NL2012003C2 - Building structure. - Google Patents

Building structure. Download PDF

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Publication number
NL2012003C2
NL2012003C2 NL2012003A NL2012003A NL2012003C2 NL 2012003 C2 NL2012003 C2 NL 2012003C2 NL 2012003 A NL2012003 A NL 2012003A NL 2012003 A NL2012003 A NL 2012003A NL 2012003 C2 NL2012003 C2 NL 2012003C2
Authority
NL
Netherlands
Prior art keywords
tent
tent structure
air dome
fabric
building
Prior art date
Application number
NL2012003A
Other languages
Dutch (nl)
Inventor
Thijs Josephina Johannes Huijsmans
Robertus Johannes Torsing
Reinald Top
Reinbern Arthur Jansma
Jacobus Theodorus Johannes Bakker
Janko Arts
Inge Bosveld
Original Assignee
Haskoningdhv Nederland B V
Zwarts & Jansma Architecten B V
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Haskoningdhv Nederland B V, Zwarts & Jansma Architecten B V filed Critical Haskoningdhv Nederland B V
Priority to NL2012003A priority Critical patent/NL2012003C2/en
Priority to PCT/NL2014/050891 priority patent/WO2015093964A1/en
Application granted granted Critical
Publication of NL2012003C2 publication Critical patent/NL2012003C2/en

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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H15/00Tents or canopies, in general
    • E04H15/18Tents having plural sectional covers, e.g. pavilions, vaulted tents, marquees, circus tents; Plural tents, e.g. modular
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H15/00Tents or canopies, in general
    • E04H15/02Tents combined or specially associated with other devices
    • E04H15/10Heating, lighting or ventilating
    • E04H15/14Ventilating
    • E04H15/16Ventilating of tent roofs
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H15/00Tents or canopies, in general
    • E04H15/20Tents or canopies, in general inflatable, e.g. shaped, strengthened or supported by fluid pressure
    • E04H15/22Tents or canopies, in general inflatable, e.g. shaped, strengthened or supported by fluid pressure supported by air pressure inside the tent
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H15/00Tents or canopies, in general
    • E04H15/26Centre-pole supported tents
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H15/00Tents or canopies, in general
    • E04H15/20Tents or canopies, in general inflatable, e.g. shaped, strengthened or supported by fluid pressure
    • E04H2015/207Tents specially designed for insulation
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H15/00Tents or canopies, in general
    • E04H15/20Tents or canopies, in general inflatable, e.g. shaped, strengthened or supported by fluid pressure
    • E04H2015/209Structures with a netting or similar for anchorage

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • Tents Or Canopies (AREA)

Abstract

A building structure (1), comprising an isolating airdome (2) attached to the ground (3) and a covering structure (4) for covering a part of the airdome, the covering structure comprising tent structure (5) arranged over substantially the whole of the airdome, when seen in top view, wherein the tent structure has a top (6) and a circumference (7), the top being provided with an opening (8) located at greater height than the circumference, the circumference being placed at a vertical distance (H) from the ground, the tent structure comprising a fabric (10) and having a convex shape with respect to the airdome, wherein a convex side of the tent structure is turned towards the airdome and is spaced-apart at a distance from an outer surface of the airdome. The invention also concerns a tent structure for use with such a building structure, and an airdome for use therewith.

Description

BUILDING STRUCTURE
Field of the invention [0001] The present invention relates to a building structure, such as a stadium, in particular for playing sports, comprising an isolating airdome fixedly attached to the ground, and a covering structure for covering at least a part of the airdome.
Background of the invention [0002] Such a building structure is known from for example the international patent publication WO 2012/073061 Al. This patent publication describes a stadium having a fixed dome and a rotatable dome that can be turned around a vertical axis of rotation around the fixed dome to provide the fixed dome with on-demand protection against precipitation, excessive sunshine, et cetera.
[0003] A disadvantage of the known building structure, is that the building structure is not capable of providing sufficient protection against extreme heat, sand storms, et cetera, and in particular a combination thereof.
[0004] Furthermore, it takes a relatively long time to build the building structure. Additionally, the building structure is relatively inflexible, when, for example, a user wants to use the building structure for other purposes.
[0005] It is therefore an object of the present invention to provide a building structure that provides sufficient protection against extreme heat, sand storms, et cetera, and in particular a combination thereof.
[0006] It is a further object of the invention to provide a building structure that can be built relatively quickly and that offers a flexible construction.
Summary of the invention [0007] Hereto the building structure according to the invention is characterized in that the covering structure comprises a tent structure arranged over substantially the whole of the airdome, when seen in top view, wherein the tent structure has a top and a circumference, the top being provided with an opening and being located at a greater height than the circumference of the tent structure, the circumference being placed at a vertical distance from the ground, the tent structure comprising a fabric and having a generally convex shape with respect to the airdome, wherein a convex side of the tent structure is turned towards the airdome, wherein the convex side of the tent structure and an outer surface of the airdome are spaced-apart at a distance.
[0008] By providing such a tent structure, the airdome can be shielded from excessive sunshine, wind and precipitation. Furthermore, the inventors have found that the tent structure and the outside of the airdome have to be spaced-apart to generate enough heat flow towards the opening in the top to cool the outside of the airdome, while at the same time the airdome is prevented from being covered by sand, especially during a sand storm, wherein the sand can be blown in from the side from under the circumference of the tent structure.
[0009] The tent structure may cover an area of for example as large as 20000-40000 m2, for instance approximately 30000 m2, i.e. enough to accommodate two adjacent, rectangular soccer playing fields.
[0010] The top of the tent structure can be embodied as a wind tower. Alternatively, a nebulisation device can be arranged near the top, depending on local air temperature and humidity.
[0011] An embodiment relates to a building structure, wherein, at an intermediate position between the top and the circumference of the convex side of the tent structure and an outer surface of the airdome, the convex side of the tent structure and an outer surface of the airdome are spaced-apart by a distance of at least 0,1 m, more preferably at least 0,2 m, even more preferably at least 1,5 m, most preferably at least 2 m. The inventors have found this minimum distance is preferred to create the required amount of updraft. Depending on circumstances, in particular depending on the desired updraft, a smaller distance of for instance approximately 0,01 m, 0,02 m, 0,05 m, or distances in the range of 0,05 - 0,1 m are also conceivable.
[0012] An embodiment relates to a building structure, wherein the vertical distance between the circumference and the ground is at most 10 m, preferably at most 5 m, more preferably at most 2 m. This further prevents sand from being blown in, while at the same time providing enough draft towards the opening in the top to dissipate heat.
[0013] An embodiment relates to a building structure, wherein the ground below the airdome is provided with an underground piping system, through which coolant is circulated, during use, for absorbing heat from the airdome. This provides an even higher degree of cooling of the airdome, especially in very hot climates, such as desert climates.
[0014] A further embodiment relates to a building structure, wherein the tent structure is supported near the top by a supporting pole, wherein the supporting pole extends downwards, from the top, through an opening in the airdome to a ground position within the airdome. Therein, the airdome may resemble a torus-like shape, or a section/part thereof. The supporting pole provides for a relatively simple supporting mechanism for the tent structure. The supporting pole, when seen in top view, as well as the opening, may be placed at a distance from the geometrical centre of the tent structure/airdome.
[0015] In another embodiment, the tent structure comprises a plurality of tops with a corresponding plurality of openings, wherein a similarly corresponding plurality of supporting poles extend from the plurality of tops to a ground position within the airdome. This allows for a more stable supporting mechanism for the tent structure, especially in climates or areas with a lot of wind or high wind speeds.
[0016] Yet another embodiment relates to a building structure, wherein the plurality of supporting poles converge at a single ground position within the airdome. This allows relatively optimal use of ground space within the airdome, allowing the airdome to be optimally useable for its primary function, such as serving as a sports facility.
[0017] Preferably, the plurality of supporting poles comprises two or three, preferably at least three, supporting poles. The inventor has found that this number of poles provides good structural stability to the tent structure. The one or more supporting poles can be as high as 40-80 m, such as approximately 60 m. Furthermore, the one or more supporting poles preferably comprise a truss structure. The thickness of the poles can be around 4 m, depending of course on the tent structure weight to be carried.
[0018] In an embodiment, the fabric of the tent structure comprises a layer capable of converting solar energy into electricity. Since the building structure is especially useable in climates or regions with a lot of sunshine, it is beneficial to provide fabric of the tent structure with means for generating electricity from sunshine, for instance for powering devices inside the building structure, such as further cooling systems, for instance air conditions systems.
[0019] Furthermore, the above provides a building structure that produces its own energy. Optimally, it does not consume more energy than it produces as to obtain an ‘energy neutral’ or ‘climate neutral’ building structure.
[0020] Preferably, the fabric of the tent structure comprises a heat reflective membrane layer to shield the airdome from excessive irradiation of sunshine.
[0021] Additionally, the fabric of the tent structure may comprise a layer incorporating a solar warm water collecting system. Such a system may also be attached to the tent structure.
[0022] Furthermore, the fabric of the tent structure may comprise a layer transparent to daylight or a layer of translucent materials for daylight penetration. By allowing light frequencies corresponding to daylight to pass through the tent structure, the perception of light within the airdome is found to be more natural, contributing to a feeling of well-being of persons present therein. Of course, it is required that the airdome itself also is at least transparent to daylight.
[0023] Optimally, the fabric of the airdome as well as the fabric of the tent structure are configured for allowing a light intensity of 60-600 lux to be achieved within the airdome. For sports, a light intensity relatively close to 600 lux is desirable, whereas, when the airdome is used for instance as a museum, a light intensity relatively close to 60 lux is sufficient.
[0024] Preferably, the fabric of the tent structure is supported by a cable structure to provide especially relatively large tent structures with enough structural strength.
[0025] A further embodiment relates to a building structure, wherein, when seen in top view, the cable structure comprises a plurality of radial cables running in a radial direction from the top towards the circumference of the tent structure, wherein, near the circumference, the cable ends are each attached to a connecting member installed in the ground. In this way, a cable support structure capable of supporting a relatively large weight (i.e. per m2 of fabric surface area) can be realized. Therein, the sagging of the fabric can be adjusted by adapting the tension of the radial cables. The connecting members can be as high as 5-6 m.
[0026] An embodiment relates to a building structure, wherein, when seen in top view, adjacent radial cables are spaced-apart at an angle of 10-15°, preferably approximately 12°. In this way, a relatively optimal spacing between adjacent radial cables is achieves, i.e. capable of supporting a considerable fabric load, while keeping the combined structural weight of the radial cables relatively low. The amount of radial cables can thus e.g. range from approximately 20-40, for instance 30, cables. An appropriate radial cable diameter could be e.g. in the range of 50-80 mm, such as about 70 mm. Preferably, the cables are to be made of high grade steel having an ultimate strength of approximately 1700 MPa. If necessary, e.g. in regions with relatively strong winds, a double set of cables can be used.
[0027] An embodiment relates to a building structure, wherein, when seen in top view, the radial cables are intersected at radially spaced-apart positions by a plurality of membrane cables running in a direction substantially parallel to the circumference of the tent structure. The membrane cables, e.g. totaling 2-6, for instance 4, for example spaced at a mutual distance of 5 m, allow the convexity of the tent structure to be selectively adjusted. E.g. by arranging the membrane cables around the radial cables, the individual bending angle of the radial cables can be adapted, such as over an angle of 5-10°, for instance approximately 8°. This can be done e.g. by increasing/decreasing the tension of each of the membrane cables. Thus, a significant flexibility can be achieved with respect to the final (spatial) design of the tent structure.
[0028] Analogously, an embodiment relates to a building structure, wherein the airdome comprises an airdome fabric.
[0029] An embodiment relates to a building structure, wherein the airdome fabric comprises a layer with a heat-reflective foil. Again, excessive irradiation of sunshine or heat can be prevented to enter this way.
[0030] An embodiment relates to a building structure, wherein the airdome fabric comprises an isolation layer with an aerogel. Such an aerogel is relatively light-weight and provides outstanding heat resistance properties.
[0031] An embodiment relates to a building structure, wherein the airdome fabric comprises a layer with a phase change material for storing/releasing relatively large amounts of thermal energy, e.g. to create a chilled or heated airdome ceiling. In climates with heating demands the phase change material can be advantageously used to reduce necessary heating capacity.
[0032] An embodiment relates to a building structure, embodied as a stadium for playing sports.
[0033] Another aspect of the invention concerns an airdome for use in the aforementioned building structure, having a substantially concave shape with respect to an interior of the airdome during use, wherein the airdome comprises an airdome fabric.
[0034] An embodiment relates to an airdome, wherein the airdome fabric comprises a layer with a heat-reflective foil, having similar advantages as discussed with respect to the combined building structure as discussed in the foregoing.
[0035] Similarly, an embodiment relates to an airdome, wherein the airdome fabric comprises an isolation layer with an aerogel.
[0036] Analogously, an embodiment relates to an airdome, wherein the airdome fabric comprises a layer with a phase change material.
[0037] Another aspect of the invention relates to a tent structure for use in the aforementioned building structure, wherein an airdome can be arranged underneath the tent structure, wherein the tent structure can be arranged over substantially the whole of the airdome, when seen in top view, wherein the tent structure has a top and a circumference, the top being provided with an opening and being located at a greater height than the circumference of the tent structure, the circumference being placed at a vertical distance from the ground, the tent structure comprising a fabric and having a generally convex shape with respect to the airdome, wherein a convex side of the tent structure can be turned towards the airdome, wherein the convex side of the tent structure and an outer surface of the airdome are spaced-apart.
[0038] The above tent structure can both be used when an airdome is present underneath, but can also be used when the airdome is removed. E.g. when the airdome is used for playing sports, it can be removed afterwards, while the tent structure is left to stand at its current location. This allows the space underneath the tent structure to be used for other purposes afterwards, such as for comprising a market place or a park.
[0039] By physically disconnecting the tent structure from the airdome, the airdome can be removed without removing/modifying the tent structure itself. This significantly increases the useful life of the tent structure and especially of its materials.
[0040] Preferably, the tent structure is constructed from exchangeable or adaptable elements. E.g. openings can be realized this way or PV-cells can be added later on. By doing so, the tent structure can be conveniently adapted to the desired functionality of the area covered by the tent structure, in particular of the airdome underneath it.
[0041] Analogous to the combined building structure as discussed in the foregoing, an embodiment relates to a tent structure, wherein the vertical distance between the circumference and the ground is at most 10 m, preferably at most 5 m, more preferably at most 2 m.
[0042] Similarly, an embodiment relates to a tent structure, wherein the tent structure is supported near the top by a supporting pole extending downwards to a ground position.
[0043] Again, an embodiment relates to a tent structure, wherein the tent structure comprises a plurality of tops with a corresponding plurality of openings, wherein a similarly corresponding plurality of supporting poles extend from the plurality of tops to a ground position.
[0044] Additionally, an embodiment relates to a tent structure, wherein the plurality of supporting poles converge at a single ground position.
[0045] Furthermore, an embodiment relates to a tent structure, wherein the plurality of supporting poles comprises at least three supporting poles.
[0046] An embodiment also relates to a tent structure, wherein the fabric of the tent structure comprises a layer capable of converting solar energy into electricity.
[0047] A further embodiment relates to a tent structure, wherein the fabric of the tent structure comprises a heat reflective membrane layer.
[0048] Another embodiment relates to a tent structure, wherein the fabric of the tent structure comprises a layer incorporating a solar warm water collecting system.
[0049] An embodiment relates to a tent structure, wherein the fabric of the tent structure comprises a layer transparent to daylight.
[0050] Also, an embodiment relates to a tent structure, wherein the fabric of the tent structure is supported by a cable structure.
[0051] Correspondingly, an embodiment relates to a tent structure, wherein, when seen in top view, the cable structure comprises a plurality of radial cables running in a radial direction from the top towards the circumference of the tent structure, wherein, near the circumference, the cable ends are each attached to a connecting member installed in the ground. Preferably, the amount of cables equals the amount of connecting members.
[0052] Therein, adjacent radial cables can be spaced-apart at an angle of 10-15°, preferably approximately 12°.
[0053] Yet another embodiment relates to a tent structure, wherein, when seen in top view, the radial cables are intersected at radially spaced-apart positions by a plurality of membrane cables running in a direction substantially parallel to the circumference of the tent structure.
[0054] Preferably, the aforementioned airdome is cooled by activating the dome structure using chilled air (or nebulisation) and the ‘Coanda effect’ to create a climate ceiling effect without water in the dome structure.
[0055] Another advantage of the airdome, tent structure and the combined building structure comprising both, is that no use is made of rigid parts, allowing rapid disassembly and easy transport.
Brief description of the drawings [0056] Embodiments of a building structure according to the invention will by way of non-limiting example be described in detail with reference to the accompanying drawings. In the drawings: [0057] Figure 1 shows a top view of a building structure according to the invention; [0058] Figure 2 shows an exploded view of an exemplary embodiment of the airdome fabric; [0059] Figure 3 shows an exploded view of an exemplary embodiment of the tent structure fabric; [0060] Figure 4 shows a schematic, perspective view of an exemplary embodiment of the building structure, wherein the tent structure is supported near a plurality of tops by a plurality of supporting poles; and [0061] Figure 5 shows a schematic side view of an exemplary embodiment of the building structure.
Detailed description of the invention [0062] Figure 1 shows a building structure 1 according to the invention. The building structure 1 comprises an isolating airdome 2 fixedly attached to the ground 3. The building structure 1 comprises a covering structure 4 with a tent structure 5 arranged over substantially the whole of the airdome 2, when seen in top view. The tent structure 5 has a top 6 and a circumference 7, the top 6 being provided with an opening 8 and being located at a greater height than the circumference 7 of the tent structure 5. The circumference 7 is placed at a vertical distance H from the ground 3. The tent structure 5 comprising a fabric, which will be discussed later on. The tent structure 5 has a generally convex shape with respect to the airdome 2. A convex side of the tent structure 5 is turned towards the airdome 2. The convex side of the tent structure 5 and an outer surface of the airdome 2 are spaced-apart at a distance D. The distance D preferably is at least 0,1 m. The vertical distance H between the circumference and the ground is at most 10 m, preferably at most 5 m, more preferably at most 2 m.
[0063] The ground 3 below the airdome 2 is provided with an underground piping system 14, through which coolant is circulated, during use, for absorbing heat from the airdome 2.
[0064] A preferred embodiment relates to a building structure 1 embodied as a stadium for playing sports, in particular soccer.
[0065] Figure 2 shows an exploded view of an exemplary embodiment of the airdome fabric 26. The airdome fabric 26 comprises a layer with a heat-reflective foil 27, attached to a cable structure 22. The airdome fabric 26 as shown also comprises an isolation layer with an aerogel 28. Furthermore, a layer with a phase change material 29 is shown.
[0066] Figure 3 shows an exploded view of an exemplary embodiment of the tent structure fabric 10. The fabric 10 of the tent structure comprises a layer capable of converting solar energy into electricity 18. The fabric 10 of the tent structure comprises a heat reflective membrane layer 19. The fabric 10 of the tent structure as shown also comprises a layer incorporating a solar warm water collecting system 20. The fabric of the tent structure furthermore comprises a layer transparent to daylight 21 or comprising translucent materials suitable for daylight penetration. The fabric 10 of the tent structure is supported by a cable structure 22, which will be discussed in more detail later on. If desired, the layer sequence can be adapted as required.
[0067] Figure 4 shows a schematic, perspective view of an exemplary embodiment of the building structure 1, wherein the tent structure 5 is supported near a plurality of tops 6, 6’, 6” by a plurality of supporting poles 15, 15’, 15”, in this case three, wherein the supporting poles 15, 15’, 15” extend downwards, from the tops 6, 6’, 6”, through an opening 16 in the airdome 2 to a ground position 17 within the airdome. In the embodiment as shown, the plurality of supporting poles 15, 15’, 15” converge at a single ground position 17 within the airdome 2.
[0068] Figure 5 shows a schematic side view of a building structure 1, wherein, when seen in top view, the cable structure 22 comprises a plurality of radial cables 23 running in a radial direction from the top 6 towards the circumference 7 of the tent structure 5, wherein, near the circumference, the cable ends are each attached to a connecting member 24 installed in the ground 3. When seen in top view, in this embodiment, adjacent radial cables 23 are spaced-apart at an angle of 10-15°, preferably approximately 12°. When seen in top view, the radial cables 23 are intersected at radially spaced-apart positions by a plurality of membrane cables 25 running in a direction substantially parallel to the circumference 7 of the tent structure.
[0069] Thus, the invention has been described by reference to the embodiments discussed above. It will be recognized that these embodiments are susceptible to various modifications and alternative forms well known to those of skill in the art without departing from the spirit and scope of the invention. Accordingly, although specific embodiments have been described, the above described embodiments are examples only and are not limiting upon the scope of the invention.
Reference numerals 1. Building structure 2. Airdome 3. Ground 4. Covering structure 5. Tent structure 6. Top 7. Circumference 8. Opening 9. - 10. Tent structure fabric 11. Convex side of tent structure 12. - 13. Intermediate position between top and circumference 14. Underground piping system 15. Supporting pole 16. Opening in airdome 17. Ground position within airdome 18. Tent fabric layer capable of converting solar energy into electricity 19. Tent fabric heat reflective membrane layer 20. Tent fabric layer incorporating a solar warm water collecting system 21. Tent fabric layer transparent to daylight 22. Cable structure 23. Radial cable 24. Connecting member 25. Membrane cable 26. Airdome fabric 27. Airdome fabric layer with a heat-reflective foil 28. Airdome fabric isolation layer with an aerogel 29. Airdome fabric layer with a phase change material H. Vertical distance between circumference of tent structure and ground D. Distance between convex side of the tent structure and outer surface of the airdome

Claims (40)

1. Bouwconstructie (1), omvattend een isolerende airdome (2) vast bevestigd aan de grond (3), en een bedekkingsconstructie (4) voor het bedekken van ten minste een deel van de airdome, met het kenmerk dat de bedekkingsconstructie (4) een tentconstructie (5) omvat aangebracht over hoofdzakelijk de gehele airdome, wanneer bezien in bovenaanzicht, waarbij de tentconstructie een top (6) en een omtrek (7) heeft, waarbij de top is voorzien van een opening (8) en geplaatst is op een grotere hoogte dan de omtrek van de tentconstructie, waarbij de omtrek geplaatst is op een verticale afstand (H) van de grond, waarbij de tentconstructie een weefsel (10) omvat en een in algemene zin convexe vorm heeft ten opzichte van de airdome, waarbij een convexe zijde van de tentconstructie naar de airdome is toegekeerd, waarbij de convexe zijde van de tentconstructie en een buitenoppervlak van de tentconstructie op een afstand (D) van elkaar zijn geplaatst.A building structure (1) comprising an insulating air dome (2) fixedly attached to the ground (3), and a covering structure (4) for covering at least a part of the air dome, characterized in that the covering structure (4) comprises a tent structure (5) arranged substantially over the entire air dome, when viewed in plan view, the tent structure having a top (6) and a perimeter (7), the top having an opening (8) and being placed on a greater than the circumference of the tent structure, the circumference being placed at a vertical distance (H) from the ground, the tent structure comprising a fabric (10) and having a generally convex shape relative to the air dome, wherein a The convex side of the tent construction faces the air dome, the convex side of the tent construction and an outer surface of the tent construction being spaced apart (D). 2. Bouwconstructie (1) volgens conclusie 1, waarbij, op een tussengelegen positie (13) tussen de top en de omtrek van de convexe zijde van de tentconstructie en een buitenoppervlak van de airdome, de convexe zijde van de tentconstructie en een buitenoppervlak van de airdome op een afstand (D) van ten minste 0,1 m van elkaar zijn geplaatst.The building structure (1) according to claim 1, wherein, at an intermediate position (13) between the top and the perimeter of the convex side of the tent structure and an outer surface of the air dome, the convex side of the tent structure and an outer surface of the tent structure airdome at a distance (D) of at least 0.1 m from each other. 3. Bouwconstructie (1) volgens conclusie 1 of 2, waarbij de verticale afstand (H) tussen de omtrek en de grond ten hoogste 10 m, bij voorkeur ten hoogste 5 m, bij grotere voorkeur ten hoogste 2 m bedraagt.Building construction (1) according to claim 1 or 2, wherein the vertical distance (H) between the perimeter and the ground is at most 10 m, preferably at most 5 m, more preferably at most 2 m. 4. Bouwconstructie (1) volgens een van de conclusies 1-3, waarbij de grond beneden de airdome is voorzien van een ondergronds buizensysteem (14), waardoor koelvloeistof wordt gecirculeerd, tijdens gebruik, voor het absorberen van warmte van de airdome.The building structure (1) according to any of claims 1-3, wherein the ground below the air dome is provided with an underground pipe system (14) through which coolant is circulated, during use, for absorbing heat from the air dome. 5. Bouwconstructie (1) volgens een van de voorgaande conclusies, waarbij de tentconstructie wordt ondersteund nabij de top (6, 6’, 6”) door een ondersteuningspaal (15, 15’, 15”), waarbij de ondersteuningspaal zich neerwaarts uitstrekt, vanaf de top, door een opening (16, 16’, 16”) in de airdome naar een grondpositie (17) binnen de airdome.Building construction (1) according to one of the preceding claims, wherein the tent construction is supported near the top (6, 6 ', 6 ”) by a support pole (15, 15', 15”), the support pole extending downwards, from the top, through an opening (16, 16 ', 16 ”) in the air dome to a ground position (17) within the air dome. 6. Bouwconstructie (1) volgens conclusie 5, waarbij de tentconstructie een veelheid toppen (6, 6’, 6”) omvat met een overeenkomstige veelheid openingen (16, 16’, 16”), waarbij een soortgelijk overeenkomstige veelheid ondersteuningspalen (15, 15’, 15”) zich uitstrekt vanaf de veelheid van toppen naar een grondpositie binnen de airdome.The building structure (1) according to claim 5, wherein the tent structure comprises a plurality of tops (6, 6 ', 6 ") with a corresponding plurality of openings (16, 16", 16 "), wherein a similarly corresponding plurality of support posts (15, 15 ', 15 ”) extends from the multitude of peaks to a ground position within the air dome. 7. Bouwconstructie (1) volgens conclusie 6, waarbij de veelheid van ondersteuningspalen convergeert in een enkele grondpositie binnen de airdome.The building structure (1) of claim 6, wherein the plurality of support posts converge in a single ground position within the air dome. 8. Bouwconstructie (1) volgens conclusie 7, waarbij de veelheid van ondersteuningspalen ten minste drie ondersteuningspalen omvat.The building structure (1) according to claim 7, wherein the plurality of support piles comprises at least three support piles. 9. Bouwconstructie (1) volgens een van de voorgaande conclusies, waarbij het weefsel van de tentconstructie een laag omvat die in staat is tot het converteren van zonne-energie naar elektriciteit (18).A building structure (1) according to any one of the preceding claims, wherein the fabric of the tent structure comprises a layer capable of converting solar energy into electricity (18). 10. Bouwconstructie (1) volgens een van de voorgaande conclusies, waarbij het weefsel van de tentconstructie een warmte reflecterende membraanlaag (19) omvat.Building construction (1) according to one of the preceding claims, wherein the fabric of the tent construction comprises a heat-reflecting membrane layer (19). 11. Bouwconstructie (1) volgens een van de voorgaande conclusies, waarbij het weefsel van de tentconstructie een laag omvat die een zonnewarmwaterverzamelsysteem (20) bevat.Building construction (1) according to one of the preceding claims, wherein the fabric of the tent construction comprises a layer which contains a solar hot water collection system (20). 12. Bouwconstructie (1) volgens een van de voorgaande conclusies, waarbij het weefsel van de tentconstructie een laag omvat die transparant is voor daglicht (21).Building construction (1) according to one of the preceding claims, wherein the fabric of the tent construction comprises a layer that is transparent to daylight (21). 13. Bouwconstructie (1) volgens een van de voorgaande conclusies, waarbij het weefsel van de tentconstructie ondersteund is door een kabelconstructie (22).Building construction (1) according to one of the preceding claims, wherein the fabric of the tent construction is supported by a cable construction (22). 14. Bouwconstructie (1) volgens conclusie 13, waarbij, wanneer bezien in bovenaanzicht, de kabelconstructie een veelheid radiale kabels (23) omvat die in radiale richting vanaf de top richting de omtrek van de tentconstructie loopt, waarbij, nabij de omtrek, de kabel einden elk bevestigd zijn aan een verbindingsorgaan (24) dat in de grond is geïnstalleerd.A building structure (1) according to claim 13, wherein, when viewed in top view, the cable structure comprises a plurality of radial cables (23) running radially from the top towards the perimeter of the tent structure, wherein, near the perimeter, the cable ends are each attached to a connector (24) installed in the ground. 15. Bouwconstructie (1) volgens conclusie 14, waarbij, wanneer bezien in bovenaanzicht, naburige radiale kabels op een afstand van elkaar zijn geplaatst onder een hoek van 10-15°, bij voorkeur ongeveer 12°.The building structure (1) according to claim 14, wherein when viewed in plan view, adjacent radial cables are spaced apart at an angle of 10-15 °, preferably about 12 °. 16. Bouwconstructie (1) volgens conclusie 14 of 15, waarbij, wanneer bezien in bovenaanzicht, de radiale kabels op radiaal op afstand van elkaar gelegen posities doorkruist zijn door een veelheid membraankabels (25) die in een richting hoofdzakelijk parallel aan de omtrek van de tentconstructie lopen.A building structure (1) according to claim 14 or 15, wherein, when viewed in plan view, the radial cables are traversed at radially spaced positions by a plurality of membrane cables (25) which are in a direction substantially parallel to the circumference of the walk tent construction. 17. Bouwconstructie (1) volgens een van de voorgaande conclusies, waarbij de airdome een airdomeweefsel (26) omvat.A building structure (1) according to any of the preceding claims, wherein the air dome comprises an air dome fabric (26). 18. Bouwconstructie (1) volgens conclusie 17, waarbij het airdomeweefsel een laag met een warmtereflecterende folie (27) omvat.The building structure (1) according to claim 17, wherein the air dome fabric comprises a layer with a heat-reflecting foil (27). 19. Bouwconstructie (1) volgens conclusie 17 of 18, waarbij het airdomeweefsel een isolatielaag met een aerogel (28) omvat.The building structure (1) according to claim 17 or 18, wherein the air dome fabric comprises an insulating layer with an airgel (28). 20. Bouwconstructie (1) volgens een van de conclusies 17-19, waarbij het airdomeweefsel een laag met een faseveranderend materiaal (29) omvat.The building structure (1) according to any of claims 17-19, wherein the air dome fabric comprises a layer with a phase-changing material (29). 21. Bouwconstructie (1) volgens een van de voorgaande conclusies, uitgevoerd als een stadion voor het spelen van sport.Building construction (1) according to one of the preceding claims, designed as a stadium for playing sports. 22. Airdome (2) voor gebruik in de bouwconstructie volgens een van de conclusies 1-21, tijdens gebruik omvattend een hoofdzakelijk concave vorm ten opzichte van een inwendige van de airdome, waarbij de airdome een airdomeweefsel omvat.An air dome (2) for use in the building structure according to any of claims 1-21, comprising in use a substantially concave shape with respect to an interior of the air dome, wherein the air dome comprises an air dome fabric. 23. Airdome (2) volgens conclusie 22, waarbij het airdomeweefsel een laag met warmtereflecterende folie omvat.The air dome (2) according to claim 22, wherein the air dome fabric comprises a layer with heat-reflecting foil. 24. Airdome (2) volgens conclusie 22 of 23, waarbij het airdomeweefsel een isolatielaag met een aerogel omvat.The air dome (2) according to claim 22 or 23, wherein the air dome fabric comprises an insulating layer with an airgel. 25. Airdome (2) volgens een van de voorgaande conclusies 22-24, waarbij het airdomeweefsel een laag met een faseveranderend materiaal omvat.The air dome (2) according to any of the preceding claims 22 to 24, wherein the air dome fabric comprises a layer with a phase-changing material. 26. Tentconstructie (5) voor gebruik in de bouwconstructie volgens een van de conclusies 1-21, waarbij een airdome onder de tentconstructie kan worden aangebracht, waarbij de tentconstructie over hoofdzakelijk de gehele airdome kan worden aangebracht, wanneer bezien in bovenaanzicht, waarbij de tentconstructie een top en een omtrek heeft, waarbij de top is voorzien van een opening en geplaatst is op een grotere hoogte dan de omtrek van de tentconstructie, waarbij de omtrek geplaatst is op een verticale afstand van de grond, waarbij de tentconstructie een weefsel omvat en een in algemene zin convexe vorm heeft ten opzichte van de airdome, waarbij een convexe zijde van de tentconstructie naar de airdome kan worden toegekeerd, waarbij de convexe zijde van de tentconstructie en een buitenoppervlak van de tentconstructie op een afstand (D) van elkaar zijn geplaatst.A tent structure (5) for use in the building structure according to any of claims 1-21, wherein an air dome can be arranged below the tent structure, wherein the tent structure can be arranged over substantially the entire air dome, when viewed in top view, the tent structure has a top and a circumference, the top having an opening and being placed at a greater height than the circumference of the tent construction, the circumference being placed at a vertical distance from the ground, the tent construction comprising a fabric and a generally has a convex shape with respect to the air dome, whereby a convex side of the tent structure can be turned towards the air dome, the convex side of the tent structure and an outer surface of the tent structure being spaced apart (D) from each other. 27. Tentconstructie (5) volgens conclusie 26, waarbij de verticale afstand (H) tussen de omtrek en de grond ten hoogste 10 m, bij voorkeur ten hoogste 5 m, bij grotere voorkeur ten hoogste 2 m bedraagt.Tent structure (5) according to claim 26, wherein the vertical distance (H) between the perimeter and the ground is at most 10 m, preferably at most 5 m, more preferably at most 2 m. 28. Tentconstructie (5) volgens conclusie 26 of 27, waarbij de tentconstructie wordt ondersteund nabij de top door een ondersteuningspaal die zich neerwaarts uitstrekt naar een grondpositie.A tent structure (5) according to claim 26 or 27, wherein the tent structure is supported near the top by a support pole that extends down to a ground position. 29. Tentconstructie (5) volgens een van de conclusies 26-28, waarbij de tentconstructie een veelheid toppen omvat met een overeenkomstige veelheid openingen, waarbij een soortgelijk overeenkomstige veelheid ondersteuningspalen zich uitstrekt vanaf de veelheid van toppen naar een grondpositie.The tent structure (5) according to any of claims 26-28, wherein the tent structure comprises a plurality of tops with a corresponding plurality of openings, a similarly corresponding plurality of support posts extending from the plurality of tops to a ground position. 30. Tentconstructie (5) volgens conclusie 29, waarbij de veelheid van ondersteuningspalen convergeren in een enkele grondpositie.The tent structure (5) of claim 29, wherein the plurality of support posts converge into a single ground position. 31. Tentconstructie (5) volgens conclusie 29 of 30, waarbij de veelheid van ondersteuningspalen ten minste drie ondersteuningspalen omvat.The tent structure (5) according to claim 29 or 30, wherein the plurality of support posts comprises at least three support posts. 32. Tentconstructie (5) volgens een van de conclusies 26-31, waarbij het weefsel van de tentconstructie een laag omvat die in staat is tot het converteren van zonne-energie naar elektriciteit.The tent structure (5) according to any of claims 26-31, wherein the fabric of the tent structure comprises a layer which is capable of converting solar energy into electricity. 33. Tentconstructie (5) volgens een van de conclusies 26-32, waarbij het weefsel van de tentconstructie een warmte reflecterende membraanlaag omvat.The tent structure (5) according to any of claims 26-32, wherein the fabric of the tent structure comprises a heat-reflecting membrane layer. 34. Tentconstructie (5) volgens een van de conclusies 26-33, waarbij het weefsel van de tentconstructie een laag omvat die een zonnewarmwaterverzamelsysteem bevat.The tent structure (5) according to any of claims 26-33, wherein the fabric of the tent structure comprises a layer that contains a solar hot water collection system. 35. Tentconstructie (5) volgens een van de conclusies 26-34, waarbij het weefsel van de tentconstructie een laag omvat die transparant is voor daglicht.The tent structure (5) according to any of claims 26-34, wherein the fabric of the tent structure comprises a layer that is transparent to daylight. 36. Tentconstructie (5) volgens een van de conclusies 26-35, waarbij het weefsel van de tentconstructie ondersteund is door een kabelconstructie.The tent structure (5) according to any of claims 26-35, wherein the fabric of the tent structure is supported by a cable structure. 37. Tentconstructie (5) volgens conclusie 36, waarbij, wanneer bezien in bovenaanzicht, de kabelconstructie een veelheid radiale kabels omvat die in radiale richting vanaf de top richting de omtrek van de tentconstructie loopt, waarbij, nabij de omtrek, de kabeleinden elk bevestigd zijn aan een verbindingsorgaan dat in de grond is geïnstalleerd.The tent structure (5) according to claim 36, wherein, when viewed in top view, the cable structure comprises a plurality of radial cables running radially from the top towards the perimeter of the tent structure, wherein, near the perimeter, the cable ends are each attached to a connecting member installed in the ground. 38. Tentconstructie (5) volgens conclusie 37, waarbij, wanneer bezien in bovenaanzicht, naburige radiale kabels op een afstand van elkaar zijn geplaatst onder een hoek van 10-15°, bij voorkeur ongeveer 12°.The tent structure (5) according to claim 37, wherein when viewed in plan view, adjacent radial cables are spaced apart at an angle of 10-15 °, preferably about 12 °. 39. Tentconstructie (5) volgens conclusie 37 of 38, waarbij, wanneer bezien in bovenaanzicht, de radiale kabels op radiaal op afstand van elkaar gelegen posities doorkruist zijn door een veelheid membraankabels die in een richting hoofdzakelijk parallel aan de omtrek van de tentconstructie lopen.The tent structure (5) according to claim 37 or 38, wherein, when viewed in plan view, the radial cables are traversed at radially spaced positions by a plurality of membrane cables running in a direction substantially parallel to the perimeter of the tent structure. 40. Werkwijze voor het activeren van een airdome (2) volgens een van de conclusies 22-25, waarbij de airdome wordt gekoeld door het activeren van de domeconstructie onder gebruikmaking van gekoelde lucht of verneveling.A method for activating an air dome (2) according to any of claims 22-25, wherein the air dome is cooled by activating the dome construction using cooled air or atomization.
NL2012003A 2013-12-20 2013-12-20 Building structure. NL2012003C2 (en)

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