Working Fluid Design for Organic Rankine Cycle

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Working Fluid Design for Organic Rankine Cycle ( working-fluid-design-organic-rankine-cycle )

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12 % 13 % 14 % 15 % 16 % 17 % 18 % 19 % 20 % 21 % 22 % 23 % 24 % 25 % 26 % 27 % 28 % 29 % 30 % 31 % rqst:- ins :- Track the evaluation request in Inputs as per Nexus Evaporator Pressure Lower temperature difference B-4 MATLAB Functions 69 1 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% 2%% 3 % FUNCTION PINCHPOINT % 4 % --------------- % 5%% 6% 7% 8% 9%% DESCRIPTION : CALCULATES THE PINCH POINT TEMPERATURE DIFFERENCE % FOR THE EXHAUST GAS AND EGR EVAPORATORS % NO. :1.0 % 10% DATE : 11 % INPUTS : 26 -05 -2013 % % Nexus % % % % % side % % Exhaust HX - FlueGas inlet temperature % Mass flow rate of working fluid in EGR HX % Mass flow rate of working fluid in Exhaust HX % Mass flow rate of flue gas in the EGR HX % Mass flow rate of flue gas in the Exhaust HX % Evaporator inlet temperature - WF side % Exhaust HX exit tempetaure - FlueGas side % EGR HX Exit temperature - FlueGas side % % Outputs as per Nexus % Exhaust HX Pinch point temperature difference % EGR HX Pinch point temperature difference % Nexus Matlab module % 32 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% 33 % Exhaust/EGR in % 34 % T_Ex1/T_EGR1 W_Ex/W_Egr % 35 % _____________ % 36%|| % 37%|| % 38% |__| % 39 % WFin |___/ \_/ \___| WF out % 40 % T_Evapin | |T_Evap M_Ex/M_Egr % 41 % ____| | % 42 % | |_____________| % 43 % DELT Exhaust/EGR out % 44 % |____ T_Ex2/T_EGR2 % 45 %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% 50 DELTL(rqst.objectId) = 0; 51 52 T_Evap(rqst.objectId) = 0; 53 T_Egr1(rqst.objectId) = 0; Master of Science Thesis CALLED BY : outs:- 46 function [outs] = PinchPoint(rqst,ins,outs) 47 %% Initialize all the variables 48 49 P_Evap(rqst.objectId) = 0; (WF Inlet and FG outlet) Evaporator outlet temperature - WF EGR HX - FlueGas inlet temperature % Evaporator Pressure % Lower temperature difference % (WF Inlet and FG outlet) % Evaporator outlet temperature - WF side % EGR HX - FlueGas inlet temperature Akshay Hattiangadi

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