{"version":"1.0","type":"rich","provider_name":"Acast","provider_url":"https://acast.com","height":250,"width":700,"html":"<iframe src=\"https://embed.acast.com/$/663884554e48ad001264210a/6ac100405558f9dbe2c0b85b?\" frameBorder=\"0\" width=\"700\" height=\"250\"></iframe>","title":"Level 3 Diploma Cold Water System Planning & Design | Revision Guide","thumbnail_width":200,"thumbnail_height":200,"thumbnail_url":"https://open-images.acast.com/shows/663884554e48ad001264210a/1791033244946-578a52cd-d64d-4b1c-945b-731b8b534295.jpeg?height=200","description":"<p>Cold water systems in multistorey buildings can become complicated quickly — especially when mains pressure alone cannot provide the required flow and pressure at higher levels. In this Level 3 Diploma episode, Chris Bailey breaks down the planning and design of cold water systems and explains why boosting equipment is required in high-rise buildings and buildings constructed on high ground. </p><p><br></p><p>The episode works through the main boosting arrangements, including direct boosted systems, header pipe systems, indirect boosting through a low-level break system and automatic pneumatic systems. It then moves into the components and controls you&#39;ll encounter in larger installations, including pumps, flow switches, solenoid valves, transducers, temperature sensors, control boxes and accumulators. </p><p><br></p><p>Particular attention is given to accumulator operation and the calculations behind them. You&#39;ll work through pre-charge pressure, stored water volume, shower duration and refill time, alongside the principles behind Boyle&#39;s law and how compressed air helps maintain system pressure. </p><p><br></p><h3>What you&#39;ll learn</h3><ul><li><strong>Understand</strong> why boosting equipment is required in multistorey and high-level buildings.</li><li><strong>Explain</strong> the purpose and operation of the main cold water boosting systems.</li><li><strong>Identify</strong> the components found within booster pump packages.</li><li><strong>Explain</strong> how flow switches, solenoid valves and transducers control system operation.</li><li><strong>Understand</strong> how break systems are designed to protect the incoming mains supply and prevent pump dry running.</li><li><strong>Calculate</strong> accumulator storage capacity, shower duration and refill times.</li><li><strong>Apply</strong> Boyle&#39;s law to the operation of accumulator vessels.</li><li><strong>Identify</strong> the design factors that need to be considered when selecting an accumulator.</li></ul><p><br></p><p>Before moving on, have a go at the accumulator calculations yourself. Change the supply pressure, flow rate or stored volume and see whether you can work through the complete calculation without looking back at the episode.</p><p><br></p><p>www.thecopperconnectionpodcast.co.uk</p>","author_name":"Chris Bailey | Building Services Engineering Tutor"}