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In addition, the browser policy or the browser policies of individual IEEE sites will provide information to enable optimum display on your computer.īy using or downloading any materials from IEEE Web sites, you agree to these Terms and Conditions. These Terms and Conditions include the IEEE Privacy Policy and supplemental terms and conditions ("Supplemental Terms") that will govern your use of specific IEEE services ("Additional Services"). The default value for n is 0.5 which is a typical value for an orifice.The following terms and conditions ("Terms and Conditions") govern your use of IEEE Web sites ("these sites") of The Institute of Electrical and Electronics Engineers, Incorporated, a New York not-for-profit corporation ("IEEE"), and any services contained within these sites. N is the emitter exponent and is set globally in the calculation options for the run it is dimensionless but affects the units of k. K is the emitter coefficient and is a property of the node. The flow through an emitter is calculated as:
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When both an emitter and a normal demand are specified for a junction, the demand that HAMMER CONNECT reports in its output results includes both the normal demand and the flow through the emitter. In the latter case, one would use a very high value of the discharge coefficient (e.g., 100 times the maximum flow expected) and modify the junction’s elevation to include the equivalent head of the pressure target.
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They can also be used to simulate leakage in a pipe connected to the junction (if a discharge coefficient and pressure exponent for the leaking crack or joint can be estimated) and compute a fire flow at the junction (the flow available at some minimum residual pressure). For nozzles and sprinkler heads, the exponent on pressure is 0.5 and the manufacturer usually states the value of the discharge coefficient as the flow rate in gpm through the device at a 1 psi pressure drop.Įmitters are used to model flow through sprinkler systems and irrigation networks. The constant of proportionality is termed the discharge coefficient. In these situations, the demand (i.e., the flow rate through the emitter) varies in proportion to the pressure at the junction raised to some power. Flow Emitters are devices associated with junctions that model the flow through a nozzle or orifice.