1- Şahin AD. Progress and recent trends in wind energy. Progress in energy and combustion science. 2004 Jan 1; 30(5):501-43.
2- Weitkamp R, Hinz U, Schäfer S, inventors; Envion SE, assignee. Tower for a wind power station. United States patent US 7,276,808. 2007 Oct 2.
3- Muskulus M. The full-height lattice tower concept. Energy Procedia. 2012 Jan 1; 24:371-7.
4- Gencturk B, Attar A, Tort C. Optimal design of lattice wind turbine towers. In15th World Conference on Earthquake Engineering 2012 Sep (pp. 24-28).
5- Al-Bermani FG, Kitipornchai S. Nonlinear analysis of transmission towers. Engineering Structures. 1992 Jan 1; 14(3):139-51.
6- Al-Bermani FG, Kitipornchai S. Elastoplastic nonlinear analysis of flexibly jointed space frames. Journal of Structural Engineering. 1992 Jan; 118(1):108-27.
7- Albermani F, Kitipornchai S, Chan RW. Failure analysis of transmission towers. Engineering Failure Analysis. 2009 Sep 1; 16(6):1922-8.
8- Knight GM, Santhakumar AR. Joint effects on behavior of transmission towers. Journal of Structural Engineering. 1993 Mar; 119(3):698-712.
9- Ungkurapinan N. A study of joint slip in galvanized bolted angle connections. PhD diss., University of Manitoba, 2000.
10- Ahmed KI, Rajapakse RK, Gadala MS. Influence of bolted-joint slippage on the response of transmission towers subjected to frost-heave. Advances in Structural Engineering. 2009 Feb; 12(1):1-7.
11- Yaghoobi S, Shooshtari A. Joint slip investigation based on finite element modelling verified by experimental results on wind turbine lattice towers. Frontiers of Structural and Civil Engineering. 2018 Sep 1; 12(3):341-51.
12- Yaghoobi S, Shooshtari A. Joint Slip Formulation Based on Experimental Results in Wind Turbine Lattice Towers. Journal of Structural Engineering. 2018 Jun 1; 144(6):04018058.
13- Ungkurapinan N, Chandrakeerthy SD, Rajapakse RK, Yue SB. Joint slip in steel electric transmission towers. Engineering Structures. 2003 May 1; 25(6):779-88.
14- AISC 341-10. Seismic provisions for structural steel buildings. American Institute of Steel Construction. 2010.
15- Canadian Highway Bridge Design Code (CHBDC). Supplement# 1 to CAN/CSA-S6-06, Canadian Highway Bridge Design Code (CHBDC). CSA S6S1-10. 2010.
16- Bolts AH. Shop install high-strength bolts according to RCSC's" Specification for Structural Joints Using ASTM A 325 or A 490 Bolts" for type of bolt and type of joint specified. 1. Joint Type: Snug tightened.
17- Lloyd G. Rules and Guidelines IV, Industrial Services 1, Guideline for the Certification of Wind Turbines. Germanischer Lloyd Industrial Services GmbH, Hamburg, Germany. 2003.
18- Kulak GL, Fisher JW, Struik JH. Guide to Design Criteria for Bolted and Riveted Joints Second Edition.