Biocliamtica Sheet Of Elms And Lambayeque And Design Criteria DWG Full Project for AutoCAD
Sheets in which we show the temperature, relative humidity, wind speed, guidance, latitude, longitude, height, etc.. solar projection, graph ombrothermal
Drawing labels, details, and other text information extracted from the CAD file (Translated from Spanish):
day, night, celestial, side view, top view, zenith, nadir, fau-uap, ini, ortho, sunset, comfort zone, general recommendations, wind rose, ombrothermic chart, sheet, bioclimatic tab – elm trees, meteorological elements, unit of measure, annual average, Jan., Feb., Mar., Apr., May., Jun., Jul., Aug., Set., Oct., Nov., Dec., Maximum, mm., eighths, precipitation, temperature, relative humidity, cloudiness, average, minimum, monthly, winds, orientation, speed, hottest month, normal, coldest month, period, code, legend, climatological classification according to senamhi, climatologicas, locality elms, climate zone, date, solar graph, general recommendations of design, orientation, climatological conclusions, – it is recommended the use of solar protection systems both on the east façade and the west façade due to the direct incidence of sun, radiation, sun protection , Jan, Feb, Mar, Apr, May, Jun, Jul, Aug, Set, Oct , nov, dec, humid months, general recommendations of orientation, January, February, March, April, May, July, June, August, September, October, November, December, year, tmax, tmed, tº media, tmin, minimum tº , maximum tº, comfort chart, solar chart solar chart :, e: arid, lambayeque, parameters, average relative humidity, vel. media, ssw, september, february, bioclimatic record – lambayeque, southwest, sww, nww, nnw, nee, een, see, ees, greater volume and number of openings for being a warm climate., through the use of teatinas for being a warm semi-dry climate. to orient sensors of not to se to capture winds that predominate in that direction., use of ceilings with spaces of air to reduce the temperature that reaches the interior of the house., it should be painted with light colors so that it can reflect sunlight. , utilization of pergolas and latticework as an eaves that protects the spaces giving shade, use of the vegetation as an insulator of spaces, as well as sunscreen, rainfall, dry, January, March, April, May, June, July, August , September, October, November, December, dawn, dusk, trees would be placed in the direction of the sun to shade and refurbish the covered spaces. º Use of gutters and eaves for protection, rain, º outdoor sockets protected from moisture ., º non-slip floors., º use of drains., Heat retention, the buildings must be compact for a better thermal response to the cold and dry climate of the area, the coating materials in Floors should be considered in preference of high thermal mass., clay, stone, thick walls and compact for greater thermal gain in the outlines., deciduous trees, allows to pass radiation in winter. leafy trees for wind protection, take advantage of the materials of the area such as stone, adobe and wood., adobe or stone wall, red clay tiles, wooden beams that serve as roof structure., it is recommended an average compartment to reduce the intensity of the winds and thermally insulate the building, protection of solar radiation moderately during the day, public spaces, direction of doors and windows with opposite direction to the direction of the winds.
Raw text data extracted from CAD file:
Language | Spanish |
Drawing Type | Full Project |
Category | Parks & Landscaping |
Additional Screenshots | |
File Type | dwg |
Materials | Wood, Other |
Measurement Units | Metric |
Footprint Area | |
Building Features | |
Tags | autocad, bioclimatic, bioclimatica, bioclimatique, bioklimatischen, criteria, Design, durable, DWG, full, la durabilité, lambayeque, latitude, nachhaltig, nachhaltigkeit, Project, sheet, sheets, show, speed, sustainability, sustainable, sustentabilidade, sustentável, Temperature, wind |