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Sergej G.

@Spartak2021

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5.0
4
3.4
3.4
100%

Engineer software developer. Heat transfer

$20 USD / Hour
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Germany (4:17 AM)
Joined on June 24, 2021
$20 USD / Hour
I am a research engineer in the field of heat transfer. I have extensive experience in calculating heat transfer in free convective and forced flows. For the last 15 years I have been developing MATLAB programs for calculating heat exchangers. With interest I will get acquainted with your project in more detail
Verifications
On time
100%
On budget
100%
Accept rate
100%
Repeat hire rate
38%

Portfolio

Portfolio

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5.0 · 4 Reviews
Reviews
I
Project #2 €100 EUR
Great freelancer. Always fast and accurate.
Mark E.
@inversefunction
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Sandyford, Ireland
2 years ago
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I
Sergej is a great freelancer. Efficient and accurate.
Mark E.
@inversefunction
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Sandyford, Ireland
2 years ago
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F
Heat transfer calculation ₹2,000 INR
Very skilled and professional. Would highly recommend.
Closed User
@fidelcastroprp
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3 years ago
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Project for Sergej G. $160 USD
Amazing. To sum up my experience with this freelancer. He is truly an amazing writer. Extremely professional, and has never let me down. Before settling for mediocre, check out and talk to him and you will not be disappointed!!
S M T.
@SmTopazal
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TMN IMPIAN EHSAN, Malaysia
3 years ago
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Experience
Ingenieur R&D
Oct, 2007 - Present
17 years, 2 months
Funke Wärmeaustauscher Apparatebau GmbH, Germany
Oct, 2007 - Present
17 years, 2 months
Development of a set of MATLAB programs for thermal and hydraulic calculation of plate heat exchangers. Experimental data processing software
Oct, 2007 - Present
17 years, 2 months
Ingenieur-Verfahrenstechnik
Jun, 2006 - Sep, 2007
1 year, 3 months
Lauterbach Verfahrenstechnik, Eggenstein (www.lv-soft.de). Deutschland
Jun, 2006 - Sep, 2007
1 year, 3 months
Development of programs for thermal and hydraulic calculation of devices based on Visual Basic.
Jun, 2006 - Sep, 2007
1 year, 3 months
Professor
Sep, 1986 - Sep, 2004
18 years
Kaluga State University Russia
Sep, 1986 - Sep, 2004
18 years
General and statistical physics Experimental physics Applied math Numerical Methods Didactics of Physics Biology and Physics
Sep, 1986 - Sep, 2004
18 years
Education
Moskovskij Gosudarstvennyj Tehniceskij Universitet im. N.E. Baumana
Konstruktionsingenieur
Flag of
Russian Federation
Qualifications
Doktor der technischen Wissenschaft
2000
Institut für Atommaschinenwesen, Russische Akademie der Wissenschaften, Moskau. Russland
Thema der Dissertation: Der Wärmeaustausch und Hydrodynamik bei freier konvektiver Strömung um horizontale zylindrische Körper unter Berücksichtigung variabler Stoffwerte.
2000
Microsoft Certified Professional
2002
Microsoft
Visual Basic 6.0
2002
Publications
Plate heat exchangers: calculation of pressure drop for single phase convection
Heat Mass Transfer , 5. August 2021
Plate heat exchangers are of primary importance for many technical applications. In this work new geometrical parameters are introduced to calculate the pressure drop of the distribution zone. The resulting correlations with new parameters include the pressure drop of both corrugated field and distribution zones.
Gusew. Pressure Drop in Plate Heat Exchangers for Single-Phase Convection in Turbulent Flow Regime
International Journal of Chemical Engineering 2019 : 1–11. https://doi.org/10.1155/2019/3693657.
To use PHE effectively it is necessary to calculate the pressure drop correctly.. In this work new geometrical parameters are introduced to calculate the pressure drop of the distribution zone. The resulting correlations with new parameters include the pressure drop of both corrugated field and distribution zones. This new three-component model for hydraulic resistance show good agreement with experimental data for PHEs in turbulent flow regime.
Gusew, Sergej. „HEAT TRANSFER IN PLATE HEAT EXCHANGERS IN THE TRANSITION FLOW REGIME“.
Journal of Enhanced Heat Transfer 22, Nr. 5 (2015): 441–55.
Plate heat exchangers (PHEs) are widespread in different technical fields, namely, in energetics, chemical industries, the food industry, and others. For the correlation of data for the heat transfer in the PHE, usually the following equation is used: Nu = CRe^nPr^m(μ/μwall) In this transitional area the exponent n changes very strongly, and it cannot be considered as a constant. As a solution, in this work an empirical correlation for the dependence n(Re) is suggested.
Certifications
Basic Numeracy - Level 1
Basic Numeracy
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