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市场调查报告书
商品编码
1370841
高完整性压力保护系统市场 - 2018-2028 年全球产业规模、份额、趋势、机会与预测,按类型、产品、产业、地区细分High Integrity Pressure Protection System Market - Global Industry Size, Share, Trends, Opportunity, and Forecast, 2018-2028 Segmented By Type, By Offering, By Industry, By Region |
由于减少火炬以保护环境的要求不断增加,以及政府安装严格的监管标准以维护製造安全,预计 2024-2028 年全球高完整性压力保护系统市场将强劲成长设施。由于对值得信赖的高品质系统的需求不断增长。此外,我们正在不断增加对技术进步的投资,以使营运更安全、更有效,同时成本也更低。自动化、机器人和人工智慧等尖端技术带来的生产力持续上升推动了对这些系统的需求。
市场概况 | |
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预测期 | 2024-2028 |
2022 年市场规模 | 4.9632亿美元 |
2028 年市场规模 | 7.9727亿美元 |
2023-2028 年复合年增长率 | 8.2% |
成长最快的细分市场 | 发电 |
最大的市场 | 亚太 |
在石油和天然气生产设施中,天然气燃烧通常发生在定期维护、设备维修或停机期间。此方法使得气体收集和处理系统能够在受控的情况下释放压力。为了保持压力并确保工厂安全有效的运行,需要使用它。然而,由于燃烧丰富的自然资源并产生大量的二氧化碳、二氧化硫和一氧化二氮气体,所有这些气体都对环境产生负面影响,天然气燃烧最近已成为其中之一。主要关注的是製程工业。与此类似,排气也是为了在各个处理阶段保持安全。在此过程中会排放出未燃烧的气体(不纯气体),可能对人体健康有害。石油和天然气生产商使用浮式液化天然气 (FLNG) 船在正常操作条件下进行零碳氢化合物气体燃烧,以解决与气体燃烧和排放相关的问题。此外,HIPPS 设置在 FLNG 气体输入处,可在过压情况下停止气体流动,从而最大限度地减少火炬的需要。称为 HIPPS 的值得信赖的安全仪表系统 (SIS) 用于阻止危险、爆炸和易燃化学物质的释放以及灾难性的过压。
在中游产业,从井口到海上储存设施和最终用户加工厂的生产管线经常被建造为承受高井口关井压力,即使在正常操作条件下管线中的压力明显较低。在系统中加入这种压力缓衝器可能会很昂贵,并且从经济角度来看会危及其可行性。 HIPPS 透过降低管道压力来解决这个问题。一旦达到预定水平,就会立即关闭管道。为此,使用了节流系统,该系统的阀门在压力升高时关闭,以监控恆定的压力下降。 HIPPS 的控制系统和阀门可以侦测各种安全状况。
透过快速隔离过压源来提供过压保护。最后的元件、逻辑解算器和启动器构成了整个 HIPPS 套件。作为侦测危险状况所需输入的现场感测器是引发者。这些输入由逻辑解算器处理,产生准确的输出,修改最终元素的状态以减轻危险。根据国际电工委员会 (IEC) 标准,逻辑解算器必须了解用于防止将系统缺陷引入安全系统硬体和软体的策略和预防措施。 IEC 61511 允许在 SIL 2 和 SIL 3 应用中使用安全配置的 PLC。针对安全配置的 PLC 列出的规格超出了典型 PLC 的功能。标准工业级 PLC 可能无法满足这些标准。安全PLC的软体还包含各种错误侦测和监控工具,以确保安全模组正常运作。
HIPPS 结合了各种安全设备,包括压力传送器、逻辑解算器、场启动器和最终元件(阀门和执行器)。它是作为安全预防措施而实施的,旨在在紧急情况下保护工人、设备和生产线。然而,HIPPS 组件的安装、维护和维修成本给组织带来了沉重的财务负担。儘管大型组织可以承担这些成本,但中小型组织可能会发现它具有挑战性。此外,组织必须更新其安全系统,因为 HIPPS 必须遵守定期修订的监管标准,以回应新法规和技术改进。为了部署安全系统和组件,需要更多的资金。
全球高完整性压力保护系统市场根据类型、产品、产业和地区进行细分。根据类型,市场分为电子 HIPPS 和液压/机械 HIPPS。依产品提供,市场分为组件和服务。依行业,市场分为石油和天然气、发电、化工等。根据地区,市场进一步分为北美、亚太地区、欧洲、南美、中东和非洲。
全球高完整性压力保护系统市场的主要市场参与者是罗克韦尔自动化公司、艾默生电气公司、施耐德电气公司、ABB 有限公司、西门子股份公司、斯伦贝谢公司、L&T 阀门有限公司、莫加斯工业公司、霍尼韦尔国际公司.,横河电机公司。
在本报告中,除了以下详细介绍的产业趋势外,全球高完整性压力保护系统市场也分为以下几类。
(註:公司名单可依客户要求客製化。)
Global high integrity pressure protection system market is expected to grow at a robust pace in the forecast period 2024-2028 owing to the increasing requirement to reduce flaring to protect the environment and the installation by governments of strict regulatory standards to maintain safety and security at manufacturing facilities. due to the growing demand for trustworthy and high-quality systems. Moreover, rising investments are being made for the technological advancements for making operations safer and more effective along with being less expensive. The continual rise in production rates brought on by cutting-edge technologies like automation, robotics, and artificial intelligence is what is driving demand for these systems.
High Integrity Protection Systems (HIPPS) are specialized safety systems that serve as the final line of defense in high-risk and life-or-death circumstances. The HIPPS, which is completely autonomous, continuously monitors safety parameters to protect the process, the plant's machinery, and the surrounding environment. The HIPPS automatically closes safety valves to bring the system to a safe state if gas pressure rises too high. A HIPPS logically combines measured values to assess whether process intervention is necessary while continuously monitoring process parameters.
Market Overview | |
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Forecast Period | 2024-2028 |
Market Size 2022 | USD 496.32 Million |
Market Size 2028 | USD 797.27 Million |
CAGR 2023-2028 | 8.2% |
Fastest Growing Segment | Power Generation |
Largest Market | Asia-Pacific |
At oil and gas production facilities, gas flaring typically takes place during scheduled maintenance, equipment repairs, or shutdown occasions. The method enables the gas collection and processing systems to release pressure under control. In order to maintain pressures and guarantee secure and effective operations in industrial plants, it is utilized. However, due to the burning of rich natural resources and the significant amounts of carbon dioxide, Sulphur dioxide, and nitrous oxide gases that are produced-all of which have a negative impact on the environment-gas flaring has recently grown to be one of the primary concerns in the process industries. Similar to this, gas venting is also done to preserve safety throughout various treatment stages. Unburnt gases (impure gases) are emitted during this process, which could be harmful to human health. Oil and gas producers use Floating Liquefied Natural Gas (FLNG) vessels for zero hydrocarbon gas flaring under normal operating conditions to combat the problems related to gas flaring and venting. Additionally, the HIPPS is set up at the FLNG gas input to stop the flow of gas during over pressurization situations, minimizing the need for flaring. A trustworthy safety instrumented system (SIS) called HIPPS is used to stop hazardous, explosive, and flammable chemical releases and catastrophic over pressurization.
In the midstream industry, production flowlines from the wellhead to offshore storage facilities and to end-user processing plants are frequently constructed to withstand high wellhead shut-in pressures, even though the pressure in the flowline is significantly lower during normal operating conditions. Including this pressure buffer in the system can be expensive and jeopardize its viability from an economic standpoint. HIPPS gets around this issue by reducing pipeline pressure. As soon as a predetermined level is reached beyond, it immediately closes the pipeline. To do this, a choke system is used, with valves that close if the pressure rises, to monitor a constant pressure decline. Various safety circumstances can be detected by HIPPS's control systems and valves.
Overpressure protection is provided by swiftly isolating the source of the overpressure. The final component, a logic solver, and initiators make up the whole HIPPS package. Field sensors that serve as the inputs needed to detect the dangerous condition are the initiators. These inputs are processed by the logic solver, which produces accurate outputs that modify the final elements' states to lessen the danger. According to the International Electrotechnical Commission (IEC) standards, logic solvers must be knowledgeable about the strategies and precautions that should be used to guard against the introduction of systematic flaws into the safety system's hardware and software. The use of a safety-configured PLC in SIL 2 and SIL 3 applications is allowed by IEC 61511. The specifications listed for a safety-configured PLC are above and above the capabilities of a typical PLC. Standard industrial-grade PLCs might not be able to meet these standards. Safety PLC's software is also designed to contain a variety of error detection and monitoring tools to make sure the safety modules are functioning properly.
A variety of safety devices, including pressure transmitters, logic solvers, field initiators, and final elements-valves and actuators-are combined to form the HIPPS. It is put in place as a safety precaution to protect workers, equipment, and manufacturing lines in an emergency. The installation, maintenance, and repair costs for HIPPS components, however, place a heavy financial burden on organizations. Although large organizations can handle these costs, medium- and small-sized organizations may find it challenging. Additionally, organizations must update their safety systems since HIPPSs must adhere to regulatory standards that are periodically revised in response to new regulations and technological improvements. For the deployment of safety systems and components, more money is needed.
The Global High Integrity Pressure Protection System Market is segmented based on type, offering, industry and region. Based on type, the market is bifurcated into electronics HIPPS and hydraulic/mechanical HIPPS. Based on offering, the market is bifurcated into component and services. Based on industry, the market is bifurcated into oil & gas, power generation, chemical and others. Based on region, the market is further bifurcated into North America, Asia-Pacific, Europe, South America, Middle East & Africa.
The main market players in the Global High Integrity Pressure Protection System Market are Rockwell Automation Inc., Emerson Electric Co., Schneider Electric SE, ABB Ltd, Siemens AG, Schlumberger NV, L&T Valves Limited, Mogas Industries Inc., Honeywell International, Inc., Yokogawa Electric Corporation.
In this report, Global High Integrity Pressure Protection System Market has been segmented into the following categories, in addition to the industry trends which have also been detailed below.
(Note: The companies list can be customized based on the client requirements.)