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Overunity Machines Forum



Up to 99% less mass and energy consume by aequivalent comfort

Started by lancaIV, August 29, 2019, 07:14:39 AM

Previous topic - Next topic

0 Members and 4 Guests are viewing this topic.

lancaIV

Vale and oeko-energie.de intelligent household electric appliances,light et cet. consume : 3 KWh per day


mtbest.net ultra-efficient household electric consume per day : 0,7 KWh + 0,1 KWh freezer






                CIAM (- "BAUHAUS",Weimar-Dessau) 1929 Social Standart : 30,5 sqm base + 9 sqm each habitant


By 2020+ Nearly Zero Energy Building Standart  20 Wp/sqm Primary Energy consume for space heating


and F.A.S.org https://en.wikipedia.org/wiki/Federation_of_American_Scientists         international housing program living area


Starter Family : 32 sqm ( intern.) - 38 sqm (USA)


Expanded Family : 72 sqm (intern.) - 78 sqm (USA)




we take 40 sqm for 2-3 habitants ( 1-2 generation)- household


     take 80 sqm for 4-5 habitants (2-3 generations)- household




in 20° Kelvin temperature amplitude ( f.e. 0°Celsius outside and 20° Celsius average room temperature ,by law min. 18°C)climate zone this means :


40 sqm area :   800 W heat per hour ( average 1200 KWh per annum)


80 sqm area : 1600 W heat per hour ( average 2400 KWh per annum )






with heat pump thermo-dynamic average C.O.P. 5 process =


40 sqm area                                                   240 KWh electric consume per annum


80 sqm area                                                    480 KWh electric consume per annum




uncontroled warmwater consume :  4 capita 1440 KWh on demand ,1800 KWh storaged warm water energy consume


controled = fog gun/shower loop    4 capita                                     600 KWh  storaged warm water energy consume




with heat pump thermo-dynamic C.O.P. 5 process                            120 KWh  storaged warm water electricity consume




for space and water heating with heat pump and 40 sqm area = 240 + 120 KWh (4 capita !) = 360 KWh electricity consume per annum


                                                                       80 sqm area = 480 + 120 KWh   "    "  "     = 600 KWh    "       "      "      "      "      "






40 sqm  :   360 KWh + a. 3 KWh per day Vale/oeko-energie.de appliance/light/.....  or     b. mtbest =0,8 KWh + solar per day


80 sqm :    600 KWh + a. 3 KWh per day  "     "     "     "     "     "     "                             b.              0.8 KWh  +solar per day




mtbest : "solar" = ? = warm water heating ? = in the 360/600 KWh included !


power sources : daily private house hold waste conversion , 3 KWh electric per 1 Kg solid


                        solar radiation


                        wind


                        air2water/power heat pump cycle


                        magnet battery




-----------------------------------------------------------------------------------------------------------------------------------------------------------
mtbest.net ultra-efficiency improvement ,all consumer




700 Wh to 70 Wh per day Li Yng gear-motor


100 Wh freezer to 30 Wh per day ( from conventional 100 W/800 Wh per day fridge conversion)


from 0,8 KWh to 0,1 KWh per day appliances and light and fridge consume + solar






space heating 40 sqm :  Cletus (~ Dr.Reichelt Termotexx 2 Wp/sqm) Infrared led heat sourced by artificial light solar cells : 10 Wp per hour


                     80 sqm                                                                                                                                                   20 Wp per hour






                     40 sqm ergo 15 KWh electric consume for space heating p.a.


                     80 sqm ergo 30 KWh electric consume for space heating p.a.










warm water : the 600 KWh divided thermodynamic C.O.P. 5 divided magnet motor 100% output improvement (magnetic diode) and


                    Uchiyama resistor concept (5 coils)                                                                                                    12 KWh electric p.a.








36,5 KWh mtbest + 15 KWh space heating + 12 KWh warm water energy consume


                                   ( < 75 KWh p.a. electric stored/generation energy demand or average 175 Wh/day    )


as http://www.mobilchalet.de/   XXL = 40 sqm

compared : http://www.designnconstruction.com/design/ikea-35-square-metre-home/


and          : https://www.youtube.com/watch?v=WB2-2j9e4co   to   portable 24-in-1


and -modular- single,double,triple :


                  https://fashion-line.at/?utm_source=koma-modular&utm_medium=referral&utm_campaign=homepage




          175 Wh/3 000 Wh = 60 Gr. solid waste per day from bath/kitchen


                      3 000 Wh = electric waste-2-power co-generation output from 4 000 Wh per each 1 Kg caloric value input




                garbage can : weight can empty / can full weight        per day ?




Shocking or " give a try !" : https://www.youtube.com/watch?v=TYVJbupG3Xg


                                        Living in an incredibly/Crazy-small small 8m2 apartment in Tokyo


                                                                :o  incredible/Crazy-small


                                                                             GREATER ?  ::)


              https://www.ecocapsule.sk/                                                                     http://www.microcompacthome.at/


 
                                                        the 10 sqm per capsule-           tower in Tokio

                                                                           1972 constructed

https://translate.google.com/translate?sl=auto&tl=en&u=https://www.faz.net/aktuell/wirtschaft/wohnen/vom-hochhaus-zum-tiny-house-17481970.html

lancaIV

Porto,2001 Expo


https://scontent.fopo2-1.fna.fbcdn.net/v/t31.18172-8/1501474_638413309552761_1601596365_o.jpg?_nc_cat=101&ccb=1-5&_nc_sid=6e5ad9&_nc_ohc=MrAyv73FAC4AX8QICZR&_nc_oc=AQmf4r_sUxy43Py-RGrKLWpFiCLeo1sw3P7xXSBPowrNUlW9zShXNZ6h-rkAO0nyAFwrXZKEp37z2Xlueq0scYML&_nc_ht=scontent.fopo2-1.fna&oh=c150feddeeb82214aae019552778b572&oe=61559C50


House inventar/furniture on wheels ,relocateable


like


https://worldwide.espacenet.com/publicationDetails/biblio?DB=EPODOC&II=2&ND=3&adjacent=true&locale=en_EP&FT=D&date=20030615&CC=AT&NR=A3772002A&KC=A

https://worldwide.espacenet.com/publicationDetails/mosaics?CC=DE&NR=10311797A1&KC=A1&FT=D&ND=4&date=20031023&DB=EPODOC&locale=en_EP


or https://www.detail.de/blog-artikel/black-box-mal-anders-wohn-wuerfel-von-till-koenneker-22565/
                                                         

                              (minimum 80% over-prized)      90 000 Euros per unit


http://www.microcompacthome.at/                     https://www.ecocapsule.sk/   ( mass production worth < 10 000 Euros !)

compared Euros/sqm          https://fashion-line.at/relax/#models




                      or             1 000 Euros per unit : Polikatoikea


https://translate.google.com/translate?sl=auto&tl=en&u=http://daydreamtrip.blogspot.com/2014/04/arquitectura-portatil-portuguesa.html


+ 2000 Euros 24/365 solar and wind turbine charging battery-set     or    permanent working Air2water/power generator


https://www.facebook.com/DETAIL.de/photos/drehbarer-wohnw%C3%BCrfel-in-dipperz-der-nach-orientierungswunsch-auf-lkw-kugellager-/10151527773838774/


DIY-plan in DETAIL.de available  (< 50 Euros)









to bubble house https://www.kcrw.com/culture/articles/inside-the-last-bubble-house


                        https://www.binisystems.com/minishells.html

In 1964 Dante N Bini built the first hemispherical thin shell structure by pneumatically and automatically lifting all the necessary construction materials, which were distributed horizontally over a pneumatic form anchored to a circular ring beam, from ground level into an hemispherical dome.


After the initial ground preparation was finished, that concrete thin shell structure was built in 60 minutes.


https://www.google.com/search?rlz=1C1AVFC_enPT930PT930&source=univ&tbm=isch&q=bini+dome+earth&sa=X&ved=2ahUKEwiirsfet9vyAhU4A2MBHageDc0Q7Al6BAgGEA8&biw=1366&bih=605


for  affordable "NeW Village" https://www.jovoto.com/projects/300house/ideas/12501?page=1 construction






By 2021 pricing the iglu-village foam-domes near Polikatoikea 175 Euros/sqm-price estimation


https://web.archive.org/web/20040615174811/http://www.iglu-village.de/


https://translate.google.com/translate?sl=auto&tl=en&u=https://web.archive.org/web/20040508030758/http://www.iglu-village.de/pages/beschreibung/desc_01.html








13 sqm CASANOVA modules https://www.plus-bauplanung.de/buero/

https://translate.google.com/translate?sl=auto&tl=en&u=https://www.plus-bauplanung.de/buero/

https://i2.wp.com/www.plus-bauplanung.de/wp-content/uploads/2020/04/00_Haus-H%C3%BCbner_Janzer_010.jpg?w=255&h=272&ssl=1
https://i1.wp.com/www.plus-bauplanung.de/wp-content/uploads/2020/04/1975_Haus-H%C3%BCbner_DIA_011.jpg?w=316&h=316&crop=1&ssl=1

for 250 Euros/sqm each  ( 1975 -2021 = over 40 years use !)








Vision 2100 the autonomous Cabin/Studio/Cube


https://www.bfi.org/about-fuller/big-ideas/dymaxion-world/dymaxion-bathroom


Dymaxion Bathrooms are to be equipped with "Fog Gun" hot water vapor showers that use only a cup of water to clean hygienically without soap. Remarking that "Nature had designed humans to separate urine and excrement. Both are valuable chemistry, and should be collected for further use," Bucky specified a waterless "Packaging Toilet" that deftly shrink-wrapped the stuff for pickup for later composting. (Ordinary toilets use approximately 2000 gallons of pure drinking water per year to flush - and waste - one human's "exhaust" that, if dried out, would scarcely fill two 5-gallon pails.)


humanwaste2power


http://www.buckminster.info/Ideas/07-IcosHouseShowerScientific.htm
This idea could also be adapted to washing dishes, clothes, vehicles, etc.

https://showerloop.org/





white water by air dehumidification air2water

https://www.youtube.com/watch?v=PTVtazVB5_c






white water used = greywater ,recycling to white water


a. https://www.philstar.com/business/2015/08/07/1485201/idea-worth-some-serious-thought


b. https://translate.google.com/translate?sl=auto&tl=en&u=https://www.jugend-forscht.de/projektdatenbank/computergesteuerte-abwasserreinigung.html



lancaIV

What is international "cheap electricity" ?


U.S.A. b2b : 5,5 US$cents/KWh








Cheaper business to business costs available ?




https://aluminiuminsider.com/global-aluminium-smelters-production-costs-on-decline/


Electricity costs vary widely depending on the region,
with power tariffs around US$ 20/ MWh in the Middle East, US$ 35-40/MWh in the USA and Europe, and around US$ 55/ MWh in China,
after the latest additional subsides on electricity prices were introduced.


Rio Tinto Alcan has similar production costs, thanks to low cost smelters in Canada, powered also by low cost hydro power,


with the Kitimat smelter having the lowest power tariff in the world (below US$ 6 /MWh),
while its other Canadian smelters pay less than US$ 7 / MWh.


                                                                          0,6-0,7 US$cent/KWh


                                                                                           ::)


                                                         https://www.youtube.com/watch?v=smEqnnklfYs



                                                       Each citizen his 0,5 US$cent/KWh e-plant  ;) ,portable

lancaIV

from reply #55 :


mtbest.net ultra-efficiency improvement ,all consumer 700 Wh to 70 Wh per day Li Yng gear-motor100 Wh freezer to 30 Wh per day ( from conventional 100 W/800 Wh per day fridge conversion)from 0,8 KWh to 0,1 KWh per day appliances and light and fridge consume + solar




this are 36,5 KWh per year !




                             one possible in situ source : concentrated solar


1400 KWh solar radiation locality and 1 sqm 15% photovoltaic cell


= 210 KWh per year or 140 KWh 6 max months and 70 KWh min months




with min months mirror/focus/concentrator                  70 KWh x 1,5 = 105 KWh in 6 min months


                    140 KWh + 105 KWh = 245 KWh yearly average


with https://www.youtube.com/watch?v=l1QZAax0-XA  70 KWh x 2,5 = 175 KWh in 6 min months


                    140 KWh + 175 KWh = 315 KWh yearly average

or as permanent artificial photovoltaic converter


https://worldwide.espacenet.com/searchResults?submitted=true&locale=en_EP&DB=EPODOC&ST=advanced&TI=&AB=&PN=&AP=&PR=&PD=&PA=paul+marzahn&IN=&CPC=&IC=&Submit=Search


                            second possible in situ source : concentrated wind


https://worldwide.espacenet.com/publicationDetails/biblio?DB=EPODOC&II=1&ND=3&adjacent=true&locale=en_EP&FT=D&date=20121009&CC=US&NR=8283799B1&KC=B1


                    up to 2000 KWh conversion per annum ,improveable by double coil and generator coil coating






                            third possible in situ source :  artificial water mill


https://worldwide.espacenet.com/publicationDetails/biblio?DB=EPODOC&II=0&ND=3&adjacent=true&locale=en_EP&FT=D&date=19880128&CC=DE&NR=3621312A1&KC=A1     




                            fourth possible in situ source : artificial wind converter


https://www.patentauction.com/patent.php?nb=9318           




                            fifth possible in situ source :


kitchen and bath waste to gas/power conversion




                           sixth posssible in situ source :


air to water Sullivan Shaun (dehumidifier heat pump) and waste termocycle energy to power https://uspto.report/patent/app/20180340713




the battery system capacity from ancient lead                               250 charge cycles x VAh and DoD


                                                            Lithium                        2500 charge cycle   x VAh


                                                            Lithium Titan Oxide    25 000 charge cycles x VAh


                                                            Alu-Graphene           250 000 charge cycles X VAh




so that                                                            Kilowattlabs 1 000 000 charge cycles will become commercial neared  !








                           autonomous and energy/water autark living boxes ,included


https://www.empa.ch/web/self/overview and http://www.mobilchalet.de/ XXL = 40 sqm and https://www.wohnwagon.at/


                                                experience and knowledge


SELF



Independent of energy and water

"Self" is 7.7 meters long, 3.45 meters wide and 3.2 meters high.


With a weight of around 5 tons, the box can be transported by truck or helicopter.


https://placesjournal.org/article/how-much-does-your-household-weigh/?cn-reloaded=1



The challenge for the two designers was to combine technology, supply and space efficiently and comfortably at the same time. The technical know-how, on the other hand, came from Empa and Eawag as well as their partner institutions and companies. So that two people can live in the box for a longer period of time without a water or electricity connection, the rainwater collected on the roof, for example, has to be treated to make drinking water and the slightly polluted service water has to be recycled. In the living room, a transparent 200-liter fresh water tank shows the residents how much water they are using. Making consumption visible is an important concern of the two designers. "Abstract consumption figures say too little," Björn Olsson and Sandro Macchi are convinced. "Consumption must be noticeable, visible so that we can change our behavior."


Testing innovative technologies and materials Hardly anything on the "Self" corresponds to today's "state of the art", almost everything consists of specially designed and conceived components, such as the building envelope made of sandwich panels made of glass fiber reinforced plastic (GRP).


Highly insulating vacuum panels are used for thermal insulation.


A heat exchanger pre-heats the fresh air with the exhaust air, the water filter runs almost without electricity, the toilet uses only one liter of water per flush.


The project is also testing hydrogen technology in practice - i.e. the synthesis, storage and use of hydrogen, for example for cooking and heating .


Hydrogen is produced by electrolysis, the electrical energy for this is generated in an environmentally friendly way with solar cells on the roof.


Until the hydrogen is needed, it is temporarily stored in containers filled with metal hydrides, another innovation developed at Empa.


For the time being, the cell will serve as a test and demonstration object for some time and can be seen at various trade fairs and exhibitions.


Later on, Empa plans to use "Self" as a mobile guest room or as a research station in the mountains.

lancaIV