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Identification of unmeasured variables in the set of model constraints of the data reconciliation in a power unit

机译:识别功率单元中数据对帐的模型约束集中的未测变量

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In generalized method of data reconciliation as equations of conditions beside substance and energy balances can be used equations which dona€?t have precisely the status of conservation lows. Empirical coefficients in these equations are traded as unknownsa€? values. To this kind of equations, in application of the generalized method of data reconciliation in supercritical power unit, can be classified: steam flow capacity of a turbine for a group of stages, adiabatic internal efficiency of group of stages, equations for pressure drop in pipelines and equations for heat transfer in regeneration heat exchangers. Mathematical model of a power unit was developed in the code Thermoflex. Using this model the off-design calculation has been made in several points of loads for the power unit. Using these calculations identification of unknown values and empirical coefficients for generalized method of data reconciliation used in power unit has been made. Additional equations of conditions will be used in the generalized method of data reconciliation which will be used in optimization of measurement placement in redundant measurement system in power unit for new control systems
机译:在一般的数据对帐方法中,除了物质和能量平衡之外,还可以使用条件方程,这些方程没有精确的守恒状态。这些方程式中的经验系数被交易为未知数。价值观。对于这种方程式,在超临界功率单元中使用通用的数据对帐方法时,可以分类为:一组级的涡轮机蒸汽流量,一组级的绝热内部效率,管道中的压降方程式以及再生热交换器中的传热方程。动力单元的数学模型是用代码Thermoflex开发的。使用该模型,已在功率单元的多个负载点进行了设计外计算。使用这些计算,已经确定了功率单元中使用的通用数据对账方法的未知值和经验系数的识别。通用的数据对账方法中将使用附加的条件方程式,这些条件方程式将用于优化新控制系统的动力装置中冗余测量系统中的测量位置

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