Libros sobre el tema "Higher order beam element"

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1

Karel, Segeth y Dolez̆el Ivo, eds. Higher-order finite element methods. Boca Raton, Fla: Chapman & Hall/CRC, 2004.

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2

Wiedemann, Helmut. Particle Accelerator Physics II: Nonlinear and Higher-Order Beam Dynamics. Berlin, Heidelberg: Springer Berlin Heidelberg, 1999.

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3

Wiedemann, Helmut. Particle Accelerator Physics II: Nonlinear and Higher-Order Beam Dynamics. Berlin, Heidelberg: Springer Berlin Heidelberg, 1995.

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4

Particle accelerator physics II: Nonlinear and higher-order beam dynamics. Berlin: Springer, 1995.

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5

Oskooei, Saeid G. A higher order finite element for sandwich plate analysis. Ottawa: National Library of Canada, 1998.

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6

Reddy, J. N. A higher-order theory for geometrically nonlinear analysis of composite laminates. Hampton, Va: Langley Research Center, 1987.

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7

Yan, Jue. Local discontinuous Galerkin methods for partial differential equations with higher order derivates. Hampton, VA: Institute for Computer Applications in Science and Engineering, NASA Langley Research Center, 2002.

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8

Goremykin, Sergey. Relay protection and automation of electric power systems. ru: INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1048841.

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The textbook describes the main issues of the theory of relay protection and automation of electric power systems. The structure and functional purpose of protection devices and automation of power transmission lines of various configurations, synchronous generators, power transformers, electric motors and individual electrical installations are considered. For each of the types of protection of the above objects, the structure, the principle of operation, the order of selection of settings are given, the advantages and disadvantages are evaluated, indicating the scope of application. The manual includes material on complete devices based on semiconductor and microprocessor element bases. The progressive use of such devices (protection of the third and fourth generations) is appropriate and effective due to their significant advantages. Meets the requirements of the federal state educational standards of higher education of the latest generation. It is intended for students in the areas of training 13.03.02 "Electric power and electrical engineering" (profile "Power supply", discipline "Relay protection and automation of electric power systems") and 35.03.06 "Agroengineering" (profile "Power supply and electrical equipment of agricultural enterprises", discipline "Relay protection of electrical equipment of agricultural objects"), as well as for graduate students and specialists engaged in the field of electrification and automation of industrial and agrotechnical objects.
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9

Solin, Pavel, Karel Segeth y Ivo Dolezel. Higher-Order Finite Element Methods. Taylor & Francis Group, 2003.

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10

Solin, Pavel, Karel Segeth y Ivo Dolezel. Higher-Order Finite Element Methods. Taylor & Francis Group, 2003.

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11

Solin, Pavel, Karel Segeth y Ivo Dolezel. Higher-Order Finite Element Methods. Taylor & Francis Group, 2003.

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12

Solin, Pavel, Karel Segeth y Ivan Dolezel. Higher-Order Finite Element Methods. Taylor & Francis Group, 2004.

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13

Solin, Pavel, Karel Segeth y Ivo Dolezel. Higher-Order Finite Element Methods. Taylor & Francis Group, 2003.

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14

Solin, Pavel, Karel Segeth y Ivo Dolezel. Higher-Order Finite Element Methods. Taylor & Francis Group, 2003.

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15

Solin, Pavel, Karel Segeth y Ivo Dolezel. Higher-Order Finite Element Methods (Studies in Advanced Mathematics). Chapman & Hall/CRC, 2003.

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16

Particle Accelerator Physics II: Nonlinear and Higher-Order Beam Dynamics. Springer, 2013.

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17

Zhang, Pei. Beam Diagnostics in Superconducting Accelerating Cavities: The Extraction of Transverse Beam Position from Beam-Excited Higher Order Modes. Springer London, Limited, 2013.

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18

Zhang, Pei. Beam Diagnostics in Superconducting Accelerating Cavities: The Extraction of Transverse Beam Position from Beam-Excited Higher Order Modes. Springer International Publishing AG, 2016.

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19

Zhang, Pei. Beam Diagnostics in Superconducting Accelerating Cavities: The Extraction of Transverse Beam Position from Beam-Excited Higher Order Modes. Springer, 2013.

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20

Oskooei, Saeid G. A higher order finite element for sandwich plate analysis. 1998.

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21

Miller, Steven Scott. Investigation of the higher-order elements in the SAMSON2 code. 1986.

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22

Esche, Harold Arnold *. Higher order elements for the fictitious force indirect boundary element method. 1988.

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23

Wiedemann, Helmut. Particle Accelerator Physics: Part I: Basic Principles and Linear Beam Dynamics / Part II: Nonlinear and Higher-Order Beam Dynamics. 2a ed. Springer, 2003.

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24

Isett, Philip. The Coarse Scale Velocity. Princeton University Press, 2017. http://dx.doi.org/10.23943/princeton/9780691174822.003.0015.

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This chapter deals with the coarse scale velocity. It begins the proof of Lemma (10.1) by choosing a double mollification for the velocity field. Here ∈ᵥ is taken to be as large as possible so that higher derivatives of velement are less costly, and each vsubscript Element has frequency smaller than λ‎ so elementv⁻¹ must be smaller than λ‎ in order of magnitude. Each derivative of vsubscript Element up to order L costs a factor of Ξ‎. The chapter proceeds by describing the basic building blocks of the construction, the choice of elementv and the parametrix expansion for the divergence equation.
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