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Том 6
Редактор(ы):Carranza-Torres C., Delgado C., Giordan D., Lollino G., Marinos P., Thuro K., Wu F.
Издание:Springer, 2015 г., 1002 стр., ISBN: 978-3-319-09059-7
Язык(и)Английский
Engineering geology for society and territory. Volume 6. Applied geology for major engineering projects / Инженерная геология для общества и территории. Том 6. Прикладная геология для крупных инженерных проектов.

It is customary to analyze the behavior of foundations under the implicit assumption that the ground will suffer deformations and settle as a result of the increasing load transmitted by a construction in progress. Usually an estimation has to be made of the final movements to be expected in the construction (whether a building or a public work) in the short or in the long term.

Автор(ы):Price D.G.
Редактор(ы):de Freitas M.H.
Издание:Springer, 2009 г., 459 стр., ISBN: 978-3-540-29249-4
Язык(и)Английский
Engineering geology. Principles and practice / Инженерная геология. Основы и практика

While ancient man must have had some intuitive knowledge of geology, as evidenced by the feats of mining and civil engineering performed in the distant past, the present science of geology owes much of its origin to the civil engineers working in the eighteenth century. These engineers, while constructing the major engineering works associated with the industrial revolution, had the opportunity to view and explore excavations in rocks and soils. Some, intrigued by what they saw, began to speculate on the origin and nature of rocks, and the relationships between similar rocks found in different places. Their ideas and theories, based on the practical application of their subject, formed the groundwork for the development of geology as a science. Engineers such as Lewis Evans (1700–1756) in America, William Smith (1769–1839) in England, Pierre Cordier (1777–1862) in France and many others were the ‘fathers’ of Geology. <...>

Редактор(ы):Chengxiang L., Kie T.T., Ling Y.
Издание:Pergamon Press, 1988 г., 986 стр., ISBN: 0-08-035894-2
Язык(и)Английский
Engineering in complex rock formations / Проектирование в сложных горных условиях

The principle features of the Theological processes in rock salt are plasticity, creep and fracturing. A treatment of this features involves geotechnical measurements (laboratory, in-situ), theoretical investigations (continuum mechanics), and microphysical considerations (dislocations, grain structure). The knowledge of the thermo-mechanical behavior of rock salt is an essential part of any assessment of the stability of underground openings for waste disposal purposes. Each, an assessment and the evaluation of the integrity of the geological barrier can only be performed by calculations with validated geomechanical models. Some results of these calculations for the preliminary repository design of the Gorleben site and the research mine ASSE II are given. <...>

Автор(ы):Goel R.K., Singh B.
Издание:Elsevier, 2011 г., 381 стр., ISBN: 978-0-12-385878-8
Язык(и)Английский
Engineering rock mass classification. Tunneling, foundations and landslides / Инженерная классификация горных массивов. Прокладка туннелей, фундаментов и оползни

The science of classification is called “taxonomy”; it deals with the theoretical aspects of classification, including its basis, principles, procedures, and rules. Knowledge tested in projects is called the “practical knowledge.” Surprisingly the rating and ranking systems have become popular in every part of life in the twenty-first century.

Rock mass classifications form the backbone of the empirical design approach and are widely employed in rock engineering. Engineering rock mass classifications have recently been quite popular and are used in feasibility designs. When used correctly, a rock mass classification can be a powerful tool in these designs. On many projects the classification approach is the only practical basis for the design of complex underground structures. The Gjovik Underground Ice Hockey Stadium in Norway was designed by the classification approach.

Автор(ы):Harrison J.P., Hudson J.A.
Издание:Elsevier, 2000 г., 457 стр., ISBN: 0-08-04-19-12-7
Язык(и)Английский
Engineering rock mechanics. Part 1. An introduction to the principles / Инженерная механика горных пород. Часть 2. Введение в принципы

With the title Engineering Rock Mechanics, what is this book about? It is about the discipline, based on mechanics, which is used to design structures built on or in rock masses. These structures, which encompass building foundations, dams, rock slopes, tunnel, caverns, hydroelectric schemes, mines, etc., depend critically on the rock mass properties and the interaction between the rock mass and the engineered structure. As a result, the distinct discipline of engineering rock mechanics has developed. The term ’rock mechanics’ refers to the basic science of mechanics applied to rocks; whilst the term ’rock engineering’ refers to any engineering activity involving rocks. Thus, the term ’engineering rock mechanics’ refers to the use of rock mechanics in rock engineering-within the context of civil, mining and petroleum enpeering. Because rock mechanics can also be used to study structural geology, we emphasize through the title that it is the rock mechanics principles in the engineering context that we are presenting <...>

Автор(ы):Harrison J.P., Hudson J.A.
Издание:Pergamon, 2000 г., 529 стр., ISBN: 0-08-043010-4
Язык(и)Английский
Engineering rock mechanics. Part 2. Illustrative worked examples / Инженерная механика горных пород. Часть 2. Наглядные практические примеры

There are two reasons why it is important to understand and use engineering rock mechanics units correctly: engineering rock mechanics calculations used for rock engineering design should be numerically correct; and to use engineering rock mechanics properly, an understanding of units is necessary.
We have used standard symbols and the SI (International System) of units. There are seven base units in the SI system: length, mass, time, electric current, thermodynamic temperature, amount of substance and luminous intensity. These base units are dimensionally independent.  <...>

Издание 7
Автор(ы):Manahan S.E.
Издание:lewis Publisher, 1999 г., 845 стр., ISBN: 1-56670-492-8
Язык(и)Русский
Environmental chemistry / Химия окружающей среды

Environmental chemistry, Seventh Edition, continues much the same organizational structure, level, and emphasis that have been developed through preceding editions. In addition to providing updated material in the rapidly developing area of environmental chemistry, this edition emphasizes several major concepts that are proving essential to the practice of environmental chemistry at the beginning of the new millennium.

Редактор(ы):Lichtfouse E., Robert D., Schwarzbauer J.
Издание:Springer, 2005 г., 801 стр., ISBN: 3-540-22860-8
Язык(и)Английский
Environmental chemistry. Green chemistry and pollutants in ecosystems / Химия окружающей среды. Зеленая химия и загрязняющие вещества в экосистемах

Soils can act as a sink for anthropogenic and naturally released heavy metals. Among these are heavy metal oxides and sulfides, which are emitted e.g. by mining industry and metal smelting. The dissolution and transformation behavior of these heavy metal phases specifies their fate in the soil and determines whether the metals become bioavailable or could contaminate the groundwater. To gain more information about these dissolution reactions in soils, in-situ methods are needed. We present here a method to fix particulate metal phases on an inert support. This method allows us to expose and recover metal phases in the environment under controlled conditions.

Издание:2003 г., 11 стр.
Язык(и)Английский
Environmental data mining and modeling based on machine learning algorithms and geostatistics / Интеллектуальный анализ и моделирование экологических данных на основе алгоритмов машинного обучения и геостатистики

The paper presents some contemporary approaches to spatial environmental data analysis. The main topics are concentrated on the decision-oriented problems of environmental spatial data mining and modeling: valorization and representativity of data with the help of exploratory data analysis, spatial predictions, probabilistic and risk mapping, development and application of conditional stochastic simulation models. The innovative part of the paper presents integrated/hybrid model—machine learning (ML) residuals sequential simulations—MLRSS.

Редактор(ы):Alpers C.N., Blowes D.W.
Издание:American chemical society, Washington, 1994 г., 671 стр., ISBN: 0-8412-2772-1
Язык(и)Английский
Environmental geochemistry of sulfide oxidation / Экологическая геохимия окисления сульфидов

The stury of sulfide-oxidation reactions, the characterization of the products of these reactions, and the prediction of the fate of sulfide-oxidation products in natural environments are increasingly active areas of research. This research is motivated by the locally severe environmental impacts and toxicity associated with the products of sulfide oxidation. Mine wastes are of particular concern because of past and present disposal practices that have resulted in the widespread degradation of surface-water and ground-water quality. Mine wastes have therefore come under increasing regulation.

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