diff --git a/CapMachine.Wpf/Services/PPCService.cs b/CapMachine.Wpf/Services/PPCService.cs index 5a1b1f7..5e951b0 100644 --- a/CapMachine.Wpf/Services/PPCService.cs +++ b/CapMachine.Wpf/Services/PPCService.cs @@ -385,8 +385,9 @@ namespace CapMachine.Wpf.Services Liquid_h_liq, Gas_h_vap, //饱和液质量焓 h liq [kJ/kg] 饱和气质量焓 h vap [kJ/kg] out var GasValue, out var hMix, out var err)) { + DrynessTag2Value = GasValue * 100.0; // x 为最终干度 [0..1],hMix 为混合后比焓 - DrynessTag.PVModel.EngValue = GasValue * 100.0; + } else { @@ -398,6 +399,7 @@ namespace CapMachine.Wpf.Services // 液相焓 h_liq_kJkg(由 TPRHO 液相 + THERM) // 饱和液 / 气焓 h_l / h_v(由 SATP +THERM) //气/液质量流量 mg/ml + //***************** 经过验证,当前方法是正确 ***************** if (TryComputeDrynessByEnthalpy2( Gas_kJkgK, Liquid_kJkg,//气相质量焓 h vap [k/kg] 液相质量焓 h liq [kJ/kg] GasFlowKgPerH, LubeFlowTag.PVModel.EngValue, //气体质量流量 mg [kg/h] 润滑油流量 @@ -406,7 +408,7 @@ namespace CapMachine.Wpf.Services out var GasValue2, out var hMix2, out var err2)) { // x 为最终干度 [0..1],hMix 为混合后比焓 - DrynessTag2Value = GasValue2 * 100.0; + DrynessTag.PVModel.EngValue = GasValue2 * 100.0; } else {