3,927 research outputs found

    Heat and Moisture Conduction in Unsaturated Soils

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    Mathematical models are developed for the prediction of heat transfer from hot water pipes buried in the soil. Heat transfer in the absence of moisture transfer is described as a function of the difference between the temperature of the pipe and the temperature of the soil surface. The energy balance is used to determine the longitudinal temperature distribution of the water. The method is extended to describe a system of equally spaced, parallel buried pipes. Soil temperature profiles around the pipes are presented. The model is used to calculate the land area that can be heated by an underground piping system carrying cooling water from the condensers of a 1000 MW nuclear-electric plant. A new development of the phenomenological equations for coupled heat and moisture flow, based on the theory of Irreversible Thermodynamics, is presented. Solutions of the equations for boundary conditions representative of buried piping systems designed for simultaneous soil heating and irrigation are presented

    MOVING FROM UNIFORM TO VARIABLE FERTILIZER RATES ON IOWA CORN: EFFECTS ON RATES AND RETURNS

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    This study develops a model based on the yield potential of various soil types in 12 Iowa counties to estimate the potential value of switching from uniform to variable fertilizer rates. Results indicate modest increases in the gross returns over fertilizer costs, ranging from 7.43to7.43 to 1.52 per acre. The net profitability of variable-rate technology (VRT) is sensitive to the per acre costs of moving to a VRT program. Under the assumptions of the model, applying variable rates would increase yield by 0.05 to 0.5 bushels per acre, and would reduce fertilizer costs by 1.19to1.19 to 6.83 per acre.Crop Production/Industries,

    Dynamic Considerations for Control of Closed Life Support Systems

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    Reliability of closed life support systems depend on their ability to continue supplying the crew's needs during perturbations and equipment failures. The dynamic considerations interact with the basic static design through the sizing of storages, the specification of excess capacities in processors, and the choice of system initial state. A very simple system flow model was used to examine the possibilities for system failures even when there is sufficient storage to buffer the immediate effects of the perturbation. Two control schemes are shown which have different dynamic consequences in response to component failures

    Circular Dichroism of RbHe and RbN2_2 Molecules

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    We present measurements of the circular dichroism of optically pumped Rb vapor near the D1 resonance line. Collisions with the buffer gases 3^3He and N2_2 reduce the transparency of the vapor, even when fully polarized. We use two methods to measure this effect, show that the He results can be understood from RbHe potential curves, and show how this effect conspires with the spectral profile of the optical pumping light to increase the laser power demands for optical pumping of very optically thick samples

    Nazism and Eric Voegelin’s Politische Religionen: An Approach to Exploring Nazism’s Roots in Modern Thought

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    The Holocaust shook the core assumptions many held regarding human progress and human nature. This paper seeks to track how the ideas of modernist philosophers may have laid the fundamental political and moral assumptions that allowed the Holocaust to occur. I will offer an analysis of 20th century German-American political scientist and philosopher Eric Voegelin’s theory of Political Religions to assess whether philosophy emerging from the Modern era led Germany to eschew Christianity, a world-transcendent religion as the source of the West’s “first principles,” and adopt the world-imminent religion of Nazism in its place. If this proves to be the case, with Nazism showing the problem of rights derived from the State, then Voegelin’s work can help us understand the shortcomings of modern thought through a novel philosophical and anthropological lens

    A Method for Estimation of Emission Control Costs

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    Development of far infrared attenuation to measure electron densities in cw pin discharge lasers

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    A two beam attenuation technique was devised to measure electron densities 10 to the 9th power to 10 to the 11th power cm/3 resolved to 1 cm, in a near atmospheric COFFEE laser discharge, using 496 micrometer and 1,220 micrometer radiations from CH3F, optically pumped by a CO2 laser. A far infrared generator was developed which was suitable except for a periodic intensity variation in FIR output deriving from frequency variation of the pump radiation

    Control and modeling of a CELSS (Controlled Ecological Life Support System)

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    Research topics that arise from the conceptualization of control for closed life support systems which are life support systems in which all or most of the mass is recycled are discussed. Modeling and control of uncertain and poorly defined systems, resource allocation in closed life support systems, and control structures or systems with delay and closure are emphasized

    Efficiency of Sequestering Carbon in Agricultural Soils (The)

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    Agricultural tillage practices are important human-induced activities that can alter carbon emissions from agricultural soils and have the potential to contribute significantly to reductions in greenhouse gas emission (Lal et al., 1998). This research investigates the expected costs of sequestering carbon in agricultural soils under different subsidy and market-based policies. Using detailed National Resources Inventory data, we estimate the probability that farmers adopt conservation tillage practices based on a variety of exogenous characteristics and profit from conventional practices. These estimates are used with physical models of carbon sequestration to estimate the subsidy costs of achieving increased carbon sequestration with alternative subsidy schemes.
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