package com.ruoyi.ngCalTools.model; public class GasProps { // corresponds to the control group in meter classes public int lStatus; // calculation status 计算状态 public boolean bForceUpdate; // 执行全部计算的标志 signal to perform full calculation public double[] adMixture; // 气体摩尔组成 Composition in mole fraction public double[] adMixtureV; // 气体体积组成 Composition in mole fraction public double[] adMixtureD; // 气体质量组成 Composition in mole fraction public int dCbtj; // 参比条件 101325 0,15,20 public double dPb; // 参比压力 Contract base Pressure (Pa) public double dTb; // 参比温度Contract base temperature (K) public double dPf; // 绝对压力 Absolute Pressure (Pa) public double dTf; // 工况温度 Flowing temperature (K) // basic output from AGA 8 Detail method public double dMrx; // 分子量 mixture molar mass public double dZb; // 标况压缩因子compressibility at contract base condition public double dZf; // 工况压缩因子compressibility at flowing condition public double dFpv; // 超压缩系数 supercompressibility public double dDb; // 标况摩尔密度molar density at contract base conditions (moles/dm3) public double dDf; // 工况摩尔密度 molar density at flowing conditions (moles/dm3) public double dRhob; // 标况质量密度mass density at contract base conditions (kg/m3) public double dRhof; // 工况质量密度 mass density at flowing conditions (kg/m3) public double dRD_Ideal; // 理想气体的相对密度ideal gas relative density public double dRD_Real; // 真实气体的相对密度real gas relative density // additional output public double dHo; // 理想气体的比焓 ideal gas specific enthalpy public double dH; // 真实气体的焓 real gas specific enthalpy (J/kg) public double dS; // 真实气体的熵real gas specific entropy (J/kg-mol.K) public double dCpi; // 理想气体定压热容 ideal gas constant pressure heat capacity (J/kg-mol.K) public double dCp; // 定压热容real gas constant pressure heat capacity (J/kg-mol.K) public double dCv; // 定容积热容 real gas constant volume heat capacity (J/kg-mol.K) public double dk; // 比热比ratio of specific heats public double dKappa; // 等熵指数 isentropic exponent, denoted with Greek letter kappa public double dSOS; // 声速speed of sound (m/s) public double dCstar; // 临界流函数 critical flow factor C* // 11062 输出 public double dHhvMol; // 摩尔高位发热量 public double dLhvMol; // 摩尔低位发热量 public double dHhvv; // 体积高位发热量 public double dLhvv; // 体积低位发热量 public double dHhvm; // 质量高位发热量 public double dLhvm; // 质量地位发热量 public double dZb11062; // 标况压缩因子 public double dRhob11062; // 标况质量密度mass density at contract base conditions (kg/m3) public double dRhof11062; // 工况质量密度 mass density at flowing conditions (kg/m3) public double dRD_Ideal11062; // 理想气体的相对密度ideal gas relative density public double dRD_Real11062; // 真实气体的相对密度real gas relative density public double dWobbeIndex; // 真实气体的沃泊指数 public double Pc; // 临界压力 public double TC; // 临界温度 public double Bzsx; // 爆炸上限 public double Bzxx; // 爆炸下限 public double TotalC; // 总炭含量 (kg/m3) public double C2; // C2组分含量 (kg/m3) public double C2j; // C2以上组分含量 (kg/m3) public double C3j; // C3以上组分含量 (kg/m3) public double C4j; // C4以上组分含量 (kg/m3) public double C5j; // C5以上组分含量 (kg/m3) public double C6j; // C6以上组分含量 (kg/m3) public double C3C4; // C3C4组分含量 (kg/m3) public String dngComponents; //组分的组合字符串 从前端传过来 // Getters and Setters public String getDngComponents() { return dngComponents; } public void setDngComponents(String dngComponents) { this.dngComponents = dngComponents; } public int getLStatus() { return lStatus; } public void setLStatus(int lStatus) { this.lStatus = lStatus; } public boolean isBForceUpdate() { return bForceUpdate; } public void setBForceUpdate(boolean bForceUpdate) { this.bForceUpdate = bForceUpdate; } public double[] getAdMixture() { return adMixture; } public void setAdMixture(double[] adMixture) { this.adMixture = adMixture; } public double[] getAdMixtureV() { return adMixtureV; } public void setAdMixtureV(double[] adMixtureV) { this.adMixtureV = adMixtureV; } public double[] getAdMixtureD() { return adMixtureD; } public void setAdMixtureD(double[] adMixtureD) { this.adMixtureD = adMixtureD; } public int getDCbtj() { return dCbtj; } public void setDCbtj(int dCbtj) { this.dCbtj = dCbtj; } public double getDPb() { return dPb; } public void setDPb(double dPb) { this.dPb = dPb; } public double getDTb() { return dTb; } public void setDTb(double dTb) { this.dTb = dTb; } public double getDPf() { return dPf; } public void setDPf(double dPf) { this.dPf = dPf; } public double getDTf() { return dTf; } public void setDTf(double dTf) { this.dTf = dTf; } public double getDMrx() { return dMrx; } public void setDMrx(double dMrx) { this.dMrx = dMrx; } public double getDZb() { return dZb; } public void setDZb(double dZb) { this.dZb = dZb; } public double getDZf() { return dZf; } public void setDZf(double dZf) { this.dZf = dZf; } public double getDFpv() { return dFpv; } public void setDFpv(double dFpv) { this.dFpv = dFpv; } public double getDDb() { return dDb; } public void setDDb(double dDb) { this.dDb = dDb; } public double getDDf() { return dDf; } public void setDDf(double dDf) { this.dDf = dDf; } public double getDRhob() { return dRhob; } public void setDRhob(double dRhob) { this.dRhob = dRhob; } public double getDRhof() { return dRhof; } public void setDRhof(double dRhof) { this.dRhof = dRhof; } public double getDRD_Ideal() { return dRD_Ideal; } public void setDRD_Ideal(double dRD_Ideal) { this.dRD_Ideal = dRD_Ideal; } public double getDRD_Real() { return dRD_Real; } public void setDRD_Real(double dRD_Real) { this.dRD_Real = dRD_Real; } public double getDHo() { return dHo; } public void setDHo(double dHo) { this.dHo = dHo; } public double getDH() { return dH; } public void setDH(double dH) { this.dH = dH; } public double getDS() { return dS; } public void setDS(double dS) { this.dS = dS; } public double getDCpi() { return dCpi; } public void setDCpi(double dCpi) { this.dCpi = dCpi; } public double getDCp() { return dCp; } public void setDCp(double dCp) { this.dCp = dCp; } public double getDCv() { return dCv; } public void setDCv(double dCv) { this.dCv = dCv; } public double getDk() { return dk; } public void setDk(double dk) { this.dk = dk; } public double getDKappa() { return dKappa; } public void setDKappa(double dKappa) { this.dKappa = dKappa; } public double getDSOS() { return dSOS; } public void setDSOS(double dSOS) { this.dSOS = dSOS; } public double getDCstar() { return dCstar; } public void setDCstar(double dCstar) { this.dCstar = dCstar; } public double getDHhvMol() { return dHhvMol; } public void setDHhvMol(double dHhvMol) { this.dHhvMol = dHhvMol; } public double getDLhvMol() { return dLhvMol; } public void setDLhvMol(double dLhvMol) { this.dLhvMol = dLhvMol; } public double getDHhvv() { return dHhvv; } public void setDHhvv(double dHhvv) { this.dHhvv = dHhvv; } public double getDLhvv() { return dLhvv; } public void setDLhvv(double dLhvv) { this.dLhvv = dLhvv; } public double getDHhvm() { return dHhvm; } public void setDHhvm(double dHhvm) { this.dHhvm = dHhvm; } public double getDLhvm() { return dLhvm; } public void setDLhvm(double dLhvm) { this.dLhvm = dLhvm; } public double getDZb11062() { return dZb11062; } public void setDZb11062(double dZb11062) { this.dZb11062 = dZb11062; } public double getDRhob11062() { return dRhob11062; } public void setDRhob11062(double dRhob11062) { this.dRhob11062 = dRhob11062; } public double getDRhof11062() { return dRhof11062; } public void setDRhof11062(double dRhof11062) { this.dRhof11062 = dRhof11062; } public double getDRD_Ideal11062() { return dRD_Ideal11062; } public void setDRD_Ideal11062(double dRD_Ideal11062) { this.dRD_Ideal11062 = dRD_Ideal11062; } public double getDRD_Real11062() { return dRD_Real11062; } public void setDRD_Real11062(double dRD_Real11062) { this.dRD_Real11062 = dRD_Real11062; } public double getDWobbeIndex() { return dWobbeIndex; } public void setDWobbeIndex(double dWobbeIndex) { this.dWobbeIndex = dWobbeIndex; } public double getPc() { return Pc; } public void setPc(double pc) { this.Pc = pc; } public double getTC() { return TC; } public void setTC(double tc) { this.TC = tc; } public double getBzsx() { return Bzsx; } public void setBzsx(double bzsx) { this.Bzsx = bzsx; } public double getBzxx() { return Bzxx; } public void setBzxx(double bzxx) { this.Bzxx = bzxx; } public double getTotalC() { return TotalC; } public void setTotalC(double totalC) { this.TotalC = totalC; } public double getC2() { return C2; } public void setC2(double c2) { this.C2 = c2; } public double getC2j() { return C2j; } public void setC2j(double c2j) { this.C2j = c2j; } public double getC3j() { return C3j; } public void setC3j(double c3j) { this.C3j = c3j; } public double getC4j() { return C4j; } public void setC4j(double c4j) { this.C4j = c4j; } public double getC5j() { return C5j; } public void setC5j(double c5j) { this.C5j = c5j; } public double getC6j() { return C6j; } public void setC6j(double c6j) { this.C6j = c6j; } public double getC3C4() { return C3C4; } public void setC3C4(double c3c4) { this.C3C4 = c3c4; } }