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This is the recording of the third webinar on Valve Modeling using Simerics on the Webinar Series 2023. This video is divided into 3 parts. The first part goes through introduction of Simerics, the features of Simerics application like the type of meshing, benefits of its template driven workflow and so on. We show some examples of the different types of valves that Simerics can model, like the Control valve, Release valve, Poppet valve and so on. The various USPs of Simerics in modeling the valves are covered like setup wizard, valve template mesher, assigning boundary conditions automatically. The advantages of Simerics, in specific to the valve applications, like easy model setup, rapid turnaround time, capturing intricate mesh movements and deformation are discussed in detail. In the second part, we go through a demo process, the valve model setup is demonstrated using a Pressure Relief Spool Valve using Simerics-MP+. The concepts that are used in the valve mesh creation and the ease of model setup is showcased while going through the model setup with each step of the process. The valve simulation is performed for an operating condition to show the rapid simulation run times and the specialized outputs for the valve modules that are available are covered while post-processing the results. The third part of the video discusses the engineering benefits of Simerics in valve applications using couple of customer case studies. The first case study expands on the physics of the pressure relief valve poppet valve to explain the counterintuitive results obtained from the experimental tests, and which the Simerics CFD simulation correctly mimics. The second case study is on a thermostat poppet valve and bypass valve assembly inside a coolant system that involves solving multitude of physics include complete Conjugate Heat Transfer (CHT), cavitation and phase change. Simerics-MP+ software is a general purpose CFD tool widely utilized in hydraulic and automotive sectors for virtual simulation and analysis. It can predict transient physics in electric motors, engines, battery packs, pumps, valves, to name a few. It is used for pump design and analysis of flow and pressure, power and torque, cavitation/aeration, priming, erosion, noise and vibration in pumps operating with different types of fluids.