QURILISHDAGI IQTISODIY TEJAMKORLIK ASOSIDA LEGO G‘ISHT MATERIALLARINI TAHLIL QILISH
DOI:
https://doi.org/10.5281/zenodo.21626535Ключевые слова:
Qurilish, lego g‘isht, materiallar, iqtisodiy tejamkorlik, lego o‘lchamlari, tuzilishi, o‘lchamlariАннотация
Qurilishda lego g‘isht materiallarining iqtisodiy tejamkorligi va lego g‘isht materiallarini tahlil
qilishga qaratilgan. Bundan tashqari, lego g‘ishtlarning har birining lokal qabul qiluvchi maydon o‘lchamini
aniqlash, joylash o‘lchamini moslashtirish hamda e’tibor g‘ishtlarining sonini o‘zgartirish kabi parametrlarni
sozlash orqali qurilish samaradorligini yanada oshirish imkoniyati haqida yozilgan
Библиографические ссылки
1. Thanoon W. A., Jaafar M. S., Noorzaei J., Kadir M. R. A., Fares S. Structural behaviour of mortar-less
interlocking masonry system under eccentric compressive loads // Advances in Structural Engineering. –
2007. – Vol. 10, No. 1. – P. 11–24. – DOI: 10.1260/136943307780150832.
2. Sturm T., Ramos L. F., Lourenço P. B. Characterization of dry-stack interlocking compressed earth blocks
// Materials and Structures. – 2015. – Vol. 48, No. 9. – P. 3059–3074. – DOI: 10.1617/s11527-014-0379-3.
3. Laursen P. T., Herskedal N. A., Jansen D. C., Qu B. Out-of-plane structural response of interlocking
compressed earth block walls // Materials and Structures. – 2015. – Vol. 48, No. 1–2. – P. 321–336. – DOI:
10.1617/s11527-013-0186-2.
4. Qu B., Stirling B. J., Jansen D. C., Bland D. W., Laursen P. T. Testing of flexure-dominated interlocking
compressed earth block walls // Construction and Building Materials. – 2015. – Vol. 83. – P. 34–43. – DOI:
10.1016/j.conbuildmat.2015.02.080.
5. Fundi S. I., Kaluli J. W., Kinuthia J. Performance of interlocking laterite soil block walls under static
loading // Construction and Building Materials. – 2018. – Vol. 171. – P. 75–82. – DOI: 10.1016/j.
conbuildmat.2018.03.115.
6. Shi T., Zhang X., Hao H., Chen C. Experimental and numerical investigation on the compressive properties
of interlocking blocks // Engineering Structures. – 2021. – Vol. 228. – Article 111561. – DOI: 10.1016/j.
engstruct.2020.111561.
7. Shi T., Zhang X., Hao H., Xie G. Experimental and numerical studies of the shear resistance capacities of
interlocking blocks // Journal of Building Engineering. – 2021. – Vol. 44. – Article 103230. – DOI: 10.1016/j.
jobe.2021.103230.
8. Nadeem M., Gul A., Bahrami A., Azab M., Khan S. W., Shahzada K. Evaluation of mechanical properties
of cored interlocking blocks: A step toward affordable masonry material // Results in Engineering. – 2023.
– Vol. 18. – Article 101128. – DOI: 10.1016/j.rineng.2023.101128.
9. Lan G., Wang T., Wang Y., Zhang K. Seismic performance of interlocking compressed-earth block
composite walls // Composite Structures. – 2023. – Vol. 308. – Article 116704. – DOI: 10.1016/j.
compstruct.2023.116704.
10. Al-Jabri K., Hago A. W., Al-Saadi S., Amoatey P., Al-Harthy I. Structural and thermal performance of
sustainable interlocking compressed earth blocks masonry units made with produced water from oilfields
// Case Studies in Construction Materials. – 2022. – Vol. 17. – Article e01186. – DOI: 10.1016/j.cscm.2022.
e01186.
11. Touré P. M., Sambou V., Faye M., Thiam A., Adj M., Azilinon D. Mechanical and hygrothermal properties
of compressed stabilized earth bricks (CSEB) // Journal of Building Engineering. – 2017. – Vol. 13. – P.
266–271. – DOI: 10.1016/j.jobe.2017.08.012.
12. Jackson E. N., Mustapha Z., Aburam A. J., Quayson J. H. Comparative cost analysis between interlocking
bricks and sandcrete blocks for residential buildings in Ghana // MOJ Civil Engineering. – 2018. – Vol. 4,
No. 4. – P. 206–211. – DOI: 10.15406/mojce.2018.04.00120.
13. Turco C., de Paula Junior A. C., Teixeira E. R., Mateus R. Optimisation of compressed earth blocks using
natural origin materials: A systematic literature review // Construction and Building Materials. – 2021. – Vol.
309. – Article 125140. – DOI: 10.1016/j.conbuildmat.2021.125140.
14. Valenzuela M., Ciudad G., Cárdenas J. P., Medina C., Salas A., Oñate A., Pincheira G., Attia S., Tuninetti
V. Towards the development of performance-efficient compressed earth blocks from industrial and agroindustrial
by-products // Renewable and Sustainable Energy Reviews. – 2024. – Vol. 194. – Article 114323.
– DOI: 10.1016/j.rser.2024.114323.
15. de Paula Junior A. C., Teixeira E. R., Mateus R. Improving the mechanical, thermal and durability properties
of compressed earth blocks by incorporating industrial waste and by-products: A systematic literature
review // Construction and Building Materials. – 2024. – Vol. 438. – Article 137063. – DOI: 10.1016/j.
conbuildmat.2024.137063.
16. Hanafi W. H. H. Compressed stabilized earth block: Environmentally sustainable alternative for villages
housing // Journal of Engineering and Applied Science. – 2021. – Vol. 68. – Article 20. – DOI: 10.1186/
s44147-021-00017-9.
17. Morel J. C., Mesbah A., Oggero M., Walker P. Building houses with local materials: Means to drastically
reduce the environmental impact of construction // Building and Environment. – 2001. – Vol. 36, No. 10. –
P. 1119–1126. – DOI: 10.1016/S0360-1323(00)00054-8.
18. Venkatarama Reddy B. V., Jagadish K. S. Embodied energy of common and alternative building materials
and technologies // Energy and Buildings. – 2003. – Vol. 35, No. 2. – P. 129–137. – DOI: 10.1016/S0378-
7788(01)00141-4.
Загрузки
Опубликован
Как цитировать
Выпуск
Раздел
Лицензия
Copyright (c) 2026 ЗЕЛЁНАЯ ЭКОНОМИКА И РАЗВИТИЕ

Это произведение доступно по лицензии Creative Commons «Attribution» («Атрибуция») 4.0 Всемирная.