词条 | Pavement light | ||||||||||||||||||
释义 |
Pavement lights (UK), vault lights (US), floor lights, or sidewalk prisms are flat-topped walk-on skylights, usually set into pavement (sidewalks) or floors to let sunlight into the space below. They often use anidolic lighting prisms to throw the light sideways under the building. They declined in popularity with the advent of cheap electric lighting. Some cities are systematically removing historic sidewalk lights; others are restoring them. Pavement lights have been used in a few new architectural designs. {{See below|Gallery}} Uses{{multiple image| align = left | width = | footer = The Westlake Square Comfort Station in Seattle, Washington, 1917 | image1 = SeattleWestlake Square Comfort Station Seattle frontage 05.jpg | alt1 = Large bathroom with chairs and a free-standing radiator, lit by flat skylights | caption1 = A bathroom lit by vault lights | image2 = SeattleWestlake Square Comfort Station Seattle frontage 01.jpg | alt2 = A transport station with benches under a roof in the middle of a city square inset with inconspicuous rectangles of vault lights | caption2 = The outside, showing the same vault lights from above (dark rectangles) Sidewalk prisms are a method of daylighting basements, and are able to serve as a sole source of illumination during the day. At night, lighting in the basements beneath produces a glowing sidewalk.[1] Vault lights may be used to make subterranean space useful.[2] They are more common in city centers, dense, high-rent areas where space is valuable.[2] Historically, landlords took an interest in improving not only the floor area ratio, but the amount of space that was naturally lit, on the grounds that this was profitable.[4] Occupiers valued daylight not only as a way of saving on artificial lighting costs (which were higher historically), but also as a way to let premises remain cooler in summer, and a way to save on ventilation costs (if using gas lighting rather than arc lamps or early incandescent lights).[4] Pavement lights and related products were historically marketed as a way of saving on artificial lighting costs and making space more usable and pleasant.[4] Modern studies of similar daylighting technology provide evidence for those claims.[7] Vault lights also are used in floors under glass roofs, for example in Budapest's historic Párizsi udvar[8] and New York's mostly-demolished old Pennsylvania Station.[9] {{See below|Current state and trends}} Vault lights also could be set into the basement floor, underneath other vault lights, creating a double-deck arrangement, which would light the subbasement.[10] Manhole covers and coalhole covers with lighting elements were also made.[2] Some steps have vault lights set into the vertical stair risers.[12] Older cities and smaller centers around the world have or have had pavement lights.[13] Most such lights are approximately a century old,[2] although lights are being installed in some new construction. HistoryA basement that extends below a sidewalk or pavement is called an areaway,[2] a sidewalk vault,[17], or a hollow sidewalk.[18] In some cities, these areaways were created by the raising of the street level to combat floods, and in some cases they form an (often now abandoned) underground tunnel network.[19][18][21] To light these spaces, sidewalks incorporated gratings, which were a trip hazard and let water and street dirt as well as light into the basement. Replacing the open gratings with glass was an obvious improvement.[22] FramesSidewalk prisms developed from deck prisms, which were used to let light through the decks of ships. The earliest pavement light (Rockwell, 1834)[23] used a single large round glass lens set in an iron frame. The large lens was directly exposed to traffic, and if the lens broke, a large hole was left in the pavement, which was potentially unsafe for pedestrians.[22][26] Thaddeus Hyatt corrected these faults with his "Hyatt light" of 1854.[26] Many small lenses ("bull's-eyes") were set in a wrought-iron frame,[28][22] (later cast iron[30]), and the frame included raised nubs around each lens to improve traction in wet weather and to protect them from damage and wear. Even if all the lenses were broken out, the panel would still be safe to walk on.[22]In the 1930s, London authorities ruled that glass sections could not be larger than 100 mm by 100 mm.[32] Modern glass floors are made of laminated and toughened glass pavers, which can be substantially larger. They have an upper protective layer that can be replaced if it becomes chipped or cracked.[33] The top surface of the pavers may also be chosen and treated to improve traction.[1] Wrought iron,[28][22] cast iron,[30] and stainless steel [38] frames have all been used. Reinforced concrete slabs began to replace iron frames in the 1890s in New York. Benefits claimed included less condensation (due to the lower thermal conductivity)[39] and a less slippery surface when wet. Concrete panels may be pre-cast or cast in-situ.[41][42] {{See below|pre=for process details|External links}} Late concrete panels often were made with metal-framed "armored prisms", which were intended to prevent breakage and make replacing individual prisms easier. The glass is not cast into the concrete but caulked into the frame. Rather than chiselling out the old glass, the glass can be popped out of the frame.[43] Translucent concrete has also been proposed as a floor material.[44] This would essentially make it a vault light with very small (fiberoptic) lighting elements. It also innately redirects the light from the angle of incidence to an angle ~parallel to the optical fibers (usually, perpendicular to the surface of the concrete). Transparent elementsThe transparent elements may be referred to as prisms or lenses (depending on shape), or as jewels.[22] Glass colorThe glass in many old pavement lights is now either purple or straw-colored. This is a side-effect of the manufacturing process. Pure silica glass is transparent, but older glass manufacture often used silica from sand, which contains iron and other impurities.[46] Iron produces a greenish tint in the finished glass. To remove this effect, a "decolorizer" such as manganese dioxide ("glassmakers' soap") was added during the manufacture of the glass. When exposed to ultraviolet light, the manganese slowly "solarizes", turning purple,[46] which is why many existing sidewalk prisms are now purple.[1] WWI increased demand for manganese in the US and cut off the supply of high-grade ore from Germany,[49] so selenium dioxide was used as a decolorizer instead.[50] Selenium also solarizes, but to a straw color.[46] Replacement glass that has been tinted purple deliberately, in order to match the current colour, has been used in some historic restoration projects.[52] Glass shape{{main|Prism lighting}}{{multiple image| align = left | width = | footer = | image1 = Scatter.gif | alt1 = A wedge of glass, in cross-section a right-angled triangle hung from the shortest side, with light passing downwards through the shortest side, hitting the hypotenuse, and bouncing out near-horizontally from the third side. The top of the wedge has ridges for setting it into a frame, and some of the light misses the wedge and continues downwards. | caption1 = Total internal reflection in a pendant prism | image2 = Multi&3-way.jpg | alt2 = Two black-rimmed squares of glass. Above, one with rows of identical small prism ridges. Below, one with three pendants like those in the last image, but increasing successively in size. | caption2 = Lenses with multiple rows of pendant prisms. Above, identical prisms; below, three dissimilar prisms sizes, for light dispersion. These lenses are armoured with malleable plastic | image3 = 3wayray.gif | caption3 = Ray diagram of the three dissimilar prisms sizes, designed to avoid blocking each other's light. Each prism can also send the light in a slightly different direction for more diffuse lighting. | alt3 = Like image one, but the three different-sized prisms send the outgoing light off on parallel, not overlapping, courses. In 1871 London, Hayward Brothers patented their "semi-prism": changing the shape of the glass by adding pendant prisms to the underside reflects the light sideways, allowing it to light the area under the main building. The pendant shapes were right-angle ("half") prisms, which reflected all incoming light sideways.[22] The horizontal ridges protruding from the top of the prism let it be set into an opening in an iron or cement grating. Some cast glass pendant prisms have flat portions to shed light directly below, as well as throwing it sideways under the main body of the building (see image). Some prisms were made with multiple pendant prisms, either as a Fresnel-lens-like sheet of identical prisms ("multi") or a sheet of dissimilar prisms that could distribute the light ("three-way" etc.).[54] The precise angles at which the prisms refracted or reflected light was important. An installation would generally consist of multiple different prescriptions of prism, chosen either by an on-site expert contractor or by a layman using standard algorithms.[4] This also would diffuse the light somewhat, as would the rough glass surfaces (the lenses are translucent, not transparent). Larger castings are more expensive, not only because they use more glass, but because they take longer to cool.[56] Modern glass floors use laminate sheet glass some centimeters (more than an inch) thick; it often is transparent.[33] {{-}}Non-glass translucent materialsSynthetic resin composites (such as fiberglass), as well as plastics such as Lexan, have been proposed to replace missing prism lights.[58] Translucent decking panels made of fiberglass are often used for balconies which would otherwise shade the windows below them.[2] {{see below|gallery}} Peel-and-stick prism films recently have come on the market, with acrylic micro-prisms that internally reflect light somewhat like glass pendant prisms.[7][61][3]StructureIn some cases, a second vertical curtain of prisms was installed under the building sill.[28] These were analogous to the prism transoms used over above-ground windows and doors. The light could be bent in two stages and used to daylight the whole basement.[28] The areaway under a sidewalk light usually has a masonry wall separating it from the soil under the street, although it may extend partly under the street. Support for the vault light frames varies. Steel cross-beams supported by columns are common in older buildings; metal decks are common in newer ones.[17] Current state and trends{{multiple image| width = 250 | direction = vertical | image1 = NYP LOC5.jpg | alt1 = Large high-ceilinged space with round iron arches, covered in glass-dome skylights, floored with vault lights, clock central in foreground. | caption1 = The 1910 Pennsylvania Station Concourse in 1963, roofed with glass-dome skylights, floored with vault lights | image2 = Penn NY original floor.jpg | alt2 = View of the underside of the vault-light floor, supported by tapered concrete beams | caption2 = View up from track level, 2015; the vault lights are present, but concreted over Manufacture, maintenance, and repairSome modern pavement lights are quite different from historic ones,[33][22] so restoration and replacement may use different techniques and parts. A few companies now manufacture and sell vault lights, either as glass-only, prefab panels, or installation.[https://thepavementlightcompany.com/][2][69]Construction methods and prices vary widely.[69] Historically, glass lenses were standardized by each manufacturer; some modern manufacturers produce standardized prisms.[4][2][30] Some firms also supply replacement glass castings to order.[69] Cost varies greatly; shapes needing complicated articulated moulds are more expensive.[2] Modern caulking materials are used for caulking in replacement glass. Broken and damaged frames can be patched, re-welded,[10] or re-cast.[10][30] Generally speaking, restoration requires only simple tools and technology.[10] Promptly repairing sidewalk cracks, and avoiding de-icers that will corrode metal, helps keep the supporting structure dry and in good repair.[17] Keeping a sidewalk light watertight does not cost much in time or materials.[10] Vaults generally last many decades,[17] and many extant vaults are more than a century old.[2] Reuse and preservationDespite their reusability and repairability, old panels often are landfilled.[84][1][2] However, the city of Victoria, Canada is stockpiling removed pavement light panels for future restoration projects.[1][2] Often, individual broken sidewalk prisms are not replaced, but instead, the opening is filled with concrete or other opaque materials,[2] such as metal, wood, and asphalt.[10] When a building is renovated, vault lights may be removed or concreted over. For instance, the floor of New York's mostly-demolished old Pennsylvania Station was made of vault lights, to let light through the concourse floor onto the platforms.[9] The undersides of the lights can still be seen, but the tops have been concreted over (see images).[4] While some cities have preservation measures for vault lights, others actively remove them and fill areaways.[2] Sometimes the outside appearance of the lights is retained while filling the areaway and setting the lights in a concrete pad, removing their daylighting function.[10] Some areaways are "mothballed"; that is, filled with gravel that could later be removed.[2] Areaways are used in some cities as a convenient place to run utilities, which may make the cities reluctant to give areaways legal protection.[2] In some cases, utility construction leads to areaways being filled.[19] ProblemsThe load-bearing strength of vault lights varies widely with span, construction, and state of repair. Some damaged vaults may not be able to support a fire engine,[98] which a sidewalk vault in sound condition should be able to do.[17] Damp areaways may corrode the steel load-bearing elements supporting the pavement roof. Moisture may come from leakage from above or from groundwater from below.[2] Current installations
GallerySee also
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News |publisher=OPB |date= |accessdate=2017-12-03}} 36. ^1 2 {{cite web|url=http://www.oregonlive.com/pacific-northwest-news/index.ssf/2010/10/historians_explore_tunnels_beneath_salem.html |title=Historians explore tunnels beneath Salem |publisher=OregonLive.com |date=2010-10-20 |accessdate=2017-12-03}} 37. ^1 2 3 4 {{cite web|author=Published 9:22 p.m. PT Jan. 30, 2015 |url=http://www.statesmanjournal.com/story/opinion/columnists/capi-lynn/2015/01/31/john-ritter-salem-history/22627533/?from=global&sessionKey=&autologin= |title=From opium dens to bordellos, historian unearths Salem's past |publisher=Statesmanjournal.com |date=2015-01-30 |accessdate=2017-12-03}} 38. ^1 {{cite web|url=http://glassian.org/Prism/Gallery/SanDiego/index.html |title=Vault Lights in San Diego, California |author=Ian Macky |publisher=glassian |date= |accessdate=2017-12-03}} 39. ^1 {{cite web|url=http://glassian.org/Prism/Gallery/Tijuana/index.html |title=Vault Lights in Tijuana, Mexico |author=Ian Macky |publisher=glassian |date= |accessdate=2017-12-03}} 40. ^1 1906 Sweet's Indexed Catalog of Building Construction {{webarchive|url=https://web.archive.org/web/20160914200808/http://glassian.org/Prism/Luxfer/Sweet06/page267.html |date=2016-09-14 }}, page 267 41. ^1 1915 Sweet's Indexed Catalog of Building Construction {{webarchive|url=https://web.archive.org/web/20160914223839/http://glassian.org/Prism/Luxfer/Sweet15/page174.html |date=2016-09-14 }}, page 174 42. ^1 1927–1928 Sweet's Indexed Catalog of Building Construction {{webarchive|url=https://web.archive.org/web/20160401095800/http://glassian.org/Prism/3WayLux/Sweet27-28/A387.html |date=2016-04-01 }}, page A387 43. ^1 Vault Lighting and How It Is Secured {{webarchive|url=https://web.archive.org/web/20160914214630/http://glassian.org/Prism/3Way/14S/page2.html |date=2016-09-14 }}, Catalog 14-S, American 3-Way Prism Company 44. ^1 [https://thepavementlightcompany.com/ Paving lights] {{webarchive|url=https://web.archive.org/web/20171007120244/https://thepavementlightcompany.com/ |date=2017-10-07 }}, "The Pavement Light Company" 45. ^1 Pavement Lights {{webarchive|url=https://web.archive.org/web/20171007120157/http://www.luxcrete.co.uk/pavement-lights/ |date=2017-10-07 }}, Luxcrete Limited 46. ^1 [https://surespancovers.com/product/pavevent/ Glazed Walk-on Floorlight Access] {{webarchive|url=https://web.archive.org/web/20171009092419/https://surespancovers.com/product/pavevent/ |date=2017-10-09 }}, Surespan 47. ^1 {{Cite news| last = David Hutton| title = Group wants to save sidewalk prism lights| work = Saskatoon StarPhoenix| accessdate = 2017-10-21| date = 2011-11-30| url = https://thestarphoenix.com/news/local-news/group-wants-to-save-sidewalk-prism-lights| deadurl = no| archiveurl = https://web.archive.org/web/20171022033652/http://thestarphoenix.com/news/local-news/group-wants-to-save-sidewalk-prism-lights| archivedate = 2017-10-22| df = }} 48. ^1 {{cite web| title = Purple glass prisms inset in the sidewalk on 21st Street East in front of the Urban Oasis Tower are seen, Monday, April 13, 2015. Tunnels under the area are scheduled to be infilled.| author = Greg Pender, The StarPhoenix| date = April 13, 2015| accessdate = 2017-10-21| url = https://vancouversun.com/Purple+glass+prisms+inset+sidewalk+21st+Street+East+front+Urban+Oasis+Tower+seen+Monday+April+2015+Tunnels+under+area+scheduled+infilled/10969281/story.html| deadurl = no| archiveurl = https://web.archive.org/web/20171022084837/http://www.vancouversun.com/Purple+glass+prisms+inset+sidewalk+21st+Street+East+front+Urban+Oasis+Tower+seen+Monday+April+2015+Tunnels+under+area+scheduled+infilled/10969281/story.html| archivedate = October 22, 2017| df = }} 49. ^1 {{Cite news| author = Matthew Blackett| title = Vault lights are more than sidewalk decor| work = Spacing Magazine| accessdate = 2017-10-22| date = 2010-01-05| url = http://spacing.ca/magazine/section/infrastructure-fetish/vault-lights-are-more-than-sidewalk-decor/| deadurl = no| archiveurl = https://web.archive.org/web/20171023011631/http://spacing.ca/magazine/section/infrastructure-fetish/vault-lights-are-more-than-sidewalk-decor/| archivedate = 2017-10-23| df = }} 50. ^1 2 3 4 5 {{Citation |last = Ringuette |first = Janis |last2 = Ringuette |first2 = Norm |title = Walking Over History: Victoria's Historic Sidewalk Prisms |publisher = |year = 2007 |url = http://www.islandnet.com/~jar/streetscapes/topics/prisms.htm |access-date = |deadurl = no |archiveurl = https://web.archive.org/web/20080509074924/http://www.islandnet.com/~jar/streetscapes/topics/prisms.htm |archivedate = 2008-05-09 |df = }} 51. ^1 2 3 4 5 {{Citation | last = Varone | first = Stephen | last2 =Varsalona | first2 =Peter | title =Replacing a Sidewalk Vault | publisher = original publisher: Habitat Magazine at habitatmag.com; now rehosted by Rand Engineering and Architecture, DPC | work = Habitat Magazine | series = Ask The Engineer | date = October 2004 | url = https://randpc.com/ask/structural/replacing-sidewalk-vault/ | access-date =}} 52. ^1 {{Citation |last = Morrison |first = Andrew |title = The Purple Lights Of Our Ancient Basements |newspaper = Scout Vancouver |date = 19 October 2015 |url = http://scoutmagazine.ca/2015/10/19/1000-cool-things-about-vancouver-the-purple-illumination-of-ancient-basements/ |access-date = |deadurl = no |archiveurl = https://web.archive.org/web/20171004135444/http://scoutmagazine.ca/2015/10/19/1000-cool-things-about-vancouver-the-purple-illumination-of-ancient-basements/ |archivedate = 4 October 2017 |df = }} 53. ^1 2 3 {{Citation |title = Solarized glass |publisher = Corning Museum of Glass |date = 8 December 2011 |url = https://www.cmog.org/article/solarized-glass |access-date = |deadurl = no |archiveurl = https://web.archive.org/web/20171008130124/https://www.cmog.org/article/solarized-glass |archivedate = 8 October 2017 |df = }} 54. ^1 {{Citation |last = Knopp |first = Samantha |title = Purple City – A Little History of Vancouver's Vault Lights |publisher = Artists Walking Home Project |date = |year = |url = http://artistswalkinghome.ca/purple-city-a-little-history-of-vancouvers-vault-lights/ |access-date = |deadurl = no |archiveurl = https://web.archive.org/web/20171004085311/http://artistswalkinghome.ca/purple-city-a-little-history-of-vancouvers-vault-lights/ |archivedate = 2017-10-04 |df = }} 55. ^1 2 3 4 5 6 7 {{Citation |title = PRESERVATION Tech Notes: Repair and Rehabilitation of Historic Sidewalk Vault Lights, PTN 47 |publisher = National Park Service (U.S.A.) |date = November 2003 |issn = 0741-9023 |url = https://www.nps.gov/tps/how-to-preserve/tech-notes/Tech-Notes-Glass02.pdf |access-date = |deadurl = no |archiveurl = https://web.archive.org/web/20170506065254/https://www.nps.gov/tps/how-to-preserve/tech-notes/Tech-Notes-Glass02.pdf |archivedate = 2017-05-06 |df = }}NOTE: colour versions of images available on Repair and Rehabilitation of Historic Sidewalk Vault Lights at 552-554 Broadway, New York City (2002)(URL formerly {{cite web |url=http://www.cr.nps.gov/hps/tps/technotes/ptn47/intro.htm |title=Technical Preservation Services, National Park Service |accessdate=2017-10-08 |deadurl=no |archiveurl=https://web.archive.org/web/20110425010929/http://www.cr.nps.gov/hps/tps/technotes/ptn47/intro.htm |archivedate=2011-04-25 |df= }}) 56. ^1 {{Citation| title =Manganese statistics| series =Kelly, T.D., and Matos, G.R., comps., Historical statistics for mineral and material commodities in the United States: U.S. Geological Survey Data Series 140| publisher =U.S. Geological Survey| date =1 April 2014| url =https://minerals.usgs.gov/minerals/pubs/historical-statistics/ds140-manga.pdf| access-date =9 October 2017| deadurl =no| archiveurl =https://web.archive.org/web/20170224171827/https://minerals.usgs.gov/minerals/pubs/historical-statistics/ds140-manga.pdf| archivedate =24 February 2017| df =}} 57. ^1 2 {{Citation |last = Murdy |first = Justine |title = The Dirt on Areaways |newspaper = Heritage Vancouver Newsletter |volume = 8 |number = 2 |pages = |date = February 1999 |url = http://www.heritagevancouver.org/pdf_newsletter/hvs-news-1999-full-screen.pdf |archive-url = https://web.archive.org/web/20160410193704/http://heritagevancouver.org/pdf_newsletter/hvs-news-1999-full-screen.pdf |archive-date = 2016-04-10 |access-date = |deadurl = no |df = }} 58. ^1 2 {{Citation |last = Hagemoen |first = Christine |title = Sidewalk prisms of Vancouver |publisher = Vanalogue |date = 13 April 2016 |url = https://vanalogue.wordpress.com/2016/04/14/sidewalk-prisms-of-vancouver/ |access-date = |deadurl = no |archiveurl = https://web.archive.org/web/20171004090119/https://vanalogue.wordpress.com/2016/04/14/sidewalk-prisms-of-vancouver/ |archivedate = 4 October 2017 |df = }} 59. ^1 2 {{Citation |inventor-last = Rockwell |inventor-first = E. |inventorlink = |date = |issue-date = 8 March 1834 |title = Rockwell, Vault cover |country-code = us |description = |patent-number = X8,058 |url = http://patft.uspto.gov/netacgi/nph-Parser?patentnumber=X8,058 |deadurl = no |archiveurl = https://web.archive.org/web/20171008080250/http://patft.uspto.gov/netacgi/nph-Parser?patentnumber=X8,058 |archivedate = 8 October 2017 |df = }} 60. ^1 2 {{Citation |inventor-last = Hyatt |inventor-first = Thaddeus |inventorlink = |date = |issue-date = 19 September 1854 |title = Hyatt, Vault cover |country-code = us |description = |patent-number = 11,695 |url = http://patft.uspto.gov/netacgi/nph-Parser?patentnumber=11,695 |deadurl = no |archiveurl = https://web.archive.org/web/20171008130236/http://patft.uspto.gov/netacgi/nph-Parser?patentnumber=11,695 |archivedate = 8 October 2017 |df = }} 61. ^1 2 3 {{cite web|last1=Campbell-Dollaghan|first1=Kelsey|title=The Willis Tower's 103rd Floor Glass Skydeck Cracked Last Night|url=https://gizmodo.com/the-willis-towers-103rd-floor-glass-skydeck-cracked-las-1583211680|website=Gizmodo|publisher=Gizmodo.com|accessdate=2014-06-04|date=May 29, 2014|deadurl=no|archiveurl=https://web.archive.org/web/20140603073807/http://gizmodo.com/the-willis-towers-103rd-floor-glass-skydeck-cracked-las-1583211680|archivedate=June 3, 2014|df=}} }} External links
4 : Solar architecture|Energy-saving lighting|Glass architecture|Prisms |
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