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Erschienen in: International Journal on Interactive Design and Manufacturing (IJIDeM) 3/2019

19.01.2019 | Original Paper

A design methodology for the virtual energy labelling of cooking ovens

verfasst von: Daniele Landi, Paolo Cicconi, Michele Germani

Erschienen in: International Journal on Interactive Design and Manufacturing (IJIDeM) | Ausgabe 3/2019

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Abstract

Nowadays, the increasing of global climate change and warming is leading governments, consumers, and firms towards a low-carbon economy. A lot of research shows that about 75% of the environmental impacts related to energy-related products is due to the use phase. Therefore, energy-related products, such as household appliances, are responsible for the consumption and depletion of natural resources. The eco-design of household appliances is a necessary approach to analyze and reduce the environmental impacts related to these products, considering materials, efficiency, and energy consumptions. In Europe, as well in China and America, the eco-design is becoming an Integrated Product Policy to support the Energy Labelling of several energy-related and consuming products. This paper deals with a design methodology to support the eco-design of cooking ovens by the simulation of the product performance. Two simulation cases have been analyzed: the energy consumption, which is provided by EU regulations No 66/2014 and No 65/2014 and the baking test. Even if regulations only provide the energy consumption test, the baking test is necessary to analyze the functional quality of the product. Therefore, two levels of simulations are necessary to complete the eco-design approach of cooking ovens. The results show that the proposed methodological approach can reduce the time-to-market and enhance the design optimization from the early design phases.

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Literatur
1.
Zurück zum Zitat IPCC: IPCC fourth assessment report: climate change 2007. Cambridge University Press, Cambridge (2007) IPCC: IPCC fourth assessment report: climate change 2007. Cambridge University Press, Cambridge (2007)
2.
Zurück zum Zitat The three other objectives identified in the EU SDS are: social equity and cohesion, economic prosperity and meeting our international responsibilities. Council of the European Union review of the EU sustainable development strategy (EU SDS)—renewed strategy. General Secretariat: Brussels, 2006; at 3 The three other objectives identified in the EU SDS are: social equity and cohesion, economic prosperity and meeting our international responsibilities. Council of the European Union review of the EU sustainable development strategy (EU SDS)—renewed strategy. General Secretariat: Brussels, 2006; at 3
3.
Zurück zum Zitat European Commission communication on the sustainable consumption and production and sustainable industrial policy action plan. COM, 2008; 397/3 European Commission communication on the sustainable consumption and production and sustainable industrial policy action plan. COM, 2008; 397/3
4.
Zurück zum Zitat Directive 2005/32/EC establishing a framework for the setting of ecodesign requirements for energy-using products and amending Council Directive 92/42/EEC and Directives 96/57/EC and 2000/55/EC. OJ, 2005; L191/29 Directive 2005/32/EC establishing a framework for the setting of ecodesign requirements for energy-using products and amending Council Directive 92/42/EEC and Directives 96/57/EC and 2000/55/EC. OJ, 2005; L191/29
5.
Zurück zum Zitat EC: Commission delegated regulation (EU) No 65/2014 of 1 October 2013 supplementing directive 2010/30/EU of the European Parliament and of the Council with regard to the energy labelling of domestic ovens and range hoods (2013a) EC: Commission delegated regulation (EU) No 65/2014 of 1 October 2013 supplementing directive 2010/30/EU of the European Parliament and of the Council with regard to the energy labelling of domestic ovens and range hoods (2013a)
6.
Zurück zum Zitat Wang, Z., Wang, X., Guo, D.: Policy implications of the purchasing intentions towards energy-efficient appliances among China’s urban residents: do subsidies work? Energy Policy 102, 430–439 (2017)CrossRef Wang, Z., Wang, X., Guo, D.: Policy implications of the purchasing intentions towards energy-efficient appliances among China’s urban residents: do subsidies work? Energy Policy 102, 430–439 (2017)CrossRef
7.
Zurück zum Zitat Favi, C., Germani, M., Landi, D., Mengarelli, M., Rossi, M.: Comparative life cycle assessment of cooking appliances in Italian kitchens. J. Clean. Prod. 186, 430–449 (2018)CrossRef Favi, C., Germani, M., Landi, D., Mengarelli, M., Rossi, M.: Comparative life cycle assessment of cooking appliances in Italian kitchens. J. Clean. Prod. 186, 430–449 (2018)CrossRef
9.
Zurück zum Zitat Data Monitor Research Kitchen appliances: global industry guide. Data monitor research. www. datamonitor.com/store/Product/kitchen_appliances_global_industry_guide?productid = ML00016-157. Accessed 13 June 2014 Data Monitor Research Kitchen appliances: global industry guide. Data monitor research. www. datamonitor.com/store/Product/kitchen_appliances_global_industry_guide?productid = ML00016-157. Accessed 13 June 2014
12.
Zurück zum Zitat Bertoldi, P., Ricci, A., de Almida, A. (eds.): Energy efficiency in household appliances and lighting. Springer-Verlag, Berlin (2001) Bertoldi, P., Ricci, A., de Almida, A. (eds.): Energy efficiency in household appliances and lighting. Springer-Verlag, Berlin (2001)
13.
Zurück zum Zitat EC: Europe’s energy portal. European Commission, Brussels (2013) EC: Europe’s energy portal. European Commission, Brussels (2013)
14.
Zurück zum Zitat Lanzotti, A., Carbone, F., Grazioso, S., Renno, F.: A new interactive design approach for concept selection based on expert opinion. Int. J. Interact. Des. Manuf. (IJIDeM) 12(4), 1189–1199 (2018)CrossRef Lanzotti, A., Carbone, F., Grazioso, S., Renno, F.: A new interactive design approach for concept selection based on expert opinion. Int. J. Interact. Des. Manuf. (IJIDeM) 12(4), 1189–1199 (2018)CrossRef
15.
Zurück zum Zitat Landi, D., Cicconi, P., Germani, M., Russo, A.C.: A methodological approach to support the design of induction hobs. In: ASME International Mechanical Engineering Congress and Exposition, Proceedings (IMECE) (2016) Landi, D., Cicconi, P., Germani, M., Russo, A.C.: A methodological approach to support the design of induction hobs. In: ASME International Mechanical Engineering Congress and Exposition, Proceedings (IMECE) (2016)
16.
Zurück zum Zitat Cicconi, P., Landi, D., Russo, A.C., Raffaeli, R., Germani, M.: A CSP-based design framework for appliances under energy labelling. Int. J. Interact. Des. Manuf. 12(4), 1243–1263 (2018)CrossRef Cicconi, P., Landi, D., Russo, A.C., Raffaeli, R., Germani, M.: A CSP-based design framework for appliances under energy labelling. Int. J. Interact. Des. Manuf. 12(4), 1243–1263 (2018)CrossRef
17.
Zurück zum Zitat Solaberrieta, E., Barrenetxea, L., Minguez, R., Iturrate, M., De Prado, I.: Registration of mandibular movement for dental diagnosis, planning and treatment. Int. J. Interact. Des. Manuf. (IJIDeM) 12(3), 1027–1038 (2018)CrossRef Solaberrieta, E., Barrenetxea, L., Minguez, R., Iturrate, M., De Prado, I.: Registration of mandibular movement for dental diagnosis, planning and treatment. Int. J. Interact. Des. Manuf. (IJIDeM) 12(3), 1027–1038 (2018)CrossRef
18.
Zurück zum Zitat Tu, J., Yeoh, G.-H., Liu, C.: Computational Fluid Dynamics: A Practica Approach. Butterworth-Heinemann, Oxford (2013)MATH Tu, J., Yeoh, G.-H., Liu, C.: Computational Fluid Dynamics: A Practica Approach. Butterworth-Heinemann, Oxford (2013)MATH
19.
Zurück zum Zitat Smolka, J., Bulinski, Z., Nowak, A.J.: The experimental validation of a CFD model for a heating oven with natural air circulation. Appl. Therm. Eng. 54, 387–398 (2013)CrossRef Smolka, J., Bulinski, Z., Nowak, A.J.: The experimental validation of a CFD model for a heating oven with natural air circulation. Appl. Therm. Eng. 54, 387–398 (2013)CrossRef
20.
Zurück zum Zitat Verboven, P., Scheerlinck, N., De Baerdemaeker, J., Nicolaï, B.M.: Computational fluid dynamics modelling and validation of the isothermal airflow in a forced convection oven. J. Food Eng. 43, 41–53 (2000)CrossRef Verboven, P., Scheerlinck, N., De Baerdemaeker, J., Nicolaï, B.M.: Computational fluid dynamics modelling and validation of the isothermal airflow in a forced convection oven. J. Food Eng. 43, 41–53 (2000)CrossRef
21.
Zurück zum Zitat Verboven, P., Scheerlinck, N., De Baerdemaeker, J., Nicolaı̈, S.-Y.: Computational fluid dynamics modelling and validation of the temperature distribution in a forced convection oven. J. Food Eng. 43, 61–73 (2000)CrossRef Verboven, P., Scheerlinck, N., De Baerdemaeker, J., Nicolaı̈, S.-Y.: Computational fluid dynamics modelling and validation of the temperature distribution in a forced convection oven. J. Food Eng. 43, 61–73 (2000)CrossRef
22.
Zurück zum Zitat Therdthai, N., Zhou, W., Adamczak, T.: Two-dimensional CFD modelling and simulation of an industrial continuous bread baking oven. J. Food Eng. 60, 211–217 (2003)CrossRef Therdthai, N., Zhou, W., Adamczak, T.: Two-dimensional CFD modelling and simulation of an industrial continuous bread baking oven. J. Food Eng. 60, 211–217 (2003)CrossRef
23.
Zurück zum Zitat Mirade, P.S., Daudin, J.D., Ducept, F., Trystram, G., Clément, J.: Characterization and CFD modelling of air temperature and velocity profiles in an industrial biscuit baking tunnel oven. Food Res. Int. 37, 1031–1039 (2004)CrossRef Mirade, P.S., Daudin, J.D., Ducept, F., Trystram, G., Clément, J.: Characterization and CFD modelling of air temperature and velocity profiles in an industrial biscuit baking tunnel oven. Food Res. Int. 37, 1031–1039 (2004)CrossRef
24.
Zurück zum Zitat Mistry, H., Ganapathi, S., Dey, S., Bishnoi, P., Castillo, J.L.: Modeling of transient natural convection heat transfer in electric ovens. Appl. Therm. Eng. 26, 2448–2456 (2006)CrossRef Mistry, H., Ganapathi, S., Dey, S., Bishnoi, P., Castillo, J.L.: Modeling of transient natural convection heat transfer in electric ovens. Appl. Therm. Eng. 26, 2448–2456 (2006)CrossRef
25.
Zurück zum Zitat Wong, S.Y., Zhou, W., Hua, J.: CFD modeling of an industrial continuous bread-baking process involving U-movement. J. Food Eng. 78, 888–896 (2007)CrossRef Wong, S.Y., Zhou, W., Hua, J.: CFD modeling of an industrial continuous bread-baking process involving U-movement. J. Food Eng. 78, 888–896 (2007)CrossRef
26.
Zurück zum Zitat Khatir, Z., Paton, J., Thompson, H., Kapur, N., Toropov, V., Lawes, M., Kirk, D.: Computational fluid dynamics (CFD)investigation of air flow and temperature distribution in a small scale bread-baking oven. Appl. Energy 89, 89–96 (2012)CrossRef Khatir, Z., Paton, J., Thompson, H., Kapur, N., Toropov, V., Lawes, M., Kirk, D.: Computational fluid dynamics (CFD)investigation of air flow and temperature distribution in a small scale bread-baking oven. Appl. Energy 89, 89–96 (2012)CrossRef
27.
Zurück zum Zitat Smolka, J., Nowak, A.J., Rybarz, D.: Improved 3-D temperature uniformity in a laboratory drying oven based on experimentally validated CFD computations. J. Food Eng. 97, 373–383 (2010)CrossRef Smolka, J., Nowak, A.J., Rybarz, D.: Improved 3-D temperature uniformity in a laboratory drying oven based on experimentally validated CFD computations. J. Food Eng. 97, 373–383 (2010)CrossRef
28.
Zurück zum Zitat Özdemir, I.B.: Simulation of turbulent combustion in a self-aerated domestic gas oven. Appl. Therm. Eng. 113, 160–169 (2017)CrossRef Özdemir, I.B.: Simulation of turbulent combustion in a self-aerated domestic gas oven. Appl. Therm. Eng. 113, 160–169 (2017)CrossRef
29.
Zurück zum Zitat Park, S.H., Kim, Y.H., Kim, Y.S., Park, Y.G., Ha, M.Y.: Numerical study on the effect of different hole locations in the fan case on the thermal performance inside a gas oven range. Appl. Therm. Eng. 137, 123–133 (2018)CrossRef Park, S.H., Kim, Y.H., Kim, Y.S., Park, Y.G., Ha, M.Y.: Numerical study on the effect of different hole locations in the fan case on the thermal performance inside a gas oven range. Appl. Therm. Eng. 137, 123–133 (2018)CrossRef
30.
Zurück zum Zitat Kokolj, U., Škerget, L., Ravnik, J.: A numerical model of the shortbread baking process in a forced convection oven. Appl. Therm. Eng. 111(2017), 1304–1311 (2017)CrossRef Kokolj, U., Škerget, L., Ravnik, J.: A numerical model of the shortbread baking process in a forced convection oven. Appl. Therm. Eng. 111(2017), 1304–1311 (2017)CrossRef
31.
Zurück zum Zitat Pask, F., Sadhukhan, J., Lake, P., McKenna, S., Perez, E.B., Yange, A.: Systematic approach to industrial oven optimisation for energy saving. Appl. Therm. Eng. 71(1), 72–77 (2014)CrossRef Pask, F., Sadhukhan, J., Lake, P., McKenna, S., Perez, E.B., Yange, A.: Systematic approach to industrial oven optimisation for energy saving. Appl. Therm. Eng. 71(1), 72–77 (2014)CrossRef
32.
Zurück zum Zitat Prist, M., Pallotta, E., Cicconi, P., Russo, A.C., Monteriu, A., Germani, M, Longhi, S.: An automatic temperature control for induction cooktops to reduce energy consumption. In: 2018 IEEE International Conference on Consumer Electronics (ICCE) (2018) Prist, M., Pallotta, E., Cicconi, P., Russo, A.C., Monteriu, A., Germani, M, Longhi, S.: An automatic temperature control for induction cooktops to reduce energy consumption. In: 2018 IEEE International Conference on Consumer Electronics (ICCE) (2018)
33.
Zurück zum Zitat Cicconi, P., Landi, D., Germani, M., Russo, A.C.: A support approach for the conceptual design of energy-efficient cooker hoods. Appl. Energy 206, 222–239 (2017)CrossRef Cicconi, P., Landi, D., Germani, M., Russo, A.C.: A support approach for the conceptual design of energy-efficient cooker hoods. Appl. Energy 206, 222–239 (2017)CrossRef
36.
Zurück zum Zitat Bayareh, M., Pordanjani, A.H., Nadooshan, A.A., Dehkordi, K.H.: Numerical study of the effects of stator boundary conditions and blade geometry on the efficiency of a scraped surface heat exchanger. Appl. Therm. Eng. 113, 1426–1436 (2017)CrossRef Bayareh, M., Pordanjani, A.H., Nadooshan, A.A., Dehkordi, K.H.: Numerical study of the effects of stator boundary conditions and blade geometry on the efficiency of a scraped surface heat exchanger. Appl. Therm. Eng. 113, 1426–1436 (2017)CrossRef
37.
Zurück zum Zitat Jasak, H.: Error analysis and estimation for the finite volume method with applications to fluid flows. Ph.D. thesis, The University of London (1996) Jasak, H.: Error analysis and estimation for the finite volume method with applications to fluid flows. Ph.D. thesis, The University of London (1996)
38.
Zurück zum Zitat Norton, T., Sun, D.-W.: Computational fluid dynamics(CFD)—an effective and efficient design and analysis tool forthe food industry: a review. Trends Food Sci. Technol. 17, 600–620 (2006)CrossRef Norton, T., Sun, D.-W.: Computational fluid dynamics(CFD)—an effective and efficient design and analysis tool forthe food industry: a review. Trends Food Sci. Technol. 17, 600–620 (2006)CrossRef
39.
Zurück zum Zitat Launder, B.E., Spalding, D.B.: The numerical computation ofturbulent flows. Comput. Methods Appl. Mech. Eng. 3, 269–289 (1974)CrossRefMATH Launder, B.E., Spalding, D.B.: The numerical computation ofturbulent flows. Comput. Methods Appl. Mech. Eng. 3, 269–289 (1974)CrossRefMATH
40.
Zurück zum Zitat Özdemir, Bedii: Simulation of turbulent combustion in a self-aerated domestic gas oven. Appl. Therm. Eng. 113(25), 160–169 (February 2017)CrossRef Özdemir, Bedii: Simulation of turbulent combustion in a self-aerated domestic gas oven. Appl. Therm. Eng. 113(25), 160–169 (February 2017)CrossRef
Metadaten
Titel
A design methodology for the virtual energy labelling of cooking ovens
verfasst von
Daniele Landi
Paolo Cicconi
Michele Germani
Publikationsdatum
19.01.2019
Verlag
Springer Paris
Erschienen in
International Journal on Interactive Design and Manufacturing (IJIDeM) / Ausgabe 3/2019
Print ISSN: 1955-2513
Elektronische ISSN: 1955-2505
DOI
https://doi.org/10.1007/s12008-019-00533-2

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