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  • 80 panel photovoltaic electric array on Menzel and D'Alusio property in Napa Valley, CA. Nearly zeros out electric PG&E fees by providing power to the grid which runs the meter backward during daylight hours.
    USA_101019_12.jpg
  • 80 panel photovoltaic electric array on Menzel and D'Alusio property in Napa Valley, CA. Nearly zeros out electric PG&E fees by providing power to the grid which runs the meter backward during daylight hours.
    USA_101019_14.jpg
  • 80 panel photovoltaic electric array on Menzel and D'Alusio property in Napa Valley, CA. Nearly zeros out electric PG&E fees by providing power to the grid which runs the meter backward during daylight hours.
    USA_101019_11_x.jpg
  • 80 panel photovoltaic electric array on Menzel and D'Alusio property in Napa Valley, CA. Nearly zeros out electric PG&E fees by providing power to the grid which runs the meter backward during daylight hours.
    USA_101004_058_x.jpg
  • Glen Canyon Dam, Lake Powel, UT
    USA_100528_162_x.jpg
  • Glen Canyon Dam, Lake Powel, UT
    USA_100528_132_x.jpg
  • Central Arizona Project Aqueduct near Taliesin West, Scottsdale, AZ. The CAP aqueduct, at 336 miles, is the longest in the USA. It brings water from the Colorado River to Central and Southern Arizona..
    USA_061226_17_rwx.jpg
  • Palais Royal courtyard, Paris, France.
    FRA_073_xs.jpg
  • Glen Canyon Dam, Lake Powel, UT
    USA_100528_159_x.jpg
  • Glen Canyon Dam, Lake Powel, UT
    USA_100528_158_x.jpg
  • Glen Canyon Dam, Lake Powel, UT
    USA_100528_150_x.jpg
  • Glen Canyon Dam, Lake Powel, UT
    USA_100528_144_x.jpg
  • Glen Canyon Dam, Lake Powel, UT
    USA_100528_138_x.jpg
  • Glen Canyon Dam, Lake Powel, UT
    USA_100528_134_x.jpg
  • Central Arizona Project Aqueduct near Taliesin West, Scottsdale, AZ. The CAP aqueduct, at 336 miles, is the longest in the USA. It brings water from the Colorado River to Central and Southern Arizona..
    USA_061226_16_rwx.jpg
  • Virtual reality: Warren Robinett wears a prototype (1st generation) headset. Virtual environments are generated by computer systems to allow users to interact with in similar ways as they might with a real environment. The computer environments are displayed to their users using sophisticated graphics projected through small video monitors mounted on the headset. In addition, some headsets have a sensor which instructs the computer of the wearer's spatial aspect, that is, in 3-D. This particular model features displays with half-silvered mirrors that allow the user to see the computer image & look ahead. Model Released (1990)
    USA_SCI_VR_14_xs.jpg
  • Virtual reality: Rich Holloway wears prototype headset which employs half-silvered mirrors to enable the user to view a projected image of a virtual environment (and thus exist in virtual reality) and also see in front of his nose. A virtual environment is one created by a computer. A person entering such an environment does so with the aid of such a headset, which displays virtual imagery. Tactile interaction with the environment may be made using a data glove, a Spandex garment wired with sensors, which relays movement of the hand & fingers to the virtual environment. Model Released (1990)
    USA_SCI_VR_13_xs.jpg
  • An outside view of the Ananta Clothing factory in Dhaka, Bangladesh.  While nearly half of Bangladesh's population is employed in agriculture, in recent years the economic engine of Bangladesh has been its garment industry, and the country is now the world's fourth largest clothing exporter, ahead of India and the United States. Dependent on exports and fearing international sanctions, Bangladesh's garment industry has implemented rules outlawing child labor and setting standards for humane working conditions.
    BAN_081215_381_xw.jpg
  • Sewer inspection robot. Kurt I, a sewer inspection robot prototype. Here, the robot is moving through a simulated sewer at a German government-owned research and development centre. Unlike its predecessors, the Kurt I, and its successor, Kurt II, are cable-less, autonomous robots, which have their own power supply and piloting system. Kurt uses two low-powered lasers (upper centre) to beam a grid (red, lower centre) into its path. When the gridlines curve, indicating a bend or intersection in the pipe, the robot matches the curves against a digital map in its computer. It will then pilot itself to its destination. Photographed in Bonn, Germany.
    Ger_rs_40_xs.jpg
  • Lightning tolerance test. A researcher holding two carbon-fiber panels from a helicopter, showing their tolerance of lightning. The panel at right is simple carbon fiber, and has had a large hole punched in it by simulated lightning. This is because it is an electrical insulator, so cannot disperse the electricity across its surface. The panel at left has a thin grid of copper wire coating the surface. This allows the electrical charge to disperse over the surface, causing nothing more than damage to the paint. Photographed at Lightning Technologies Inc. of Massachusetts, USA. 1992.MODEL RELEASED
    USA_SCI_LIG_45_xs.jpg
  • Kurt I, a 32-cm-long robot, crawls through a simulated sewer network on the grounds of the Gesellschaft für Mathematik und Datenverabeitung-Forschungs-zentrum Informationstechnik GmbH (GMD), a government-owned R&D center outside Bonn, Germany. Every ten years, Germany's 400,000 kilometers of sewers must be inspected, at a cost of $9 per meter. Today, vehicles tethered to long data cables explore remote parts of the system. Because the cables restrict the vehicle's mobility and range, GMD engineers have built Kurt I, which crawls through sewers itself. To pilot itself, the robot?or, rather, its successor model, Kurt II?will use two low-power lasers to beam a checkerboardlike grid into its path. When the gridlines curve, indicating a bend or intersection in the pipe ahead, Kurt II will match the curves against a digital map in its "brain" and pilot itself to its destination. From the book Robo sapiens: Evolution of a New Species, page 194
    GER_rs_6_qxxs.jpg
  • Solar energy: SEGS Solar Plant. Southern California Desert. Solar power. One of the three Luz International solar energy complexes in the Mojave Desert of California, USA. Together these sites, which cover 1000 acres, generate 275 megawatts of electricity, 90% of the world's total grid-connected solar energy production. This installation, located at Kramer Junction, has an array of 650,000 computer-controlled parabolic mirrors which track the sun across the sky, focusing it's light onto tubes containing a synthetic oil. The oil, which is thus super-heated to 391 degrees Centigrade, is used to boil water for steam turbine generators in one of five power plants. (1985).
    USA_SCI_ENGY_76_xs.jpg
  • Solar energy: SEGS Solar Plant. Southern California Desert. Solar power. One of the three Luz International solar energy complexes in the Mojave Desert of California, USA. Together these sites, which cover 1000 acres, generate 275 megawatts of electricity, 90% of the world's total grid-connected solar energy production. This installation, located at Kramer Junction, has an array of 650,000 computer-controlled parabolic mirrors which track the sun across the sky, focusing it's light onto tubes containing a synthetic oil. The oil, which is thus super-heated to 391 degrees Centigrade, is used to boil water for steam turbine generators in one of five power plants. (1985).
    USA_SCI_ENGY_39_xs.jpg
  • Solar energy: SEGS Solar Plant. Southern California Desert. Solar power. One of the three Luz International solar energy complexes in the Mojave Desert of California, USA. Together these sites, which cover 1000 acres, generate 275 megawatts of electricity, 90% of the world's total grid-connected solar energy production. This installation, located at Kramer Junction, has an array of 650,000 computer-controlled parabolic mirrors which track the sun across the sky, focusing it's light onto tubes containing a synthetic oil. The oil, which is heated to 391 degrees Centigrade, is used to boil water for steam turbine generators in one of five power plants. (1985).
    USA_SCI_ENGY_27_xs.jpg

Peter Menzel Photography

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