 本节概述了竞争格局,包括各种战略发展,例如主要併购、未来能力、合作伙伴关係、财务概览、合作、新产品开发和新产品发布。
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注意:公司简介中的财务信息和近期发展基于可用信息,可能不涵盖私营公司。
The global demand for Satellite Launch Vehicle Market is presumed to reach the market size of nearly USD 45.9 BN by 2030 from USD 14.9 BN in 2022 with a CAGR of 15.1% under the study period 2023 - 2030.
A satellite launch vehicle or SLV is a rocket system designed to transport satellites into space. The SLV is typically a multi-stage rocket that is designed to provide the necessary thrust and altitude to place the satellite into orbit around the Earth or other celestial bodies. The SLV typically consists of several stages, each of which contains one or more rocket engines. The first stage is typically the largest and contains the most powerful engines, which provide the initial thrust to lift the rocket off the launch pad and into the atmosphere. As the rocket gains altitude and velocity, the first stage separates and falls back to Earth, while the second stage ignites and continues to propel the rocket toward its target orbit. Once the SLV reaches its target altitude and velocity, the payload - typically a satellite - is separated from the rocket and placed into orbit around the Earth. Depending on the mission requirements, the SLV may also carry additional payloads, such as scientific instruments, communication equipment, or supplies for astronauts in space.
With the increasing need for satellite-based services such as telecommunication, remote sensing, navigation, and broadcasting, the demand for satellite launches has scaled up. This demand is expected to continue growing in the future, driven by the increasing adoption of satellite-based applications and services. Governments are also heavily investing in space exploration, with the aim of advancing scientific research, exploring new frontiers, and enhancing national security. Additionally, there has been an increase in commercial investment in space exploration, driven by the potential for new business opportunities and revenue streams. The new materials, propulsion systems, and other technological development has enabled the design of more efficient and cost-effective launch vehicles leading to an increase in the number of launch providers, which has driven competition and innovation in the market. Governments are implementing policies and regulations to support the growth of the satellite launch industry. For example, some countries offer tax incentives, subsidies, and other forms of support to companies that invest in the development of launch vehicles and related technologies. The growing demand for small satellites, such as CubeSats, has created a need for smaller and more cost-effective launch vehicles leading to the development of new launch vehicle designs that are specifically tailored to meet the needs of the small satellite market.
The research report covers Porter's Five Forces Model, Market Attractiveness Analysis, and Value Chain analysis. These tools help to get a clear picture of the industry's structure and evaluate the competition attractiveness at a global level. Additionally, these tools also give an inclusive assessment of each segment in the global market of satellite launch vehicle. The growth and trends of satellite launch vehicle industry provide a holistic approach to this study.
This section of the satellite launch vehicle market report provides detailed data on the segments at country and regional level, thereby assisting the strategist in identifying the target demographics for the respective product or services with the upcoming opportunities.
This section covers the regional outlook, which accentuates current and future demand for the Satellite Launch Vehicle market across North America, Europe, Asia-Pacific, Latin America, and Middle East & Africa. Further, the report focuses on demand, estimation, and forecast for individual application segments across all the prominent regions.
The research report also covers the comprehensive profiles of the key players in the market and an in-depth view of the competitive landscape worldwide. The major players in the satellite launch vehicle market include SpaceX (US), United Launch Alliance, LLC (US), Northrop Grumman Corporation (US), Blue Origin (US), and Mitsubishi Heavy Industries (Japan). This section consists of a holistic view of the competitive landscape that includes various strategic developments such as key mergers & acquisitions, future capacities, partnerships, financial overviews, collaborations, new product developments, new product launches, and other developments.
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Note - in company profiling, financial details and recent development are subject to availability or might not be covered in case of private companies
Kindly note that the above listed are the basic tables and figures of the report and are not limited to the TOC.