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Trenchless Pipe Rehabilitation Market

ID: MRFR/PCM/26856-HCR
111 Pages
Snehal Singh
Last Updated: May 15, 2026

非开挖管道修复市场研究报告按管道修复方法(固化--放置管道(CIPP)、管道爆裂、滑衬、喷涂管道衬里)、按直径(小直径管道(小于 6 英寸)、中直径管道(6 至24 英寸)、大直径管道(超过 24 英寸))、按材料(聚氯乙烯 (PVC)、聚乙烯 (PE)、玻璃纤维、环氧树脂)、按状态评估方法(闭路电视 (CCTV) 检查、声学泄漏检测、探地雷达 (GPR))和按地区(北美、欧洲、南美、亚太地区、中东和非洲) - 预测至 2035

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Trenchless Pipe Rehabilitation Market Infographic
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Trenchless Pipe Rehabilitation Market 摘要

根据 MRFR 分析,非开挖管道修复市场规模估计为21.12 USD Billion2024。 非开挖管道修复行业预计将从 22.7 USD Billion2025 增长到 46.71 USD Billion 2035,在预测期内呈现 7.48% 的复合年增长率 (CAGR) 2025 - 2035。

主要市场趋势和亮点

在技​​术进步和城市化进程不断加快的推动下,非开挖管道修复市场有望实现大幅增长。

  • 在老化的基础设施和城市发展的推动下,北美仍然是非开挖管道修复的最大市场。 在快速城市化和基础设施投资的推动下,亚太地区正在成为增长最快的市场。 下水道修复继续主导市场,而石油和天然气管道修复由于能源需求不断增长而增长最快。 主要市场驱动因素包括非开挖解决方案的成本效益和促进环境可持续性的监管支持。

市场规模与预测

2024 市场规模 21.12 (USD Billion)
2035 市场规模 46.71 (USD Billion)
CAGR (2025 - 2035) 7.48%
最大区域市场份额2024 北美

主要参与者

situform Technologies (US)、Aegion Corporion (US)、美国管道 (US)、Per Aarsleff (DK)、Trelleborg (SE)、下水道设备公司 (US)、Roto-Rooter (US),涡流公司 (US),贝克休斯 (US)

Our Impact
Enabled $4.3B Revenue Impact for Fortune 500 and Leading Multinationals
Partnering with 2000+ Global Organizations Each Year
30K+ Citations by Top-Tier Firms in the Industry

Trenchless Pipe Rehabilitation Market 趋势

由于对高效和可持续基础设施解决方案的需求不断增长,非开挖管道修复市场目前正在经历显着的转变。这种方法可以最大限度地减少地表破坏,正在受到市政当局和私人实体的青睐。人们对环境问题的认识不断增强,以及维护老化管道的必要性正在推动对非开挖技术的投资。随着城市地区的扩张,对减少停机时间和提高服务可靠性的创新康复技术的需求变得更加明显。此外,技术的进步正在实现更有效和更具成本效益的方法,这可能会重塑管道维护和维修的格局。 此外,非开挖管道修复市场似乎受到鼓励可持续实践的监管框架的影响。各国政府越来越重视环保解决方案,这可能导致资金转向非开挖方法。这一趋势表明,未来传统的挖掘技术将逐渐被更现代的方法所取代。随着利益相关者认识到非开挖修复的长期好处,包括减少环境影响和降低总体成本,市场可能会持续增长。技术、环保意识和监管支持的融合表明非开挖管道修复市场未来几年的前景光明。

技术进步

最新创新非开挖技术正在提高管道修复的效率和效果。新材料和新方法正在开发中,这可能会提高修复后管道的耐用性和性能。

环境考虑

非开挖管道修复市场中的可持续实践越来越受到重视。随着环境法规的收紧,对尽量减少生态破坏的方法的需求可能会增加。

监管支持

政府政策越来越青睐非开挖修复技术。这种监管支持可以促进市政当局采用这些先进方法的资金和激励,从而有可能加速市场增长。

Trenchless Pipe Rehabilitation Market Drivers

不断增长的基础设施需求

全球非开挖管道修复市场行业受到基础设施发展需求不断增长的推动。城市化和人口增长需要扩大和维护供水和污水处理系统。世界各国政府正在大力投资基础设施项目,其中通常包括非开挖修复方法。例如,2024,市场预计将达到21.1 USD Billion,反映出对高效且破坏性较小的修复技术的迫切需求。随着城市寻求对老化基础设施进行现代化改造,同时最大限度地减少地表破坏,从而增强非开挖技术的吸引力,预计这一趋势将持续下去。

Trenchless Pipe Rehabilitation Market市场的主要公司包括

未来展望

Trenchless Pipe Rehabilitation Market 未来展望

新机遇在于:

  • 开发先进的机器人检测技术 集成 IoT 实时监控解决方案 通过老化的管道系统扩展到新兴市场

截至2035,在创新技术和需求增长的推动下,市场预计将实现强劲增长。

报告范围

市场规模 2024 21.12 (USD Billion)
市场规模 2025 22.7 (USD Billion)
市场规模 2035 46.71 (USD Billion)
复合年增长率 (CAGR) 7.48% (2025 - 2035)
报告范围 收入预测、竞争格局、增长因素和趋势
基准年 2024
市场预测期 2025 - 2035
史料 2019 - 2024
市场预测单位 USD 十亿
主要公司简介 situform Technologies (US)、Aegion Corporion (US)、美国管道 (US)、Per Aarsleff (DK)、Trelleborg (SE)、下水道设备公司 (US)、Roto-Rooter (US),涡流公司 (US),贝克休斯 (US)
涵盖的细分市场 应用、技术、最终用途
主要市场机会 非开挖技术的进步提高了效率并减少了对环境的影响非开挖管道修复市场。
主要市场动态 技术进步和监管压力推动非开挖管道修复市场的创新和竞争。
覆盖国家 北美、欧洲、APAC、南美洲、MEA

FAQs

2035 对非开挖管道修复市场的预计市场估值是多少?

非开挖管道修复市场的预计市场估值为 46.71 USD Billion × 2035。

非开挖管道修复市场2024 的整体市场估值是多少?

非开挖管道修复市场的整体市场估值为21.12 USD Billion2024。

2025 - 2035 年预测期内,非开挖管道修复市场的预期复合年增长率是多少?

The expected CAGR for the Trenchless Pipe Rehabilition Market durg the forecast period 2025 - 2035 is 7.48%.

非开挖管道修复市场的哪个部分的估值最高2024?

2024,供水管道修复部门的估值最高为7.0 USD Billion。

非开挖管道修复市场采用了哪些关键技术?

市场的关键技术包括固化放置管道、管道爆破、滑移和微型隧道。

哪家公司是非开挖管道修复市场的领先者?

situform Technologies 被公认为非开挖管道修复市场的领先厂商。

2035 对下水道修复部门的预计估值是多少?

下水道修复部分的预计估值为 11.0 USD Billion × 2035。

工业最终用途领域非开挖管道修复市场表现如何?

工业最终用途领域的估值预计将达到 2035 的 10.0 USD Billion。

爆管技术非开挖管道修复市场的预期增长是多少?

The Pipe Burstg technology is expected to grow to a valuion of 11.73 USD Billion2035.

非开挖管道修复市场微型隧道技术的估值范围是多少?

The valuion range for the Microtunnelg technology is projected to be between 3.21 and 7.9 USD Billion2035.

作者
Author
Author Profile
Snehal Singh LinkedIn
Manager - Research
High acumen in analyzing complex macro & micro markets with more than 6 years of work experience in the field of market research. By implementing her analytical skills in forecasting and estimation into market research reports, she has expertise in Packaging, Construction, and Equipment domains. She handles a team size of 20-25 resources and ensures smooth running of the projects, associated marketing activities, and client servicing.
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Research Approach

Secondary Research

The secondary research process involved comprehensive analysis of regulatory databases, industry publications, technical standards, and authoritative infrastructure organizations. Key sources included the US Environmental Protection Agency (EPA), Federal Highway Administration (FHWA), American Society of Civil Engineers (ASCE), American Water Works Association (AWWA), Water Environment Federation (WEF), National Association of Sewer Service Companies (NASSCO), North American Society for Trenchless Technology (NASTT), International Society for Trenchless Technology (ISTT), US Bureau of Transportation Statistics (BTS), Eurostat Infrastructure Database, European Environment Agency (EEA), Organisation for Economic Co-operation and Development (OECD) Infrastructure Statistics, World Bank Infrastructure Data, and national public works associations from key markets. These sources were used to collect pipeline infrastructure condition data, regulatory compliance requirements, technology adoption rates, municipal spending patterns, and market landscape analysis for cured-in-place pipe (CIPP), pipe bursting, slip lining, spray-on pipe lining, and other trenchless rehabilitation technologies.

Additional authoritative sources included ASTM International (F1216, F1743 standards), ISO/TC 138 standards for plastic pipes, US Census Bureau Construction Spending Reports, Environment Canada, UK Environment Agency, German Institute for Standardization (DIN), Japan Sewage Works Agency, and Australian Bureau of Statistics infrastructure datasets.

Primary Research

In order to gather both qualitative and quantitative insights, supply-side and demand-side stakeholders were interviewed during the primary research process. CEOs, VPs of Engineering, heads of R&D, and commercial directors from liner material suppliers, specialist contractors, and trenchless technology makers were examples of supply-side sources. Municipal public works directors, utility managers, civil engineering consultants, procurement leads from water and wastewater authorities, and project managers from oil and gas pipeline operators were examples of demand-side suppliers. In addition to gathering information on pricing tactics, procurement trends, and the mechanics of regulatory compliance, primary research verified technology adoption timetables and validated market segmentation.

Primary Respondent Breakdown:

By Designation: C-level Primaries (32%), Director Level (30%), Others (38%)

By Region: North America (32%), Europe (30%), Asia-Pacific (28%), Rest of World (10%)

Market Size Estimation

Global market valuation was derived through revenue mapping and project volume analysis. The methodology included:

Identification of 50+ key manufacturers and service providers across North America, Europe, Asia-Pacific, and Latin America

Technology mapping across Cured-in-Place Pipe (CIPP), Pipe Bursting, Slip Lining, Spray-on Pipe Lining, and other rehabilitation methods

Material analysis across Polyvinyl Chloride (PVC), Polyethylene (PE), Fiberglass, Epoxy, and other resin systems

Diameter segment analysis across Small Diameter (<6 inches), Medium Diameter (6-24 inches), Large Diameter (>24 inches) pipes

Analysis of reported and modeled annual revenues specific to trenchless rehabilitation portfolios

Coverage of manufacturers and contractors representing 75-80% of global market share in 2024

Extrapolation using bottom-up (project volume × ASP by country/region) and top-down (manufacturer/contractor revenue validation) approaches to derive segment-specific valuations

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