By Eugene G. Kovach
Expertise of effective strength usage is a record of a NATO technology Committee convention held in Les Arcs, France on October 8-12, 1973. the focal point of stated convention is on strength conservation, the end-uses of strength, and its picking elements ultimately.
The document consists of 2 components. half I comprises the operating experiences from diverse teams each bankruptcy. The studies hide commercial, residential, and advertisement warmth; mild; movement; digital and electrolytic approaches; and home, advertisement, business, city structures. half II is the study portfolio, that is divided into 3 extensive teams for simpler entry: crew A – business approach, team B – shipping, and team C – constructions.
The textual content is for these in departments and associations that examine power and effort conservation, specifically those that search to enhance using power.
Read or Download Technology of Efficient Energy Utilization. The Report of a NATO Science Committee Conference Held at Les Arcs, France, 8th–12th October, 1973 PDF
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Know-how of effective strength usage is a document of a NATO technology Committee convention held in Les Arcs, France on October 8-12, 1973. the point of interest of acknowledged convention is on power conservation, the end-uses of strength, and its choosing elements in the end. The file consists of 2 components.
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Extra resources for Technology of Efficient Energy Utilization. The Report of a NATO Science Committee Conference Held at Les Arcs, France, 8th–12th October, 1973
J . APPLEBY R . C. A. B. R. JENKINS H. C. I. G r o u p Leader Recorder ROSCOE TANNENBERGER G . WALTER Electrochemical Direct Energy Conversion and Storage Great improvements in energy utilization are possible by the use of fuel cells. Fuel cells are not Carnot-limited, and are capable of efficiencies of 50-70%. Efficiency is scale-independent. Hydrogen is the best fuel choice, but hydrocarbon fuels can be oxidized at high temperatures, or used indirectly via reformers. Direct use of fuel cells in transportation would allow approximately a doubling of the overall efficiency of the use of fuels.
G . , M O R R I S , D . N . , "Energy Conservation in Public and Commercial Buildings" Rand Corporation; October 1973. 47 5 E Q U I V A L E N T FOSSIL FUEL USE BY F U N C T I O N ( C O M M E R C I A L SECTOR) r- • Space Heating 4 h- 1960 54%] IE 3 10 I— 1968 |62% 1 5 BTU AirConditioning W a t e r Heating Lighting Refrigeration M%l 9% 0 |13 /J Cooking 2% 2% 3% Figure 2 C O M P A R I S O N OF OFFICE B U I L D I N G A N D H O S P I T A L (LOS ANGELES) 16 Office Building 14 Hospital 12 10 Total Cooling Total M B T U / S Q FT 8 Cooling 6 4 Heating 2 Heating 0 Jan.
With such systems, utilities could be encouraged to sell services, not just energy, and would have incentives to install high efficiency equipment and to keep it in good repair. C. In large structures, there are several techniques for conserving or recovering energy from refrigerators. First, a central compressor-condensor system could be used which circulates coolant to all of the individual refrigerators. A second method would be to 52 collect reject heat from the condensor coils in a circulating water system for use as a pre-heater for hot water.