B08B2209/053

PIG AND PIGGING METHODS FOR GAS PIPELINES
20180149301 · 2018-05-31 ·

A deformable pig and method of pigging are disclosed. The deformable pig is an outer shell having a hollow, spherical shape and a deformable core material contained within the outer shell. The deformable core material may be a shape memory polymer foam which will contour to bends in a pipeline being treated. This enables effective cleaning of the pipeline while inhibiting the pig from getting stuck in the pipeline. Alternatively, the deformable pig may be made from the shape memory polymer foam and be rectangular shaped without an outer shell material.

Method for evaluating pipeline cleaning solution based on smart gas and internet of things system thereof

The present disclosure provides a method for evaluating a pipeline cleaning solution based on smart gas and an Internet of Things system. The method comprises: obtaining an operation feature of at least one gas pipeline and inspection data of the at least one gas pipeline; determining an area to be cleaned and an area feature of the area to be cleaned; generating at least one candidate pipeline cleaning solution based on the area feature of the area to be cleaned; processing each of the at least one candidate pipeline cleaning solution and the area feature through a pipeline cleaning effect prediction model to determine a pipeline cleaning effect of each of the at least one candidate pipeline cleaning solution; determining a pipeline cleaning solution based on the pipeline cleaning effect; and evaluating a pipeline cleaning effect of the pipeline cleaning solution based on an implementation of the pipeline cleaning solution.

ELECTRONIC DEVICE AND METHOD FOR FOREIGN OBJECT REMOVAL
20250332623 · 2025-10-30 ·

An electronic device includes a flexible display and a rotating shaft, the flexible display going around the rotating shaft to provide a visible part and an invisible part, the invisible part being on one side of the rotating shaft and the visible part being on the other side of the rotating shaft. The electronic device further includes a fan structure, located on one side of the rotating shaft for generating airflow; and an airflow guiding structure, configured to direct the airflow generated by the fan structure toward a gap. The gap is located between the flexible display and the rotating shaft.