Pipenet 1.11 Jun 2026
PIPENET Vision 1.11 continues to be a trusted tool for engineers, combining accuracy with efficiency. By offering specialized modules for steady-state and transient analysis, along with strict compliance with industry standards, PIPENET 1.11 enables professionals to design safer and more efficient pipe networks. Whether performing complex flow simulations or ensuring fire safety compliance, PIPENET remains a cornerstone of flow analysis technology.
PIPENET operates through independent modules tailored to specific engineering needs:
: Uses high-tier channel cavitation models to track the exact location and duration of vapor cavities. pipenet 1.11
Setting up and using PIPENET involves a few key steps, which the 1.11 version makes more intuitive.
: All calculation elevation errors and warnings are now clearly reported rather than just the first one. UI/UX Updates PIPENET Vision 1
PIPENET Vision serves as a comprehensive platform for flow analysis, starting at the design phase with pipe sizing and pump selection calculations under steady-state conditions. From there, it can proceed through several stages to calculate hydraulic loads for pipe stress analysis and support design.
PipeNet 1.11 finds applications across a broad spectrum of industrial automation sectors, including: UI/UX Updates PIPENET Vision serves as a comprehensive
PIPENET is a commercial software package distributed through authorized channels. Sunrise Systems Limited holds ISO 9001 certification. The software is available in multiple languages, including English. In China, authorized partners such as Woshan Technology (Beijing) Co., Ltd. and Wanbo Ruisheng (Tianjin) Technology Co., Ltd. provide promotion, technical support, and sales.
In version 1.11, users can model various components such as pipes, ducts, fittings, pumps, fans, check valves, control valves, nozzles, filters, orifice plates, and fixed pressure losses. For advanced applications, the software provides unique models for dry pipe, cushion effect, innovative flow path cavitation, air pockets, and physical movement of slugs within piping systems. It also includes powerful control system capabilities for both steady-state and dynamic conditions, which are essential for modeling many complex network systems.