Izgradnja u kontekstu klimatskih promena: Razmatranje aspekata planiranja i projektovanja u vreme klimatske neizvesnosti
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Diskurs o klimatskim promenama dotiče sve oblasti i aspekte naučnih ispitivanja i istraživanja, kao i svakodnevni život. U ovom radu je pregled nekih od izraženijih aspekata planiranja i projektovanja zgrada koji su neposredno povezani sa klimatskim pitanjima. Učinjen je pokušaj da se pokaže kako pogoršanje klimatskih krajnosti (ekstremnih pojava) i neočekivanih vremenskih prilika utiču na životnu i radnu sredinu ljudi, i razlog zbog koga alternativni principi i praksa prilagođeni klimi više nisu samo "luksuz" koji se nalazi na marginama disciplina planiranja i izgradnje.
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MEIR, Isaac A.; PEARLMUTTER, D..
Izgradnja u kontekstu klimatskih promena: Razmatranje aspekata planiranja i projektovanja u vreme klimatske neizvesnosti.
KGH – Klimatizacija, grejanje, hlađenje, [S.l.], v. 43, n. 3, p. 67-72, jan. 2017.
ISSN 2560-340X.
Dostupno na: <https://izdanja.smeits.rs/index.php/kgh/article/view/1522>. Datum pristupa: 08 aug. 2026
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Reference
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[2] Flannery, T., The weather makers: the history and future of climate change; Allen Lane – Penguin
Books, London, 2005.
[3] Middleton, N., and D. Thomas (eds.), World atlas of desertification, 2nd edn., Hodder Arnold Publishers, London, 1997.
[4] Chen, Y. S. , P. C. Sheen, E. R. Chen, Y. K. Liu, T. N. Wu and C. Y. Yang, Effects of Asian dust storm events on daily mortality in Taipei, Taiwan, Environ. Res., 95, (2), 2004, pp. 151 – 155.
[5] Arnfield, A. J., Two decades of urban climate research: a review of turbulence, exchanges of energy
and water, and the urban heat island, Int. J. Climatol., 23, 2006, pp. 1 – 26.
[6] Oke, T. R., Boundary layer climates, Methuen, London and New York, 1987.
[7] Schär, C., P. L. Vidale, D. Luethi, C. Frei, C. Häberli, M. A. Liniger and C. Appenzeller, The
role of increasing temperature variability in European summer heatwaves, Nature, 427, 2004, pp.
332 – 336.
[8] Sauerhaft, B., P. R. Berliner and T. L. Thurow, The fuelwood crisis in arid zones: runoff agriculture
for renewable energy production, in: The arid frontier: interactive management of environment and
development, (ed. H. J. Bruins and H. Lithwick), Dordrecht, Kluwer Academic Publishers, 1998, pp.
351 – 363.
[9] Smith, K. R., The global burden of disease from unhealthy buildings: preliminary results from comparative risk assessment, Proc. HB2003 Int. Conf., Singapore, National University of Singapore, 2003, pp. 118 – 126.
[10] Pearlmutter, D., and I. A. Meir, Assessing the climatic implications of lightweight housing in a peripheral arid region, Build. Environ., 30, (3), 1995, pp. 441 – 451.
[11] Fisk, W. J., Estimates of potential nationwide productivity and health benefits from better indoor
environments: an update – ™ in: Indoor air quality handbook, (ed. J. D. Spengler et al.), Chapter 4, New
York, McGraw Hill, 1999.
[12] Bartsch, U., and B. Müler, Fossil fuels in a changing climate. Impacts of the Kyoto Protocol and
developing country participation, Oxford, Oxford University Press, 2000.
[13] Hassid, S., M. Santamouris, N. Papanikolaou, A. Linardi and N. Klitsikas, The effect of the heat
island on air conditioning load, Energy Build., 32, (2), 2002, pp. 131 – 141.
[14] Littlefair, P. J., M. Santamouris, S. Alvarez, A. Dupagne, D. Hall, J. Teller, J. F. Coronel and N.
Papanikolaou, Environmental site layout planning: solar access, microclimate and passive cooling in
urban areas, BRE Report 380, CRC Ltd, Nottingham, UK, 2000.
[15] Salingaros, N. A., C. Alexander, B. Hanson, M. Mehaffy and T. M. Mikiten, Anti-architecture and
deconstruction, Solingen, Umbau-Verlag, 2004.
[16] Fanger, P. O., Calculation of thermal comfort: introduction of a basic comfort equation, ASHRAE
Trans., 73, (2), III4.1 – III4.20, 1967.
[17] Fanger, P. O., Thermal comfort, Copenhagen, Danish Technical Press, 1970.
[18] Givoni, B., Man climate and architecture, New York, Van Nostrand Reinhold Co., 1969.
[19] *** Thermal environmental conditions for human occupancy, ANSI/ASHRAE Standard 55-2004, American Society of Heating Refrigeration and Air-Conditioning Engineers, Atlanta, GA, 2004.
[20] Mallick, F., Thermal comfort and building design in tropical climates, Energy Build., 23, (3), 1996, 161 – 167.
[21] Nicol, J. F. and M. A. Humphreys, Thermal comfort as part of a self-regulating system, Proc. CIB
W45 Symp. on – ˜Thermal comfort and moderate heat stress, Garston, Building Research Establishment,
1972, pp. 263 – 280.
[22] Nicol, J. F., and M. A. Humphreys, Adaptive thermalcomfort and sustainable thermal standards for
buildings, Energy Build., 34, (6), 2002, pp. 563 – 572.
[23] Meir, I. A. and S. C. Roaf, Thermal comfort – thermal mass: housing in hot dry climates, Proc.
9th Int. Conf. on – ˜Indoor air quality and climate – ™(ed. H. Levin), vol. I, Santa Cruz, CA, The International Academy of Indoor Air Sciences, 2002, pp. 1050 – 1055.
[24] Huberman, N. and D. Pearlmutter, A life-cycle energy analysis of building materials in the Negev desert, Energy Build., 40, 2008, pp. 837 – 848.
[25] *** Population reports, Information and Knowledge for Optimal Health (INFO) Project, Johns Hopkins Bloomberg School of Public Health & USAID, Baltimore, 2006, available at http:// www.infoforhealth.org/pr
[26] *** UNESCO: www.unesco.org/water/wwap – for an thorough discussion on water issues the reader is addressed to UNESCO-WWAP 2006. Water: a shared responsibility, 2003. The United Nations World Water Development Report 2. UNESCO http://unesdoc.unesco.org/images/0014/001454/145405E.pdf
[27] Dubnov, J. , M. Barchana, S. Rishpon, A. Leventhal, I. Segal, R. Carel and B. A. Portnov, Estimating the effect of air pollution from a coal-fired power station on the development of children – ™s pulmonary function, Environ. Res., 103, (1), 2007, pp. 87 – 98.
[28] Giannini, A., R. Saravanan and P. Chang, Oceanic forcing of Sahel rainfall on interannual to interdecadal timescales, Science, 302, 2003, pp. 1027 – 1030.
[29] Meir, I. A., Y. Garb, D. Jiao and A. Cicelsky, Post occupancy evaluation (POE): an inevitable step toward sustainability, J. Adv. Build. Energy Res., 3, 2009, pp. 189 – 220.
[30] Meir, I. A. and S. C. Roaf, The future of the vernacular. Towards new methodologies for the understanding and optimization of the performance of vernacular buildings, in: Vernacular architecture
in the 21st century: theory, education and practice, (ed. L. Asquith and M. Vellinga), 2005, pp. 250 – 230, Oxford, Routledge.
[31] Roaf, S., D. Crichton and F. Nicol, Adapting buildings and cities for climate change. A 21st Century Survival Guide, Amsterdam, The Architectural Press, 2004.
[32] Meir, I. A., Deserts: ultimate dumps or last frontiers? Proc. 10th Int. Conf. on – ˜Indoor air quality and climate – ™ (ed. X. D. Yang et al.), vol. V, Beijing, Tsinghua University Press, 2005, pp. 3908 – 3912.
[33] *** IPPC: Climate change 2007: synthesis report. An assessment of the intergovernmental panel on climate change, Intergovernmental Panel on Climate Change Plenary XXVII Valencia, Spain, 2007.
heat conditions over the Mediterranean basin, Geophys. Res. Lett., 32, (12), L12706, 2005.
[2] Flannery, T., The weather makers: the history and future of climate change; Allen Lane – Penguin
Books, London, 2005.
[3] Middleton, N., and D. Thomas (eds.), World atlas of desertification, 2nd edn., Hodder Arnold Publishers, London, 1997.
[4] Chen, Y. S. , P. C. Sheen, E. R. Chen, Y. K. Liu, T. N. Wu and C. Y. Yang, Effects of Asian dust storm events on daily mortality in Taipei, Taiwan, Environ. Res., 95, (2), 2004, pp. 151 – 155.
[5] Arnfield, A. J., Two decades of urban climate research: a review of turbulence, exchanges of energy
and water, and the urban heat island, Int. J. Climatol., 23, 2006, pp. 1 – 26.
[6] Oke, T. R., Boundary layer climates, Methuen, London and New York, 1987.
[7] Schär, C., P. L. Vidale, D. Luethi, C. Frei, C. Häberli, M. A. Liniger and C. Appenzeller, The
role of increasing temperature variability in European summer heatwaves, Nature, 427, 2004, pp.
332 – 336.
[8] Sauerhaft, B., P. R. Berliner and T. L. Thurow, The fuelwood crisis in arid zones: runoff agriculture
for renewable energy production, in: The arid frontier: interactive management of environment and
development, (ed. H. J. Bruins and H. Lithwick), Dordrecht, Kluwer Academic Publishers, 1998, pp.
351 – 363.
[9] Smith, K. R., The global burden of disease from unhealthy buildings: preliminary results from comparative risk assessment, Proc. HB2003 Int. Conf., Singapore, National University of Singapore, 2003, pp. 118 – 126.
[10] Pearlmutter, D., and I. A. Meir, Assessing the climatic implications of lightweight housing in a peripheral arid region, Build. Environ., 30, (3), 1995, pp. 441 – 451.
[11] Fisk, W. J., Estimates of potential nationwide productivity and health benefits from better indoor
environments: an update – ™ in: Indoor air quality handbook, (ed. J. D. Spengler et al.), Chapter 4, New
York, McGraw Hill, 1999.
[12] Bartsch, U., and B. Müler, Fossil fuels in a changing climate. Impacts of the Kyoto Protocol and
developing country participation, Oxford, Oxford University Press, 2000.
[13] Hassid, S., M. Santamouris, N. Papanikolaou, A. Linardi and N. Klitsikas, The effect of the heat
island on air conditioning load, Energy Build., 32, (2), 2002, pp. 131 – 141.
[14] Littlefair, P. J., M. Santamouris, S. Alvarez, A. Dupagne, D. Hall, J. Teller, J. F. Coronel and N.
Papanikolaou, Environmental site layout planning: solar access, microclimate and passive cooling in
urban areas, BRE Report 380, CRC Ltd, Nottingham, UK, 2000.
[15] Salingaros, N. A., C. Alexander, B. Hanson, M. Mehaffy and T. M. Mikiten, Anti-architecture and
deconstruction, Solingen, Umbau-Verlag, 2004.
[16] Fanger, P. O., Calculation of thermal comfort: introduction of a basic comfort equation, ASHRAE
Trans., 73, (2), III4.1 – III4.20, 1967.
[17] Fanger, P. O., Thermal comfort, Copenhagen, Danish Technical Press, 1970.
[18] Givoni, B., Man climate and architecture, New York, Van Nostrand Reinhold Co., 1969.
[19] *** Thermal environmental conditions for human occupancy, ANSI/ASHRAE Standard 55-2004, American Society of Heating Refrigeration and Air-Conditioning Engineers, Atlanta, GA, 2004.
[20] Mallick, F., Thermal comfort and building design in tropical climates, Energy Build., 23, (3), 1996, 161 – 167.
[21] Nicol, J. F. and M. A. Humphreys, Thermal comfort as part of a self-regulating system, Proc. CIB
W45 Symp. on – ˜Thermal comfort and moderate heat stress, Garston, Building Research Establishment,
1972, pp. 263 – 280.
[22] Nicol, J. F., and M. A. Humphreys, Adaptive thermalcomfort and sustainable thermal standards for
buildings, Energy Build., 34, (6), 2002, pp. 563 – 572.
[23] Meir, I. A. and S. C. Roaf, Thermal comfort – thermal mass: housing in hot dry climates, Proc.
9th Int. Conf. on – ˜Indoor air quality and climate – ™(ed. H. Levin), vol. I, Santa Cruz, CA, The International Academy of Indoor Air Sciences, 2002, pp. 1050 – 1055.
[24] Huberman, N. and D. Pearlmutter, A life-cycle energy analysis of building materials in the Negev desert, Energy Build., 40, 2008, pp. 837 – 848.
[25] *** Population reports, Information and Knowledge for Optimal Health (INFO) Project, Johns Hopkins Bloomberg School of Public Health & USAID, Baltimore, 2006, available at http:// www.infoforhealth.org/pr
[26] *** UNESCO: www.unesco.org/water/wwap – for an thorough discussion on water issues the reader is addressed to UNESCO-WWAP 2006. Water: a shared responsibility, 2003. The United Nations World Water Development Report 2. UNESCO http://unesdoc.unesco.org/images/0014/001454/145405E.pdf
[27] Dubnov, J. , M. Barchana, S. Rishpon, A. Leventhal, I. Segal, R. Carel and B. A. Portnov, Estimating the effect of air pollution from a coal-fired power station on the development of children – ™s pulmonary function, Environ. Res., 103, (1), 2007, pp. 87 – 98.
[28] Giannini, A., R. Saravanan and P. Chang, Oceanic forcing of Sahel rainfall on interannual to interdecadal timescales, Science, 302, 2003, pp. 1027 – 1030.
[29] Meir, I. A., Y. Garb, D. Jiao and A. Cicelsky, Post occupancy evaluation (POE): an inevitable step toward sustainability, J. Adv. Build. Energy Res., 3, 2009, pp. 189 – 220.
[30] Meir, I. A. and S. C. Roaf, The future of the vernacular. Towards new methodologies for the understanding and optimization of the performance of vernacular buildings, in: Vernacular architecture
in the 21st century: theory, education and practice, (ed. L. Asquith and M. Vellinga), 2005, pp. 250 – 230, Oxford, Routledge.
[31] Roaf, S., D. Crichton and F. Nicol, Adapting buildings and cities for climate change. A 21st Century Survival Guide, Amsterdam, The Architectural Press, 2004.
[32] Meir, I. A., Deserts: ultimate dumps or last frontiers? Proc. 10th Int. Conf. on – ˜Indoor air quality and climate – ™ (ed. X. D. Yang et al.), vol. V, Beijing, Tsinghua University Press, 2005, pp. 3908 – 3912.
[33] *** IPPC: Climate change 2007: synthesis report. An assessment of the intergovernmental panel on climate change, Intergovernmental Panel on Climate Change Plenary XXVII Valencia, Spain, 2007.
