Window Well Light Reflector

Window Well Light Reflector – To return twisted streams to surface streams, see Daylight (stream). For similar work with transport tunnels, see Daylighting (tunnel).

Daylighting is the practice of placing windows, skylights, other openings, and light floors so that sunlight (direct or indirect) provides effective interior lighting. Special attention is paid to daylight when designing a building, aiming to increase visual comfort or reduce energy consumption. Energy savings can be achieved from reduced use of artificial (electric) lighting or solar heating. Artificial electricity use can be reduced by simply installing fewer lights where there is daylight or automatically dimming/turning off lights in response to daylight – a process known as daylight harvesting.

Window Well Light Reflector

Window Well Light Reflector

The amount of daylight received in an interior can be analyzed by measuring the brightness of the grid or by calculating the daylight factor. Computer programs like Radiance allow an architect or engineer to quickly calculate the benefits of a particular design. The human eye’s response to light is inconsistent, so more distribution of the same amount of light makes a room brighter.

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The source of light throughout the day is the sun. The direct measurement of diffused light affects the quantity and quality of daylight.

“Direct sunlight” reaches a point without scattering from the Earth’s atmosphere. Sunlight in the atmosphere is “diffuse daylight”. Sunlight is reflected on the walls and the ground also contributes to daylight. Each climate has a different composition of daylight and different cloud cover, so sunlight patterns vary by location and climate. From the autumnal equinox to the vernal equinox at latitudes north of the Tropic of Cancer, the pole-facing walls of the building (north-facing walls in the Northern Hemisphere and south-facing walls in the Southern Hemisphere) do not receive direct sunlight. South of the Tropic of Capricorn.

Traditionally, rooms are designed with smaller windows on the poleward side, but larger windows on the equatorial side (south-facing walls in the northern hemisphere and north-facing walls in the southern hemisphere).

Equatorial windows receive the least amount of direct sunlight on any sunny day of the year (except in the tropics during summer), so they are useful for daylighting areas of the house near windows. At high altitudes during winter, the incident light is directed upwards and creates long shadows. This can be partially enhanced by light diffusion, light pipes or tubes, and internal reflective surfaces. At low altitudes during the summer, windows facing east and west, and sometimes those facing a nearby pole, receive more sunlight than windows facing the equator.

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Passive daylighting is the process of collecting sunlight using fixed, non-moving and non-tracking systems (such as windows, sliding glass doors, skylights, light tubes) and reflecting daylight collected in depth with objects such as light shelves. Passive daylighting systems are different from active daylighting systems that track and/or follow the sun and are mechanically dependent.

Windows are the most common way to let daylight into a space. Their upright position means they prefer to admit sunlight and diffuse daylight at different times of the day and year. Therefore, depending on the climate and the width, windows of several orientations are usually combined to create the right mix of light for the building. There are three ways to improve the amount of light available in a window:

(a) by placing a window next to a light-colored wall, (b) turning the window sideways so that the interior area is larger than the exterior door, or (c) using a large light-colored window to create light Daylighting in the building of the room In addition, windows serve another function in daylighting, they provide with ideas.

Window Well Light Reflector

To increase the quality of the view in the window, three main things must be ensured: view cont (what can be in the view), view access (how the view of the window can be), and view clarity (clearly view be).

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Visual clarity is often affected by the amount of shade provided by blinds or devices used to protect occupants from harsh daylight (eg glare) or for visual reasons.

Different types and grades of glass and different window treatments can affect the amount of light transmitted through the window. An important factor is the type of glazing, which is characterized by the coefficient of VT (visual transmittance),

It is also called visual light transmittance (VLT). As the name suggests, this measurement measures how much visible light is coming through the window. A low VT (less than 0.4) can cut the light coming into a room by half or more. But also beware of high VT glass: high VT numbers (say, more than 0.60) can cause burning. On the other hand, you should also think about the unwanted effects of large windows.

Another important aspect of daylighting is the use of clerestory windows. These are long, vertically oriented windows. They can be used to increase the direct solar gain at the equator. Facing the sun, clerestory and other windows can admit unacceptable light. In the case of a sun house, the clerestory can provide a direct light source to rooms on the pole side (north of the North Equator; south of the South Equator) that would otherwise not be lit. Alternatively, a clerestory can be used to admit diffused daylight (from the north in the Northern Hemisphere) that clearly illuminates a space such as a classroom or office.

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Generally, clerestory windows also illuminate interior wall areas painted white or other light colors. These walls are placed in such a way that indirect light is reflected in the interior areas where it is needed. This method has the advantage of reducing the light index so that it is softer and more diffused, reducing the shadows.

Another option for a glass roof is a sawn roof (found in old factories). A Sawtooth roof has a vertical glazed roof that captures diffused light that faces away from the equator of the building (not strictly directly in the equatorial direction of solar gain).

The angular part of the glass-support structure is opaque and insulated with a cool roof and light barrier. The sawtooth roof light concept slightly reduces the summer “solar furnace” sky problem, but still allows warm indoor air to rise and touch the outer roof glass during the cold winter, with unwanted heat.

Window Well Light Reflector

Skylights are light fixtures

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) to form all or part of the roof of a building. Skylights are widely used in daylighting in residential and commercial buildings, mainly because they are the most efficient source of daylight for a unit area.

Another way to light the sky is a ceiling light. A roof lantern is a daylight cupola that sits on top of the roof, as opposed to a skylight installed in the roof structure. Roof lights serve as a building material and a way to introduce natural light into the space, and usually consist of multiple glazed glass panels and a wooden or metal frame.

As an architectural element, a skylight is a glazed panel usually set flush with the ceiling for the purpose of admitting natural or artificial light.

A skylight differs from a glazed (or closed) skylight in that a skylight acts as a roof window or open space, while a skylight is flush with the ceiling of an interior space.

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Combined with a roof light or a skylight on a sloping roof, the skylight acts as an interior lighting device.

Before the advent of electricity, skylights allowed light to circulate between floors in large buildings and were not always compatible with skylights.

An atrium is a large open space within a building. It is often used to light a central circulation or public space and daylight enters through a glass roof or wall. Atria provides daylight for nearby workspaces, but the amount is often minimal and doesn’t get too far.

Window Well Light Reflector

The main function of the atrium is to provide a visual experience for people at work and a degree of communication with the outside. The daylighting of the successive floors of the rooms near the atrium is unique and requires a method of balance

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Light from the sky can easily enter the upper floors but not the lower, which depends mainly on the light from inside the atrium, such as the light reflected from the floor.

Upper stories require less window space than lower stories, and if the atrium walls are light colored, the higher walls will reflect light to the lower stories.

Walls made of glass bricks are Transplant to Transplant. Traditionally they are hollow and grouted with fine sand concrete, but some modern brick walls are solid glass.

To increase the number of concrete, bottles installed in the walls that go directly to the wall, to transmit light. The concrete walls are also constructed of glass prisms. With cheap optical fiber and concrete wall advertising, daylight (and shadow images) can pass.

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