Meter Skid Tie In Project

Natural gas meter skid with flow measurement equipment, process piping, valves, and support structures installed on a concrete foundation, highlighting Halker’s expertise in precision metering, tie-in engineering, and midstream facility integration.

The client required a detailed engineering and design solution to integrate multiple new meter skids—a main meter skid, a buy-back meter skid, and a vapor recovery unit (VRU) meter skid—into an existing pipeline system via a hot-tap connection.

Permian Basin CTB-Facility Design Program

3D model of a Central Tank Battery (CTB) facility layout featuring tanks, separators, pipe racks, and wellpad tie-ins, showcasing Halker’s expertise in Permian Basin facility design, production optimization, and standardized upstream engineering programs.

The client required a multi-facility program to design and construct a series of centralized tank batteries (CTBs) to serve multiple well pads while maintaining consistency, efficiency, and regulatory compliance.

Bakken Basin CTB Facility Design Program

3D model of a Bakken Basin central tank battery (CTB) facility layout featuring tanks, piping networks, and process equipment, showcasing Halker’s expertise in upstream facility engineering, multidisciplinary design, and programmatic development for high-efficiency oil and gas production sites.

The client required an Owner’s Engineer to support the design and implementation of new centralized tank battery (CTB) facilities in compliance with evolving federal regulations, including 40 CFR 60 Subparts OOOOa and OOOOb. The program involved simultaneous upgrades across more than 150 sites, demanding a coordinated, multi-discipline engineering approach that balanced regulatory compliance, constructability, and operational efficiency.

CTB-Facility Design Program

3D engineering model of an oil and gas processing facility with tanks, vertical process vessels, pump skids, and multicolored piping, illustrating Halker’s comprehensive upstream facility design, equipment layout optimization, and multidisciplinary engineering capabilities.

The client required detailed engineering and design for multiple centralized tank battery (CTB) and well pad facilities in New Mexico. Each site needed to balance standardization with customization—leveraging proven designs while adapting to site-specific production, layout, and regulatory requirements.

SWD Engineering and Design

3D engineering model of a Salt Water Disposal (SWD) facility showing aligned storage tanks, piping networks, and equipment skids, highlighting Halker’s expertise in SWD system design, facility optimization, and produced-water management engineering.

The client required a comprehensive engineering and design solution for a new saltwater disposal (SWD) facility that aligned with established program standards and specifications. The project needed to maintain consistency with the client’s existing design framework while integrating updated electrical, instrumentation, and control (EI&C) standards.

SWD Commissioning and Construction Support

Large above-ground SWD storage tanks labeled TANK 5110 and TANK 5120 with access stairways and safety railings, showcasing Halker’s expertise in Salt Water Disposal commissioning, construction support, and facility startup operations.

The client required comprehensive commissioning and startup support for a newly constructed saltwater disposal (SWD) facility. The project assumed mechanical completion by the construction contractor, but successful commissioning depended on coordinated system verification, safety assurance, and readiness documentation across multiple disciplines.

Midstream Plant Expansion

Midstream natural gas processing facility with pressure vessels, heat exchangers, structural pipe racks, and interconnected process piping, showcasing Halker’s engineering capabilities in midstream plant expansions, system optimization, and brownfield infrastructure upgrades.

The client required comprehensive engineering and design support to execute a series of upgrades at an existing natural gas processing facility. The project involved integrating new compression and heating systems into an established plant layout while maintaining operational continuity and meeting modern safety, electrical, and structural standards.

10,000-20,000 BBLPD SWD Engineering and Design

3D engineering model of a high-capacity 10,000–20,000 BBLPD saltwater disposal (SWD) facility featuring multiple storage tanks, piping networks, and process equipment, showcasing Halker’s expertise in produced water infrastructure design, system optimization, and large-scale midstream project engineering.

The client required a fully integrated engineering and design solution for a new 10,000 BBLPD saltwater disposal (SWD) facility, with future expansion capacity to 20,000 BBLPD. The project demanded coordination across multiple engineering disciplines—process, mechanical, structural, electrical, and instrumentation & controls—to ensure consistency, compliance, and scalability.

Greenfield Compressor Station Engineering and Design

3D model of a greenfield compressor station featuring dual compressor units, process piping, and structural supports, highlighting Halker’s engineering and design expertise in midstream infrastructure, equipment layout optimization, and new-build natural gas compression facilities.

The client required full engineering, design, and project management support for the development of a new greenfield gas gathering compressor station in Utah. The facility needed to accommodate immediate production demands while maintaining flexibility for future expansion from two to four compressor units.

Bulk Test Conversion for Sour Service CTB Facility

3D process model showing vertical vessel conversions with integrated piping and instrumentation, demonstrating Halker’s engineering expertise in bulk test modifications for sour service CTB facilities and compliance-driven upgrades to handle H₂S-rich production streams safely and efficiently.

The client required the conversion of existing Central Tank Battery (CTB) facilities into a large-scale sour service production site capable of safely managing high hydrogen sulfide (H₂S) concentrations. The project demanded a comprehensive redesign to accommodate new process equipment, integrate sour gas treatment systems, and ensure full compliance with applicable safety and regulatory standards.