Technical due diligence for a financier on a Waste Heat to Power asset in construction to support financial close, as well as an evaluation of the company's development pipeline.
FEL2 through detail design engineering for a velvet manufacturer facility relocation. Scope of work included a site walk down, equipment and facility studies, 3D modeling (including VR walkthrough), heavy civil coordination, and wetlands study.
FEL1 and detailed design to double the capacity of an existing ag-pulp feedstock processing line, including modifications to material handling, hammer mill, pneumatic transport, and conveying systems.
FEED Package included developing a TIC estimate to replace existing utility boilers at a batch process plant, including evaluating boiler technology, layout and NFPA code for an existing building.
Designing temporary construction facilities on a constrained worksite, including a lunch/break tent over an existing ditch line, to support the EPC contractor's construction of new HRSG units at an existing generating station.
FEL-2 design to support upgrades to an existing linerboard paper machine roll handling line, including conveyors, a lowerator, and shipping floor conveyors for loading finished product rolls into railcars.
FEL1 Engineering and Owner’s Engineering Services for a 160 TPD Tissue Machine Rebuild project to convert from Towel-grade to Tissue-grade and increase production capacity as part of a Fleet-wide Rebuild Program.
Detailed design engineering for a $45MM TIC laser guided vehicle operated distribution center at an existing sugar mill and refinery, including the integration into an existing warehouse and packaging building.
Root cause analysis for a significant vibration issue affecting a group of dryer cans on an existing paper machine, including both onsite and offsite analysis.
Detailed design for a maintenance and reliability project on an existing linerboard machine that included the installation of a new dust collection system to address issues with glue and sensor reliability caused by the presence of excess dust.