海底救援車市場:現況分析與預測(2023-2030)
市場調查報告書
商品編碼
1380499

海底救援車市場:現況分析與預測(2023-2030)

Sub-Surface Rescue Vehicle Market: Current Analysis and Forecast (2023-2030)

出版日期: | 出版商: UnivDatos Market Insights Pvt Ltd | 英文 156 Pages | 商品交期: 最快1-2個工作天內

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簡介目錄

由於地下工作環境中事故和事件的增加,預計海底救援車輛市場將以約12.7%的複合年增長率強勁增長。此外,地震、颶風和洪水等自然災害的頻率和嚴重程度不斷增加,導致對地下救援車輛的需求增加。自然災害常常導致大規模的破壞和傷亡,增加了救援受困和受傷人員的需要。地下救援車輛旨在穿過受損的基礎設施到達需要援助的人。此外,自然災害可能導致廣泛的緊急情況,例如洪水、火災和瓦斯洩漏。地下救援車可以穿越災區並到達需要援助的人們身邊。此外,隨著海上活動的增加,溢油、瓦斯外洩、設備故障等事故的風險也增加。這就需要使用海底救援車輛來快速有效地應對此類事件。隨著海上活動的增加,搜救行動的需求也隨之增加。需要海底救援車輛來尋找和拯救被困或擱淺在海底環境中的人員。

按類型劃分,市場分為遙控潛水器(ROV)、自主潛水器(ASV)和混合動力潛水器(HSV)。預計在預測期內,自主潛艦車輛(ASV)的複合年增長率將呈現顯著成長。導致 ASV 高速成長的因素有很多,例如 ASV 被設計為自主運行,這降低了人為錯誤的風險並提高了安全性。此外,與 ROV 相比,ASV 可以運行更長的時間並覆蓋更大的區域,從而使它們能夠更有效地進行搜索和救援行動。除此之外,ASV還配備了先進的感測器和通訊系統,使其能夠在各種環境下運作並執行海底測繪、檢查和清潔等各種任務。此外,ASV還可以在ROV難以或不可能到達的區域作業,例如深海或水下地形複雜的區域。這些是導致 ASV 需求增加的一些因素,這也可以從該領域最近推出的產品中看出。例如,2023 年 7 月,總部位於加爾各答的國防 PSU Garden Reach Shipbuilders and Engineers Ltd推出了一款自主水下航行器 (AUV)。這種輕型、載人、可運輸的 AUV 設計用於完全自主操作。該AUV全長2.15米,作業能力為4小時,作業深度可達300公尺。

按最終用戶劃分,市場分為石油和天然氣行業、勘探行業、海事行業、港口、環境監測和清潔、搜索和救援作業、海底建設和維護以及科學研究和維護。石油和天然氣產業對海底救援車輛的需求量最大。石油和天然氣產業是海底救援車輛的最大消費者之一,因為這些車輛需要執行各種任務,包括石油和天然氣生產、維護和環境監測。石油和天然氣行業對地下救援車輛的需求是由石油和天然氣井的深度和複雜性不斷增加、對更高效和更具成本效益的生產方法的需求以及對環境保護和清理的日益關注所推動的。有幾個因素。推動石油和天然氣產業對海底救援車輛需求的主要趨勢之一是越來越多地使用自動遙控車輛(ROV)進行海底作業。這些車輛不需要人工操作,可以獨立運行,降低事故風險並提高工作效率。此外,ROV 可以實現更精確和準確的數據收集,這在石油和天然氣行業非常重要。此外,海事產業也是海底救援船的主要消費者,需要這些船隻執行各種任務,包括海底檢查、維護和環境監測。

為了更了解潛艦救援車市場的採用情況,該市場已細分為北美(美國、加拿大和北美其他地區)、歐洲(德國、英國、法國、西班牙、義大利和歐洲其他地區)、亞洲太平洋地區(中國、日本、印度、亞太地區其他地區)以及中東和非洲的世界其他地區。地下救援車輛最大的市場是北美。這是由於多種因素綜合作用的結果,例如該行業的高投資、海軍和軍隊的使用增加、技術的可用性以及私營公司和政府機構增加的產品開發。政府和私人企業正在大力投資地下救援技術,從而開發先進的系統和設備。此外,自主水下航行器 (AUV)、遙控船 (ROV) 和無人水下航行器 (UUV) 等先進技術的出現,使水下救援行動更加高效和有效。該技術使海軍和陸軍能夠執行複雜的任務,例如水雷探測、海底監視和環境監測。此外,海軍和軍隊越來越多地將潛艇救援艇用於各種目的,包括搜救行動、海底勘探和環境監測。應用的增加正在創造對這些車輛的需求並推動市場向前發展。最近該領域產品的推出證明了北美對潛水艇救援車輛不斷增長的需求。例如,2022年12月,美國海軍正在展示大型UUV(無人水下航行器)發射和回收系統。該演示展示了陸基發射和回收方法以及從兩棲艦艇發射大型無人水下航行器(UUV)的新穎解決方案。

目錄

第一章 市場介紹

  • 市場定義
  • 主要目標
  • 利益相關者
  • 限制

第二章 研究方法或假設

  • 調查過程
  • 調查方法
  • 受訪者簡介

第三章市場總結

第 4 章執行摘要

第五章 COVID-19對海底救援車輛市場的影響

第六章 2020-2030年海底救援車市場收入

第 7 章按類型劃分的市場洞察

  • 遙控潛水器 (ROV)
  • 自主潛水艇(ASV)
  • 混合動力潛艦(HSV)

第 8 章 最終用戶的市場洞察

  • 石油和天然氣工業
  • 礦業
  • 海運業
  • 港口
  • 環境監測與淨化
  • 搜救行動
  • 海底建設和維護
  • 科學研究與維護

第 9 章按地區劃分的市場洞察

  • 北美
    • 美國
    • 加拿大
    • 北美其他地區
  • 歐洲
    • 德國
    • 英國。
    • 法國
    • 意大利
    • 西班牙
    • 歐洲其他地區
  • 亞太地區
    • 中國
    • 印度
    • 日本
    • 韓國
    • 亞太其他地區
  • 世界其他地區 中東/非洲

第十章 海底救援車市場動態

  • 市場驅動力
  • 市場挑戰
  • 影響分析

第十一章 海底救援車市場機會

第十二章 水下救援車市場趨勢

第十三章需求面與供給面分析

  • 需求面分析
  • 供給側分析

第十四章價值鏈分析

第15章 競爭場景

  • 競爭格局
    • 波特五力分析

第十六章公司簡介

  • BAE Systems
  • Teledyne Technologies
  • L3Harris Technologies, Inc.
  • Lockheed Martin Corporation.
  • Oceaneering International, Inc.
  • SAAB
  • Fugro
  • General Dynamics Corporation
  • International Submarine Engineering Limited
  • KONGSBERG

第十七章 免責聲明

簡介目錄
Product Code: UMAU212391

Subsurface rescue vehicles are specialized vehicles designed to operate in confined spaces, such as tunnels, mines, and other underground environments. These vehicles offer several advantages over traditional rescue methods, including increased safety, improved accessibility, and enhanced capabilities. Subsurface rescue vehicles are used in various industries, including mining, construction, and emergency response, and have a variety of applications, including rescue operations, maintenance, inspection, exploration, and scientific research.

The Sub-Surface Rescue Vehicle Market is expected to grow at a strong CAGR of around 12.7% owing to the increasing number of accidents and incidents in underground working environments. Furthermore, the increasing frequency and severity of natural disasters, such as earthquakes, hurricanes, and floods, are leading to a rising demand for subsurface rescue vehicles. Natural disasters often result in widespread destruction and loss of life, leading to a greater need for rescue operations to save those trapped or injured. Subsurface rescue vehicles are designed to navigate through damaged infrastructure and reach those in need of assistance. Moreover, natural disasters can cause widespread emergencies like flooding, fires, and gas leaks. Subsurface rescue vehicles can navigate through affected areas and reach those in need of assistance. Additionally, with the increase in ocean activities, there is an increased risk of accidents occurring, such as oil spills, gas leaks, and equipment failures. This requires the use of subsurface rescue vehicles to respond quickly and effectively to these incidents. With the increase in ocean activities, there is an increased need for search and rescue operations. Subsurface rescue vehicles are necessary to locate and rescue individuals who may be trapped or stranded in underwater environments.

On the basis of type, the market is segmented into the remotely operated vehicle (ROV), autonomous sub-surface vehicle (ASV), and hybrid sub-surface vehicle (HSV). Autonomous sub-surface vehicles (ASV) are anticipated to witness a significant growth rate in CAGR terms during the forecast period. Several factors will be playing out that will lead to high growth of ASVs, such as increased safety, where ASVs are designed to operate autonomously, which reduces the risk of human error. Furthermore, ASVs can operate for longer periods of time and cover larger areas than ROVs, making them more efficient for search and rescue operations. In addition to this, ASVs are equipped with advanced sensors and communication systems, which enable them to operate in a variety of environments and perform a range of tasks, such as underwater mapping, inspection, and cleaning. Moreover, ASVs can operate in areas that are difficult or impossible for ROVs to reach, such as in deep water or in areas with complex underwater terrain. These are some of the factors that are responsible for the rising demand for ASVs and can also be seen in the recent product launches in this space. For instance, in July 2023, Kolkata-based defense PSU Garden Reach Shipbuilders and Engineers Ltd launched an autonomous underwater vehicle (AUV). The lightweight and manned portable AUV has been designed to operate in a totally autonomous manner. The AUV is 2.15 meter long, have an operational capacity of 4 hours, and is capable of operating up to a depth of 300 meters.

Based on end-user, the market is segmented into the oil and gas industry, the Mining industry, the maritime industry, ports and harbors, environmental monitoring and cleanup, search and rescue operation, underwater construction and maintenance, and scientific research and maintenance. The oil and gas industry generated the highest demand for subsurface rescue vehicles. The oil and gas industry is one of the largest consumers of subsurface rescue vehicles, as it requires these vehicles for a variety of tasks, including oil and gas production, maintenance, and environmental monitoring. The industry's demand for subsurface rescue vehicles is driven by several factors, including the increasing depth and complexity of oil and gas wells, the need for more efficient and cost-effective methods of production, and the growing focus on environmental protection and cleanup. One of the key trends driving the demand for subsurface rescue vehicles in the oil and gas industry is the increasing use of autonomous and remotely operated vehicles (ROVs) for underwater tasks. These vehicles are able to operate independently, without the need for a human operator, which reduces the risk of accidents and increases the efficiency of operations. Additionally, the use of ROVs allows for more precise and accurate data collection, which is critical in the oil and gas industry. Furthermore, the maritime industry is also a key consumer of subsurface rescue vehicles, as it requires these vehicles for a variety of tasks, including underwater inspection and maintenance, and environmental monitoring.

For a better understanding of the market adoption of the sub-surface rescue vehicle market, the market is analyzed based on its worldwide presence in countries such as North America (The U.S., Canada, and the Rest of North America), Europe (Germany, The U.K., France, Spain, Italy, Rest of Europe), Asia-Pacific (China, Japan, India, Rest of Asia-Pacific), Rest of World. The region with the largest market for subsurface rescue vehicles is North America. This is due to a combination of factors such as high investments in this space, increasing use by navies and armies, availability of technology, and increasing product development by both private companies and government agencies. Governments and private companies have been investing heavily in subsurface rescue technologies, which has led to the development of advanced systems and equipment. Furthermore, The availability of advanced technologies such as autonomous underwater vehicles (AUVs), remotely operated vehicles (ROVs), and unmanned underwater vehicles (UUVs) has made subsurface rescue operations more efficient and effective. This technology has enabled navies and armies to perform complex tasks such as mine detection, underwater surveillance, and environmental monitoring. Additionally, Navies and armies are increasingly using subsurface rescue vehicles for various purposes such as search and rescue operations, underwater exploration, and environmental monitoring. This increased use has created a demand for these vehicles, which has driven the market forward. This rise in demand for sub-surface rescue vehicles in North America can also be seen from the recent product launches happening in this space. For instance, in December 2022, the US Navy Demonstrated a Large UUV (Unmanned Underwater Vehicle) Launch and recovery System. The demonstration displayed both a land-based launch and recovery approach and a novel solution for launching large Unmanned Underwater Vehicles (UUVs) from amphibious ships.

Some of the major players operating in the market include: BAE Systems; Teledyne Technologies; L3Harris Technologies, Inc.; Lockheed Martin Corporation.; Oceaneering International, Inc.; SAAB; Fugro; General Dynamics Corporation; International Submarine Engineering Limited; and KONGSBERG

TABLE OF CONTENTS

1 MARKET INTRODUCTION

  • 1.1. Market Definitions
  • 1.2. Main Objective
  • 1.3. Stakeholders
  • 1.4. Limitation

2 RESEARCH METHODOLOGY OR ASSUMPTION

  • 2.1. Research Process of the Sub-Surface Rescue Vehicle Market
  • 2.2. Research Methodology of the Sub-Surface Rescue Vehicle Market
  • 2.3. Respondent Profile

3 MARKET SYNOPSIS

4 EXECUTIVE SUMMARY

5 IMPACT OF COVID-19 ON THE SUB-SURFACE RESCUE VEHICLE MARKET

6 SUB-SURFACE RESCUE VEHICLE MARKET REVENUE (USD BN), 2020-2030F

7 MARKET INSIGHTS BY TYPE

  • 7.1. Remotely Operated Vehicle (ROV)
  • 7.2. Autonomous Sub-Surface Vehicle (ASV)
  • 7.3. Hybrid Sub-Surface Vehicle (HSV)

8 MARKET INSIGHTS BY END-USER

  • 8.1. Oil and Gas Industry
  • 8.2. Mining Industry
  • 8.3. Maritime Industry
  • 8.4. Ports and Harbour
  • 8.5. Environmental Monitoring and Cleanup
  • 8.6. Search and Rescue Operation
  • 8.7. Underwater Construction and Maintenance
  • 8.8. Scientific Research and Maintenance

9 MARKET INSIGHTS BY REGION

  • 9.1. North America
    • 9.1.1. The U.S.
    • 9.1.2. Canada
    • 9.1.3. Rest of North America
  • 9.2. Europe
    • 9.2.1. Germany
    • 9.2.2. The U.K.
    • 9.2.3. France
    • 9.2.4. Italy
    • 9.2.5. Spain
    • 9.2.6. Rest of Europe
  • 9.3. Asia-Pacific
    • 9.3.1. China
    • 9.3.2. India
    • 9.3.3. Japan
    • 9.3.4. South Korea
    • 9.3.5. Rest of Asia-Pacific
  • 9.4. Rest of the World

10 SUB-SURFACE RESCUE VEHICLE MARKET DYNAMICS

  • 10.1. Market Drivers
  • 10.2. Market Challenges
  • 10.3. Impact Analysis

11 SUB-SURFACE RESCUE VEHICLE MARKET OPPORTUNITIES

12 SUB-SURFACE RESCUE VEHICLE MARKET TRENDS

13 DEMAND AND SUPPLY-SIDE ANALYSIS

  • 13.1. Demand Side Analysis
  • 13.2. Supply Side Analysis

14 VALUE CHAIN ANALYSIS

15 COMPETITIVE SCENARIO

  • 15.1. Competitive Landscape
    • 15.1.1. Porters Fiver Forces Analysis

16 COMPANY PROFILED

  • 16.1. BAE Systems
  • 16.2. Teledyne Technologies
  • 16.3. L3Harris Technologies, Inc.
  • 16.4. Lockheed Martin Corporation.
  • 16.5. Oceaneering International, Inc.
  • 16.6. SAAB
  • 16.7. Fugro
  • 16.8. General Dynamics Corporation
  • 16.9. International Submarine Engineering Limited
  • 16.10. KONGSBERG

17 DISCLAIMER