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STEAM PRO® automates the process of designing a conventional (Rankine cycle) steam power plant, guiding the user to rapidly and easily attain an optimal configuration and its technical parameters.

The user inputs design criteria, starting with the big picture and progressing in a logical sequence into greater details. Built-in expert logic automatically selects appropriate options and inputs for the various details, based on the user’s high level selections. The program designs the new plant, computes its performance, its detailed heat and mass balance, and creates its major equipment physical sizes and design details. When combined with the optional PEACE module, it also creates the plant’s preliminary engineering details, estimates its cost, and finds its cash flow and economic pro-forma.

The scope, flexibility, and level of detail in STEAM PRO has been continuously growing since it was first released in 1990; and the 2018 version has over 3,500 user-adjustable inputs. What makes it so easy to use is that most inputs are automatically created by intelligent design procedures within the program, while granting the user the flexibility to make any changes or adjustments. As a result, it typically requires only a few minutes to create a new plant design, allowing the user to create and compare many plant options, and variations within each, to find the most suitable design, both technically and economically.

STEAM PRO’s variety of plant configurations is very broad. From back pressure units for cogeneration, to small/medium plants with straight-condensing turbines, to medium/large plants with single reheat cycles, to larger supercritical double-reheat plants. The model can accommodate up to twelve feed water heaters of various types, and a broad array of boiler feed water pump types and drive arrangements. A broad range of condenser and cooling tower types are included within the program. STEAM PRO will create preliminary designs for all typical boiler types, including pulverized coal, circulating and bubbling fluidized beds, and various grate-fired arrangements. The boiler preliminary designs, and their estimated costs when the PEACE module is used, take into account the type of fuel and its characteristics; including a broad range of coal types, biomass, or municipal solid waste, besides gaseous or liquid fuels of different grades. The program includes a data base of typical fuels, including almost 200 types of coal from around the world.

Features that have been built into STEAM PRO over the years include CO2 capture, as well as the main types of desalination systems, MSF, MED, and RO. The automated top-down design logic of STEAM PRO extends into these specialized features, creating their internal details based on the user’s high level selections of configuration and parameters.

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Examples: Click on the links below to view the heat balance diagrams of examples of conventional steam power plant cycles. Each was created by STEAM PRO within 15 minutes, from start to finish. In each case, all the user had to do was enter about a dozen key, high-level selections and inputs from amongst the thousands available in STEAM PRO; then leave the automatic logic built into STEAM PRO to deal with the rest of the design creation process.

STEAM PRO output HBD for 900MW plant firing Pittsburgh No.8 with FGD and CO2 capture

STEAM MASTER® simulates performance of a given plant at different operating conditions, such as part-loads, feed water heater by-pass, different environmental parameters, etc.

Steam

A STEAM MASTER plant model is defined by its hardware, in contrast to a STEAM PRO model which is defined by the assumptions used to create the hardware. The 3,500+ inputs which define plant hardware and control set-points are all initialized upon importing its STEAM PRO design. All these inputs may be adjusted and fine-tuned by the user. For example, the user may change the physical hardware of a radiant furnace, or a feed water heater, or a condenser, or a pipe, etc, to match vendor or final engineering specs.

STEAM MASTER is not merely an off-design extension of STEAM PRO, but rather it is an off-design simulator of a plant described by its physical hardware, and this hardware is all initialized from the STEAM PRO design, but remains available for adjustment as needed by the user. Acer device driver download. When used in conjunction with the PEACE module, any change of physical hardware implemented by the user will be reflected on the cost estimate, as well as being reflected on the plant’s thermodynamic performance, and this allows cost/benefit analysis of design changes.

A STEAM MASTER file can be read into THERMOFLEX for modelling unique details beyond its scope, such as integration with district heating networks, concentrated solar thermal receivers, etc.

STEAM MASTER models can be run from MS Excel via Thermoflow’s E-LINK add-in. This makes it easy to generate correction curves to help planners forecast their fuel consumption and electricity production and to run their own in-house economic models in conjunction with the STEAM MASTER plant performance model.

The steam tables section of Uconeer calculates the physical properties of ice, water and steam in all the units included in Uconeer, and in your own custom units. The IAPWS IF-97 formulations are used where relevant. These software steam tables contain data for 16 fixed and 18 variable properties from -100 to 800°C (-148 to 1472°F) and up to 1000 bar abs (14500 psia). Some water and steam properties extend up to 2000°C (3632°F) at pressures below 500 bar abs (7250 psia).

The variable properties for ice, water and steam included in the Steam Tables (where applicable) are enthalpy, entropy, internal energy, density (specific volume), enthalpy of vaporization, viscosity, heat capacity at constant pressure, heat capacity at constant volume, velocity of sound, thermal conductivity, surface tension, thermal expansion coefficient, isothermal compressibility, isentropic exponent, compressibilty factor 'Z', dielectric constant, refractive index and melting (freezing) point.

The fixed properties available are molecular weight, normal melting point, normal boiling point, critical temperature, critical pressure, critical density (specific volume), critical compressibility factor 'Z', standard enthalpy of formation, standard Gibbs energy of formation, Pitzers acentric factor, dipole moment, triple point temperature, triple point pressure, enthalpy of fusion at normal melting point, refractive index of ice at NMP and specific gas constant.

This downloadable Steam Tables software replaces printed tables but covers many more physical properties of ice, water and steam and eliminates the need to interpolate between data points. Like all of Uconeer, the steam tables have context sensitive on-line Help. This program can be used to calculate physical properties for known temperature and pressure conditions, or it can search for the conditions that give rise to particular physical property values of enthalpy, entropy or density for water and/or steam.


The Steam Tables Main Properties Screen

For saturated properties of ice, water or steam only the temperature or pressure needs to be entered. The corresponding saturation pressure or temperature, and the physical properties of the ice, water or steam at that condition, will be calculated. Properties for subcooled water or superheated steam can be calculated by specifying both the temperature and pressure. Absolute or gauge pressures can be used in all the steam table functions.


Steam Game Editor

Steam

The Fixed Properties included in the Steam Tables

In addition to the pressure and temperature dependent properties of ice, water and steam, these software steam tables include 16 useful fixed properties.


The Steam Tables Units Selection Screen

The units to be used for data entry and display of the physical properties of the ice, water and steam can be selected in sets or individually. The program stores the selection of units at shut down for use in the next session. The sets of units available include SI, Imperial, Customary (USA) and European Units. The wavelength used in calculating the refractive index, and the local atmospheric pressure used to calculate gauge pressure, are also set on this page.

Steam Table Software


The IAPWS References used for the Steam Tables calculations

The steam tables software calculates the properties of water and steam using the following publications from the IAPWS

Georgian book of adam missaticum biblia the shapira manuscript book of abraham book of joseph secret gospel of mark letter of paul to the laodiceans letter from an essene in jerusalem to his brethren in alexandria essene gospel of peace book one life of st. Selections From The Armenian Book of Adam - REJECTED SCRIPTURES THE HISTORY OF CAIN AND ABEL, THE SONS OF ADAM In the Armenian Library of St. Lazarus, in Venice, there are three MSS in which the Book of Adam is contained, and they were written at different times. Georgian book of adamrejected scriptures. THE FIRST BOOK OF Adam and Eve ALSO CALLED The Conflict of Adam and Eve with Satan. PRESENT day controversy that rages around the authenticity of the Scriptures and how human life began on this planet must pause to consider the Adam and Eve story. The Syriac Book of the Cave of Treasures 25. The Armenian Book of Adam 26. The Book of Adam, after Harnack 27. The Ethiopic Conflict of Adam and Eve with Satan 28. The Arabic Conflict of Adam and Eve with Satan 29. The Slavonic Adam-Book 30. The Georgian Adam-Book 31. The Coptic Apocalypse of Adam IV: THE PATRIARCHS IN GENERAL 32. REJECTED SCRIPTURES: OVER 200 APOCRYPHAL TEXTS! Introduction Contents APOCRYPHAL TEXT OF THE MONTH The Second Book of Ezekiel the Prophet The Prophecies of Hadar and Melech THE VISION OF ENOCH TRANSCRIBED BY JOSEPH SMITH. ABOVE IS A VERY NICE PDF FILE OF THE GEORGIAN BOOK OF ADAM.

  1. Properties: Enthalpy, Entropy, Internal Energy, Density, Heat Capacity, Thermal Expansion Coefficient, Isothermal Compressibility, Isentropic Exponent, Compressibility Factor 'Z'
    Publication: R7-97(2012) Revised Release on the IAPWS Industrial Formulation 1997 for the Thermodynamic Properties of Water and Steam
  2. Property: Viscosity
    Publication: R12-08(2008) Release on the IAPWS Formulation 2008 for the Viscosity of Ordinary Water Substance
  3. Property: Thermal Conductivity
    Publication: R15-11(2011) Release on the IAPWS Formulation 2011 for the Thermal Conductivity of Ordinary Water Substance
  4. Property: Surface Tension
    Publication: R1-76(2014) Revised Release on the Surface Tension of Ordinary Water Substance
  5. Property: Dielectric Constant
    Publication: R8-97(1997) Release on the Static Dielectric Constant of Ordinary Water Substance
  6. Property: Refractive Index
    Publication: R9-97(1997) Release on the Refractive Index of Ordinary Water Substance as a Function of Wavelength, Temperature and Pressure