BS 8010 is a British Standard that discusses code of practice for pipelines. The main aim of the BS 8010 series is to provide best industry practices that contribute to the structural and operational integrity of pipelines on land.
BS 8010-2.5 is one of the parts in the series which discusses the code of practice for glass reinforced thermosetting plastics used for pipelines on land.
BS 8010-2.5 gives design considerations and recommendations for construction and installation of pressure or non-pressure pipelines incorporating glass reinforced thermosetting plastics pipes and fittings complying with BS 5480-1 and BS 5480-2 as applicable. BS 8010-2.5 should be read in conjunction with BS 8010-1.
The pipelines covered by BS 8010-2.5 are generally suitable for conveying water, sewage, trade waste, slurries, sludges, brine and some chemicals.
Note: BS 8010-2.5 code of practice is not intended to replace or duplicate hydraulic, mechanical or structural design manuals.
BS 8010-2.5 on code of practice for glass reinforced thermosetting plastics is relevant to:
Glass-reinforced thermosetting plastics are usually used because of their strengthened efficiency. This often helps in providing resistance to corrosion, abrasive chemicals and weathering, which makes it an excellent option for pipelines.
BS 8010-2.5 provides best industry safety recommendations that are considered to be adequate for public safety under conditions usually encountered in GRP pipelines, including pipelines within towns, cities, water catchments and industrial areas.
BS 8010-2.5 also covers guidance on inspection such that the integrity of a properly designed pipeline can be maintained at all stages.
Moreover, guidance on the right selection of materials for GRP pipes and fittings, its design and construction as well as cleaning, testing and commissioning is also provided by BS 8010-2.5
Overall, BS 8010-2.5 can assist you in establishing safe, reliable and durable GRP pipelines. As a result, incidents of leakages, deformation and overall product failures can be avoided, thus contributing to the structural and operational integrity of GRP pipelines.