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We deliver engineering, design, construction & maintenance solutions for oil & gas, petrochemicals, green energy, agro-based industries and utilities, specializing in EPC, structural steel, piping, tanks, plant installation, commissioning & turnarounds.

19/07/2026

Searah Begins Operations in Malaysia, Marking a New Chapter in Regional Energy Development

Searah Ltd, the 50:50 upstream joint venture between Malaysia's PETRONAS and Italy's global energy company Eni, has officially commenced operations in Malaysia, marking a significant milestone in Southeast Asia's oil and gas industry.

The launch of Searah represents a strategic collaboration between two internationally recognised energy companies, combining PETRONAS' extensive experience in Malaysia with Eni's global expertise in exploration and production. The new company has been established to unlock greater value from upstream assets while driving long-term growth across Malaysia and Indonesia.
Effective 1 July, Searah (Malaysia) Sdn Bhd officially assumed operatorship of five upstream oil and gas assets previously managed by PETRONAS Carigali Sdn Bhd, following the successful completion of all regulatory and operational transfer requirements. This transition signals the beginning of Searah's role as an independent upstream operator in Malaysia.

Searah's regional portfolio currently consists of 19 producing and development assets, including five in Malaysia and 14 in Indonesia. Together, these assets provide an initial production capacity of approximately 300,000 barrels of oil equivalent per day (boepd). The company has set an ambitious target of increasing production to more than 500,000 boepd within the next three years, positioning Searah among the region's leading independent upstream energy companies.

To support its expansion, PETRONAS and Eni have previously announced plans to evaluate investments of up to US$20 billion (approximately RM81.4 billion) over the next five years. The venture is further strengthened by a US$6 billion credit facility, providing the financial flexibility required to accelerate exploration, field development, and production optimisation.

Beyond its existing production, Searah possesses a substantial resource base exceeding three billion barrels of oil equivalent in discovered reserves, together with significant exploration opportunities across Malaysia and Indonesia. These resources provide a strong platform for sustainable growth while supporting regional energy security for decades to come.

Searah (Malaysia) Chief Executive Officer Mohd Johan Ariff Mohd Supian emphasised that the company's immediate priority is to ensure the safe, reliable, and efficient operation of its newly acquired assets. At the same time, the company aims to create long-term value for stakeholders by improving operational excellence, investing in its workforce, and establishing a solid foundation for future expansion.

One of Searah's defining characteristics is its "satellite model" corporate structure. Under this model, the joint venture operates independently from its parent companies while continuing to benefit from their technical expertise and strategic support. This independence enables Searah to access external financing, make agile business decisions, and pursue its own investment and development strategies, allowing it to respond more effectively to evolving market opportunities.

The establishment of Searah reflects the shared vision of PETRONAS and Eni to strengthen their upstream presence in Southeast Asia through innovation, operational excellence, and strategic investment. As the company expands its production capacity and develops new energy resources, Searah is expected to play an increasingly important role in supporting regional energy demand, enhancing economic growth, and reinforcing Malaysia's position as a leading energy producer in Asia.

Progress in Motion: Mechanical Installation Advances at the Project SiteConstruction activities continue to progress ste...
07/07/2026

Progress in Motion: Mechanical Installation Advances at the Project Site

Construction activities continue to progress steadily as mechanical installation works enter a significant phase at the project site. The latest site progress reflects the successful coordination of civil, mechanical, and scaffolding teams, demonstrating the collaborative effort required to deliver a complex infrastructure project.

The photograph captures a large reinforced concrete structure where multiple crews are actively engaged in installing process piping and associated equipment. Several large-diameter pipelines, complete with flanged connections and valve assemblies, have already been positioned, indicating that major underground utility and process systems are taking shape. Temporary access platforms and scaffolding have been erected throughout the structure, enabling workers to safely reach various elevations and installation points.

One of the most notable achievements at this stage is the installation of the pipe manifold system, which will play a critical role in the facility's operation. The visible pipework has been carefully aligned and supported, while protective wrapping on several components suggests that the equipment is being safeguarded until final testing and commissioning.

Construction activities are being carried out by experienced personnel equipped with the required personal protective equipment (PPE), including safety helmets and high-visibility clothing. Their coordinated efforts demonstrate a strong commitment to maintaining productivity while adhering to site safety practices.

As with any major construction project, maintaining a safe working environment remains a top priority. Continuous attention is being given to scaffold integrity, housekeeping, temporary access routes, and material organization to ensure that work proceeds efficiently while minimizing potential hazards. Regular inspections and supervision are essential to maintaining compliance with occupational safety requirements throughout the installation process.

With the civil structure substantially completed, the project has now transitioned into a critical mechanical installation phase. The successful completion of these activities will pave the way for equipment testing, system integration, and eventual commissioning of the facility.

Overall, the project continues to make encouraging progress, reflecting the dedication, technical expertise, and teamwork of everyone involved. Each completed milestone brings the project one step closer to delivering a reliable and efficient infrastructure that will serve the community for years to come.

Site Location: Bandar Bukit RajaWork Progress (Today):Construction works for the sewage treatment system are currently i...
02/07/2026

Site Location: Bandar Bukit Raja

Work Progress (Today):
Construction works for the sewage treatment system are currently in progress at the Bandar Bukit Raja project site. Today's activities include the ex*****on of civil and mechanical works related to the installation and development of the sewage treatment system, in accordance with the approved project specifications and construction schedule. All works are being carried out under the required safety procedures and quality control standards to ensure compliance with project requirements.

Construction Progress of the Sewerage System at Bukit Raja, Shah AlamConstruction works on the Bukit Raja Sewerage Syste...
28/06/2026

Construction Progress of the Sewerage System at Bukit Raja, Shah Alam

Construction works on the Bukit Raja Sewerage System in Shah Alam are progressing steadily as part of the development of essential underground infrastructure to support the area's growing residential, commercial, and industrial sectors. The project is designed to enhance wastewater collection and treatment capacity while ensuring a reliable and environmentally sustainable sewerage network for future development.

The current phase involves the installation of large-diameter sewer pipelines and reinforced concrete structures, including the precise placement of flanged steel pipes using heavy lifting equipment. The works require careful coordination between crane operators, engineers, and construction personnel to ensure accurate alignment, structural integrity, and compliance with safety and engineering standards.

Once completed, the Bukit Raja Sewerage System will play a vital role in improving public sanitation, protecting local water resources, and supporting the long-term urban expansion of Shah Alam. The project reflects a commitment to developing modern, resilient, and sustainable infrastructure capable of meeting the increasing demands of one of Selangor's fastest-growing economic corridors.

16/06/2026

πŸš’βš“ Exclusive First Look at an Offshore Flotel Disconnection Operation!

Today, we’re taking you behind the scenes of a crucial offshore activity; the preparation and ex*****on of a flotel disconnection. Watch the videos and get a closer look at one of the many complex operations that form part of daily life at sea.

A flotel, or floating accommodation vessel, serves as a temporary home for hundreds of offshore workers supporting maintenance, construction, and production activities. Disconnecting a flotel is far more than simply releasing mooring lines; it is a carefully coordinated process that requires extensive planning, precise timing, and seamless communication between multiple teams both offshore and onshore.

Every stage of the operation is governed by strict safety procedures. Marine crews, offshore installation personnel, dynamic positioning operators, and support vessels must work together to ensure that the disconnection is carried out efficiently while maintaining the highest standards of operational safety. Weather conditions, vessel positioning, equipment readiness, and emergency response protocols all play a critical role in the success of the operation.

Behind every offshore maneuver lies countless hours of preparation, technical expertise, and teamwork. It is this commitment to excellence that keeps offshore projects running safely and efficiently around the clock.

Have you ever been involved in a flotel connection or disconnection operation? Share your experiences and insights in the comments below! πŸ‘‡

16/06/2026

πŸš’βš“ Here comes another giant of the seas!

These remarkable vessels never fail to impress; not only because of their immense size, but also because of the advanced technology they carry and the critical role they play in maritime and offshore operations. From supporting energy production to executing complex offshore projects, each vessel is an essential part of keeping activities running smoothly far from shore.

🌊 For those who work offshore, seeing these giants up close is an unforgettable experience. Their scale, engineering, and operational capabilities are even more impressive in person than they appear in photos.

Every vessel has a unique purpose, whether it is construction, heavy lifting, pipe-laying, drilling, accommodation, or logistical support. Together, they form the backbone of the offshore industry and help make some of the world's most challenging marine operations possible.

πŸ‘€ Can you identify what type of vessel this is?

Share your answer in the comments below and let's see who gets it right!

06/06/2026

⚠️🌊 Only a handful of tankers are willing to navigate these dangerous waters. In regions affected by conflict, Ship-to-Ship (STS) operations become some of the most challenging and high-risk maritime activities in the world. Every maneuver must be executed with absolute precision as massive vessels transfer fuel under constant pressure, unpredictable conditions, and heightened security concerns. 🚒πŸ”₯

Despite the tensions and uncertainties surrounding war zones, global energy demands do not stop. Industries, transportation networks, power generation facilities, and communities around the world continue to depend on a steady supply of oil and fuel. Ensuring that supply reaches its destination often falls on the shoulders of highly skilled maritime professionals who operate far from the spotlight.

Behind every successful transfer is a crew of dedicated seafarers who face difficult conditions with courage, expertise, and unwavering professionalism. Their work keeps vital energy supply chains moving, even in some of the most challenging environments on earth. πŸ’ͺβš“πŸŒ

When others hesitate, these crews continue their mission, delivering the energy that keeps the world running. 🚒🌊πŸ”₯

Subsea Production System: The Backbone of Offshore Oil and Gas DevelopmentThe image depicts a modern subsea production s...
04/06/2026

Subsea Production System: The Backbone of Offshore Oil and Gas Development

The image depicts a modern subsea production system installed on the seabed of an offshore oil and gas field. Such systems are designed to extract hydrocarbons from reservoirs located deep beneath the ocean floor while minimizing the need for large surface structures. As offshore exploration moves into deeper waters, subsea technology has become an essential component of the global energy industry, allowing operators to access resources that would otherwise be difficult or uneconomical to develop.

In the foreground, a subsea wellhead is shown penetrating through the seabed and into a hydrocarbon-bearing reservoir below. The well provides a pathway for oil and natural gas trapped within porous rock formations to flow toward the surface. The wellhead serves as a critical safety and control interface between the underground reservoir and the production infrastructure on the seabed. It is engineered to withstand extreme pressures and harsh environmental conditions while ensuring reliable production over many years.

The central area of the image contains several yellow subsea structures that form the heart of the production system. These structures include manifolds, control modules, and distribution equipment that collect production from one or more wells. The manifold acts as a gathering hub, combining the flow of hydrocarbons and directing them into export pipelines. By centralizing production flow, operators can reduce the number of pipelines required and improve the overall efficiency of the field development.

Connecting the subsea equipment are pipelines and umbilicals that extend across the seabed. Pipelines transport produced oil, gas, and water between different components of the system, while umbilicals provide electrical power, hydraulic control, chemical injection, and communication services. Through these connections, engineers can remotely operate valves, monitor equipment performance, and maintain safe operating conditions without requiring frequent intervention on the seabed.

Rising from the subsea facilities toward the sea surface are multiple risers connected to a floating production vessel. These risers transport hydrocarbons from the seabed to the surface processing facility, where the oil and gas are separated, treated, stored, or exported. Floating production systems are particularly important in deep-water developments because they eliminate the need for fixed platforms anchored directly to the seabed.

The image also illustrates the highly integrated nature of modern offshore energy infrastructure. Every component, from the wellhead and manifold to the risers and surface vessel, works together as a coordinated system. Advanced sensors continuously monitor pressure, temperature, flow rates, and equipment health, allowing operators to optimize production while maintaining high standards of safety and environmental protection.

Subsea production systems offer numerous advantages for offshore field development. They enable access to remote and deep-water reservoirs, reduce the visual and environmental footprint at the ocean surface, and allow multiple wells to be managed from a centralized control facility. In addition, advances in automation and remote monitoring have significantly improved reliability and reduced operating costs compared with earlier generations of offshore technology.

Overall, the image provides a clear representation of how modern subsea engineering supports offshore oil and gas production. By combining sophisticated seabed infrastructure with advanced control systems and floating production facilities, subsea developments have become one of the most effective methods for extracting energy resources from beneath the world's oceans. These technologies continue to play a vital role in meeting global energy demand while pushing the boundaries of offshore engineering.

03/06/2026

The P-80, P-82, and P-83 platforms are currently under active construction. These projects represent another significant milestone in the development of energy infrastructure, involving heavy engineering works, steel fabrication, and the installation of key components at the project site.

At this stage, various construction activities are being carried out simultaneously, including structural steel works, module installation, and the integration of essential technical systems required to ensure that each platform will operate efficiently and safely upon completion.

The progress of these projects reflects an ongoing commitment to strengthening production capacity and industrial capability, in line with future energy demands and upstream sector development needs.

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