Claymore manufactures the Shield Series hydro‑cyclonic sand separators, engineered with patent‑pending CFD‑optimized designs to efficiently remove solids from oil and gas production streams. The equipment handles up to 10,000 psi and 14,000 bpd of fluid, offering high‑capacity, low‑maintenance separation for field operations. By delivering reliable solid‑separation technology, Claymore helps producers maintain clean flow lines and reduce downtime.
Funding
Funding not disclosed
Founders
Product
Problem
Oil and gas production streams often contain sand and other solid particles that can erode equipment, clog pipelines, and reduce overall efficiency. Removing these solids in harsh field conditions—high pressure and high flow rates—is challenging with conventional separation methods.
Solution
Claymore’s Shield Series hydro‑cyclonic sand separators provide a field‑ready solution for solid removal in oil and gas production. The patent‑pending design is optimized using computational fluid dynamics to achieve high‑efficiency separation while tolerating up to 10,000 psi pressure and 14,000 BPD fluid flow. The compact skid (14' × 6.5' × 7') enables easy deployment on existing well sites or processing facilities. By delivering clean fluid downstream, the system helps maintain equipment integrity, reduce downtime, and improve production throughput.
Target Audience
Primary customers are upstream oil and gas producers and field service operators who need reliable solid‑separation equipment for high‑pressure, high‑flow production lines.
Features
- Hydro‑cyclonic separator with CFD‑optimized geometry for maximum solid capture efficiency
- Rated for up to 10,000 psi operating pressure and 14,000 BPD total fluid flow
- Handles gas volumes up to 11 MMCF/D and solid holding capacity of 570 lb
- Compact skid-mounted package (14' H × 6.5' W × 7' D) for rapid field installation
- Patent‑pending Shield Series design ensures consistent performance across variable flow conditions
- Low-maintenance operation with robust construction for harsh upstream environments