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Modern Information Technologies for Thermodynamic, Property of Substances, Power and Chemical Engineering. Cooperation: Moscow Power Engineering Institute, IAPWS, NIST and Elsevier/Knovel 5 May, 2014, TU Dresden, Germany Valery Ochkov ([email protected]) Dr., Professor, Moscow Power Engineering Institute and Joint Institute of high temperatures of Russian Academy of Science 1

Modern Information Technologies for Thermodynamic

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Page 1: Modern Information Technologies for Thermodynamic

Modern Information Technologies for Thermodynamic, Property of

Substances, Power and Chemical Engineering.

Cooperation: Moscow Power Engineering Institute, IAPWS, NIST and Elsevier/Knovel

5 May, 2014, TU Dresden, Germany

Valery Ochkov ([email protected])

Dr., Professor, Moscow Power Engineering Institute and Joint

Institute of high temperatures of Russian Academy of Science 1

Page 2: Modern Information Technologies for Thermodynamic

«In jeder reinen Naturlehre ist nur soviel an eigentlicher Wissenschaft enthalten, als Mathematik (Lebenden Berechnungen) in ihr angewandt werden kann.» «In any special doctrine of nature there can be only as much proper science as there is mathematics (live calculation) therein.» «В каждой естественной науке заключено столько истины, сколько в ней есть математики (живых вычислений).»

Immanuel Kant (and Valery Ochkov)

Page 3: Modern Information Technologies for Thermodynamic

"Если в первом акте на стене висит ружье, то в последнем оно обязательно выстрелит". "Wenn ein Gewehr im ersten Akt an der Wand hängt, wird es im dritten Akt abgefeuert".

Антон Чехов – Anton Tschechow

"Если в книге или в статье есть формула, то нужно сделать так, чтобы по ней можно было считать". "Wenn eine Formel ist in einem Buch oder Artikel, Wir müssen in der Lage, auf diese Formel verlassen können."

Валерий Очков – Valery Ochkov

Page 4: Modern Information Technologies for Thermodynamic

Cooperation in this field with: • The International Association for the Properties of

Water and Steam (www.iapws.org)

• The National Institute of Standards and Technology (NIST - www.nist.gov)

• The Knovel Corporation (www.knovel.com) now a part of the Elsevier Corporation (www.elsevier.com)

• I hope with The TU Dresden too after my this visit

Page 5: Modern Information Technologies for Thermodynamic

University Stuttgart University Zittau/Goerliz TU Dresden

Page 6: Modern Information Technologies for Thermodynamic

Three revolutionary events stand out in

historical process of knowledge transfer

development from one generation to the next :

1. Writing appearance

2. Invention of book printing (Guttenberg)

3. Implementation of computer

technologies

2

Page 7: Modern Information Technologies for Thermodynamic

Now we have one Crisis in computer technologies:

1. «Nightmare» of the inherited, old software at firms, in institutions and universities

2. Misprints the formulas of scientific and technical literature and reference

3. Disarrangement of paper manuals and textbooks with IT-technologies

3

Page 8: Modern Information Technologies for Thermodynamic

«Nightmare» of the “old” software at the Joint Institute of high temperatures of Russian Academy of Science: old Hewlett-Packard with old Fortran (since 1885)

3

Page 9: Modern Information Technologies for Thermodynamic

Three historical stages in the modes of using computers for educational,

engineering and scientific problems:

1. Batch mode, where one computer (the famous BESM-6, for example, installed in the computer center) serves many users, which it delivered to the their tasks recorded in the deck of cards and the other is neglected (paper) Media .

2. Mode (time) of personal computers.

3. Mode of global and local (corporate, university and other) networks, which essentially brings us back to a batch mode, but in a different, more qualitative level, baseline data and calculation results are transferred is no longer on paper and in electronic form on the web. Same calculations as it is necessary can be parallelized (cluster, distributed calculations, etc.) .

4

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Three historical stages of development of software solutions of engineering and

scientific problems on computers:

1. Work with absolute codes (assembler, pocket calculator)

2. Programming using high-level languages (ALGOL, fortran,

Pascal, C, BASIC, Java etc)

Excel (with VBA), Matlab (Programming languages)

3. Using mathematical packages such as Mathcad,

SMath, Maple, Matlab, Mathematica, MuPAD, Derive, etc

5

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Why Mathcad!?

(SMath, Knovel Math)

6

Page 14: Modern Information Technologies for Thermodynamic

The first version of Mathcad was written in 1985 by Allen Razdow from MIT

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Mathcad books by V. Ochkov

12 in Russian, 1 in Ukrainian

2 in English:

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Seven features Mathcad:

10

1. "Natural" formulas record

2. Units in formulas

3. Traditional variable’s names

4. Numerical & Symbolical Mathematics

5. 2D & 3D scientific plots and

animations tools

6. “Users built-in” functions

7. Programming

Page 17: Modern Information Technologies for Thermodynamic

Seven features Mathcad

11

1. "Natural" formulas record

BASIC: a=21: b=4.5: c=-12 d=(a^2 - b^5.5) / c

Excel

Mathcad

Page 18: Modern Information Technologies for Thermodynamic

Tree tools of Mathcad

18

1. Menu commands

2. Operators 5! x2 M1,5 etc.

(built-in and users

as in mathematic!)

3. Functions (built-in: sin(x) sin x etc.

and users)

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Seven features Mathcad

12

2. Using units by calculation

One example: Power of the human heart

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Seven features Mathcad

12

2. Using units by calculation

Three type of formulas in books:

1. Physical formulas – m·c2, m·v2/2 etc.

2. Empirical formulas

3. Pseudo-empirical formulas (???)

Page 21: Modern Information Technologies for Thermodynamic

An Empirical formula

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An Typical empirical formula

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A Pseudo-empirical formula – what is it?

One example: I want to calculate the molality (L) aqueous solution of NaCl with

molarity M = 2 mol/L and density q = 1.076 gm/mL. I find in Internet table:

Page 24: Modern Information Technologies for Thermodynamic

A Pseudoempirical formula – (a physical formula with help for units calculation)

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Seven features Mathcad

13

3. Traditional variable’s names (as in manuals)

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Seven features Mathcad

14

4. Numerical & Symbolical Mathematics (SmartMath)

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Seven features Mathcad

15

5. 2D & 3D scientific Plots

3D-Plot

Rankine Thermodynamic cycle

2D-Plot

Page 28: Modern Information Technologies for Thermodynamic

One “Property Gift” from IAPWS-MPEI-Trieru (my company)

Page 29: Modern Information Technologies for Thermodynamic

Valery Ochkov gives his famous glass cube with the thermodynamic surface water and steam to Isaac Newton in London (25/11/2013).

Page 30: Modern Information Technologies for Thermodynamic

One “Mathcad Materials Properties Gift” from Trieru (my company)

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Seven features Mathcad

16

6. Users built-in Functions of WaterSteamPro

Application WaterSteamPro™ www.wsp.ru For Mathcad, Matlab, Excel, Pascal, BwitASIC, fortran, C etc DLL-technology

Page 32: Modern Information Technologies for Thermodynamic

Seven features Mathcad

17

7. Built-in Programming Language

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Data Base – Mathcad – Pro/E (Creo):

9

(Pro/E) Creo

Mathcad since 2006

Materials

Properties

Data Base

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(Old) Data Base in Mathcad

19

Page 35: Modern Information Technologies for Thermodynamic

Mathcad + Internet =

Mathcad Calculation Server

20

Kill two birds with one stone

• Tear off tasks from the package Mathcad (early attempt Mathcad Explorer): dreams of exe-file

• Move tasks from personal computer to Internet not only for a viewing, but also for an interactive work on them

From WorkSheet to WebSheet

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Mathcad + Internet =

= Mathcad Calculation Server

21

From WorkSheet to WebSheet

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Calculation Server NRU “MPEI”

1. Provide undergraduate and graduate students with quality certified calculations, and teachers the possibility of rapid publication of its calculations on the Internet

2. Ensure power engineering quality calculations online

3. Solve (eliminate) the problem of "piracy“ software for calculations

22

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Calculation Server NRU “MPEI”

1. Thermophysical properties of fluids, working

fluids and materials in the Mechanical and Power Engineering calculation programs and Internet sites

2. Thermodynamic cycles in Internet

3. Interactive Engineering Reference books on the web and more than 30 textbooks and book of problems

23

Page 39: Modern Information Technologies for Thermodynamic

From paper book to Internet

39

Page 40: Modern Information Technologies for Thermodynamic

40

PDA

SmartPhone

PC or NB

Calculation Server

NRU “MPEI”

E-Books

Tablets

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41

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Types of works with the RefBook

1. On-line calculations

2. Functions download and creating

3. References on functions

42

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Types of works with the RefBook

1. On-line calculations

2. Functions download or creating

3. References on functions

43

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Conductivity of water and steam

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Conductivity of water and steam

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Conductivity of water and steam

46

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Conductivity of water and steam

47

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48

Conductivity of water and steam

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Conductivity of water and steam

49

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Properties of Ionic Liquids – online calculation

Page 51: Modern Information Technologies for Thermodynamic

Types of works with the RefBook

1. On-line calculations

2. Functions download or creating

3. References on functions

51

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IAPWS-95 Formulation as Mathcad user function (we can download it)

31

Page 53: Modern Information Technologies for Thermodynamic

Properties of Ionic Liquids Code generator for Java, Matlab, VBA and others languages

Page 54: Modern Information Technologies for Thermodynamic

Types of works with the RefBook

1. On-line calculations

2. Functions download or creating

3. References on functions

Cloud Functions 54

Page 55: Modern Information Technologies for Thermodynamic

1-st work step - comments

55

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Property of the link

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2-d work step - Reference

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3-d work step – Insert Address

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Page 59: Modern Information Technologies for Thermodynamic

Finish - calculations

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Page 60: Modern Information Technologies for Thermodynamic

A ship Dresden

60

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A steam engine of this ship

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This topic on the Knovel-site

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Knovel is a part of Elsevier from 2012

64

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Interactive tools of Elsevier/Knovel

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Interactive calculation on the Elsevier/Knovel web site

66

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One link on the reference book with «dead formulas»

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One link on the reference book with «live formulas»

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One «live formula» by Valery Ochkov

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Function - the density of water, depending on the pressure

and temperature on the Elsevier/Knovel web site

70

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Downloaded Mathcad worksheet from the

Elsevier/Knovel web site

71

Page 72: Modern Information Technologies for Thermodynamic

Downloaded Excel sheet from the Elsevier/Knovel web site

Page 73: Modern Information Technologies for Thermodynamic

New Era working with databases and formulas

ОИВТ РАН

Knovel

NIST Reference

Calculations

МЭИ

Page 74: Modern Information Technologies for Thermodynamic

Interactive Heat Engineering Reference books on the web

25

Paper variant of the Reference book

Web variant of the Reference book

Page 75: Modern Information Technologies for Thermodynamic

What do we have in the Reference book!?

Texts

Formulas

Tables

Plots

26

Page 76: Modern Information Technologies for Thermodynamic

What do we have in the Web Reference book!?

Texts with links etc

Live Formulas

Live Color 2D and 3D Plots + Animations

Live Tables

27

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What do we have in the Web Reference book!?

Texts with links etc

Live Formulas

Live Color Plots + Animations

Live Tables

28

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Live IAPWS etc Formulations

29

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Live IAPWS-IF97 Formulation

33

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Live IAPWS-IF97 Formulation: Region 1 & 2

34

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Live IAPWS-IF97 Formulation: Region 3

35

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Live IAPWS-IF97 Formulation: Region 4 & 5

36

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Live IAPWS-IF97 Formulation: Region 4

37

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IAPWS-IF97 in Internet

38

Virtual Thermodynamic surface water and steam

Website for Pocket PC

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IAPWS-IF97 in Internet – the double phase

39

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IAPWS-IF97 in Internet (not Mathcad but Mathematica)

40

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One IAPWS Formulation in Internet (not Mathcad but Free Charge on-line SMath)

41

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One IAPWS Formulation as user function of future version of Mathcad

42

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Live Reference Book in “pocket”

43

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Live Reference Book in Phone

44

Page 93: Modern Information Technologies for Thermodynamic

h, s - diagram steam expansion in a turbine

45

Page 94: Modern Information Technologies for Thermodynamic

Rankine Cycle in Internet

46

Page 95: Modern Information Technologies for Thermodynamic

Rankine Cycle in Internet

47

Optimization of steam-turbine cycle with two steam extraction

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Thermodynamic Cycle in Internet

48

Binar Cycle calculation

Page 97: Modern Information Technologies for Thermodynamic

One Heat transfer live task in Internet

49

Page 99: Modern Information Technologies for Thermodynamic

What do we have in the Web Reference book!?

Texts with links etc

Live Formulas

Live Color Plots + Animations

Live Tables

51

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Sound velocity in See Water

52

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Nomogram in book

53

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Nomogram in Web Reference book

54

Download Function >>>

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What do we have in the Web Reference book!?

Texts with links etc

Live Formulas

Live Color Plots + Animations

Live Tables

56

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57

One typical table from one paper reference book

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Other typical table from one paper reference book

58

Download All Function >>>

Page 108: Modern Information Technologies for Thermodynamic

Other typical table from one reference book

60

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Live table as Mathcad open user function

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Live table as Mathcad protected user function

63

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Protected Web Calculation: first level

64

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Protected Web Calculation: second level

65

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One more typical 3D-table from one reference book

66

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Possible cooperation MPEI – NIST – PTC – Elsevier

/Knovel – TU Dresden

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68

Now

In future

One way of cooperation MPEI(TU) – NIST – (PTC+Knovel)

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69

Other of cooperation MPEI – NIST – PTC+Knovel

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70

Other way of cooperation MPEI(TU) – NIST – (PTC+Knovel)

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Thanks for your attention

Valery Ochkov ([email protected])

Dr., Professor, NRU Moscow Power Engineering Institute

73