262 References ră d A n, s.C., 2000. Magnetostratigraphic constraints on the coal bed codification; errors found, Proceed. rom. Acad., Series B, 2, 3: 239-243. Bucharest ră d A n, s.C., 2002. The Earth’s magnetic palaeofield in Tertiary, in magnetostratigraphic context; a brief review of two geomagnetic polarity records recovered from Neogene sedimentary sequences, Proceed. rom. Acad., Series B, 4, 1: 33-39. Bucharest ră d A n, s.C., ră d A n, m., 1996. Magnetostratigraphy as a technique of nomination and correlation of coal beds; two examples from western Dacic Basin (romania), Geologica Carpathica, 47, 3: 174- 176. Bratislava ră d A n, s.C., ră d A n, m., 1998. Study of the geomagnetic field structure in Tertiary in the context of magnetostratigraphic scale elaboration. i - The Pliocene, An. inst. Geol. al româniei, 70: 215- 231 ră d A n, s.C., ră d A n, m., 2001. Study of geomagnetic field in Tertiary in the context of magnetostratigraphic scale elaboration. iii - The Miocene, Proceed. rom. Acad., Series B, 3, 2: 159-165 ră d A n, s.C., ră d A n, m., ră d A n, s., AndreesCu, i., VA n g h e l i e, i., 1996. Magnetostratigraphic and mineralogical study of Dacian-romanian formations from Mehedinţi area: towards the synonymous nomination of lignite beds related to the Motru zone, An. inst. Geol. al româniei, 69, i:, 324-331. Bucharest rădulesCu, C., sA m s o n , P-m., şt i uC ă e., ho r o i, V., 1995. Upper Neogene from the Dacic Basin, Guide to Excursion D, the Xth rCMNS Congress, rom. J. Stratigraphy, 76, 6: 29-48. inst. Geol. al româniei, Bucureşti rő g l, F. 1998a. Paleogeographic considerations for Mediterranean and Paratethys seaways (Oligocene to Miocene) Ann. Naturhist. Mus. Wien., 99A : 279-310 rő g l, F. 1998b. Stratigraphic correlation of the Paratethys Oligocene and Miocene. Mitt. Ges. Geol. Bergbaustud. Osterr., 41 : 65-73. Wien rö g l, F., 1999. Mediterranean and Paratethys. Facts and hypotheses of an Oligocene to Miocene paleogeography (short overview). Geologica Carpathica, 50, 4: 339-349. ru s u, A., 1977. Stratigrafia depozitelor oligocene din nord-vestul Transilvaniei (regiunea Treznea- Hida-Poiana Blenchii). An. ins. Geol. Geofiz., Li: 69-223. Bucureşti sA n d e r s, C. A. e., Andr iessen, P.e.m., Cl o e t h i n g, s.A.P.l., 1999. Life cycle of East Carpathian orogen: erosion history of a doubly vergent critical wedge assessed by fission track thermochronology. Journal of Geophysical research, 104 : 95-112 sA u l e A, e., PoPesCu, i., săndulesCu, J.1969. Atlas litofacial. Vi – Neogen, 1:200.000 (in romanian and in French). institutul Geologic. Bucureşti săndulesCu, m., 1984. Geotectonica româniei. Editura tehnică. 336. Bucureşti săndulesCu, m., 1988. Cenozoic tectonic history of the Carpathians. in: royden, L.H., Horváth, F. (eds), The Pannonian Basin, a Study in Basin Evolution, AAPG Memoirs, 45: 17– 25 sC h m i d, s., Ber noulli, d., Fü g e n s C h u h, B., mA t e n C o, l., sCheFer, s., sChuster, r., tisChler, m., ustAsZewsK i, K., 2008. The Alpine-Carpathian-Dinaridic orogenic system: correlation and evolution of tectonic units, Swiss Journal of Geosciences, 101, 1: 139-183
References simionesCu, i., 1903. Contribuţiuni la geologia Moldovei dintre Siret şi Prut. Acad. rom., Publ. Fond. Adamachi, 9: 31. Bucharest sn e l, e., mă r u n ţ e A n u, m., mA C A l e ţ, r., meulenK AmP, J.e., V A n Vu g t, n. 2006. Late Miocene to Early Pliocene chronostratigraphic framework for the Dacic Basin, romania. Palaeogeography, Palaeoclima- tology, Palaeoecology, Elsevier, 238: 107–124. Amsterdam st o iC A, m., lA Z ă r, i., VAsilieV, i., Kr iJ g s m A n , w., 2007. Mollusc assemblages of the Pontian and Dacian deposits from the Topolog-Argeş area (southern Carpathian foredeep – romania). Les associa- tions de mollusques du Pontien et du Dacien de la région de Topolog-Argeş (avan-fosse carpatique méridionale, roumanie), Geobios, 40: 391-405 st e V A n o V i ć, P. m., 1952. Pontiache Stufe im engeren Sinne – obere Congerienschishten Serbiens und der angrenzenden Gebite. Serb. akad. Wiss., Sonderausgabe 187, math.-naturw. Kl., 2 (n.s.), 187 : 1-361. Beograd st e w A r t , d., 1983. Possible suspended-load channel deposits from the Wealden Group (Lower Cretaceous) of southern England. in: Collinsonj. D., Lewin, J (eds), Modern and ancient fluvial systems. int. Assoc. Sedimentol. Sp. Publ. 6: 369-384 şteFănesCu, s., 1897. Étude sur les terrains tertiaires de roumanie. Contribution a l’étude stratigraphique. Thése. 178. Lille tă r ă P o A n C ă, m., 2004. Architecture, 3-D geometry and tectonic evolution of the Carpathians foreland basin. PhD, 119pp. Vrije Universiteit teisseyre, w., 1907. Guide du iii-ème Congrés international du petrol, 1. Bucharest th o m A s , r.g., sm i t h, d.g., wo o d, J.m., Visser, J., CAVer ley- rA n g e, e.A., Koster e.h., 1987. inclined heterolithic stratification - Terminology, description, interpretation and significance. Sedimentary Geology, 53: 123-179 truBiKhin, V.m., 1989. Paleomagnetic data for the Pontian. in: Stevanovic, P. M., Nevesskaja, L. A., Marinescu, Fl., Sokac, A., Jámbor, Á. (eds), Chronostratigraphie und Neostratotypen. Neogen der Westlichen (“Zentrale”) Paratethys, Pontien. iii: 76–79. Zagreb-Beograd ţA m B r e A , d., 2007. Analiza de subsidenţă şi evoluţia tectonică-termică a depresiunii istria (Marea Neagră). implicaţii în generarea hidrocarburilor. PhD thesis. 121pp. Bucharest University, Faculty of Geology and Geophysics ustAsZewsK i, K., sC h m i d, s., Fü g e n s C h u h, B., tisChler, m., Kissling, e., sP A K m A n, w., 2008. A map-view restoration of the Alpine-Carpathian-Dinaridic system for the Early Miocene, Swiss Journal of Geosciences, 101: 273-294 VA n Vu g t, n., lAngereis, C.g., hi l g e n, F.J., 2001. Orbital forcing in Pliocene – Pleistocene Mediterranean lacustrine deposits: dominant expression of eccentricity versus precession, Palaeogeogr., Palaeoclimatol., Palaeoecol., 172: 193-205 VAsilieV, i., Kr iJ g s m A n , w., lAngereis, C.g., PA n A i o t u, C.e., mA ţ e n C o, l., Be r to t t i, g., 2004. Towards an astrochronological framework for the eastern Paratethys Mio-Pliocene sedimentary sequences of the Focşani basin (romania), Earth Planet. Sci. Letters, 227: 231-247 263
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Dan C. Jipa, Cornel Olariu DACIAN B
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Dedicated to the memory of Prof. Gh
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NATIONAL INSTITUTE OF MARINE GEOLOG
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CONTENTS Foreword and Acknowledgeme
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Contents Chapter 7. The Point Bar F
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FOREwORD AND ACkNOwLEDgEMENTS The s
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PLATE 1. Location of the Dacian Bas
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18 Chapter 1. Dacian Basin. General
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38 Chapter 1. Dacian Basin. General
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The analysis of the paleogeographic
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42 Chapter 2. Dacian Basin paleogeo
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44 Chapter 2. Dacian Basin paleogeo
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46 Chapter 2. Dacian Basin paleogeo
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48 Chapter 2. Dacian Basin paleogeo
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50 Chapter 2. Dacian Basin paleogeo
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52 Chapter 2. Dacian Basin paleogeo
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56 Chapter 2. Dacian Basin paleogeo
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58 FIGURE 2.14. Paleogeography and
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60 Chapter 2. Dacian Basin paleogeo
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62 Chapter 2. Dacian Basin paleogeo
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64 Chapter 2. Dacian Basin paleogeo
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66 Chapter 2. Dacian Basin paleogeo
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68 Chapter 3. Sediment Thickness Di
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Sedimentation in the brackish-water
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84 Chapter 4. Dacian Basin Physiogr
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86 Chapter 4. Dacian Basin Physiogr
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88 Chapter 4. Dacian Basin Physiogr
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90 Chapter 4. Dacian Basin Physiogr
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92 Chapter 4. Dacian Basin Physiogr
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94 Chapter 5. Littoral Sedimentary
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96 Chapter 5. Littoral Sedimentary
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98 Chapter 5. Littoral Sedimentary
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100 Chapter 5. Littoral Sedimentary
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102 Chapter 5. Littoral Sedimentary
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104 Chapter 5. Littoral Sedimentary
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106 Chapter 5. Littoral Sedimentary
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108 Chapter 5. Littoral Sedimentary
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110 Chapter 5. Littoral Sedimentary
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112 Chapter 5. Littoral Sedimentary
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114 Chapter 5. Littoral Sedimentary
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116 Chapter 5. Littoral Sedimentary
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118 Chapter 5. Littoral Sedimentary
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120 Chapter 5. Littoral Sedimentary
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122 Chapter 5. Littoral Sedimentary
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124 Chapter 5. Littoral Sedimentary
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126 Chapter 5. Littoral Sedimentary
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128 Chapter 5. Littoral Sedimentary
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130 Chapter 5. Littoral Sedimentary
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132 Chapter 5. Littoral Sedimentary
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Fluvial sedimentation played a majo
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136 Chapter 6. Upper Neogene Fluvia
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138 Chapter 6. Upper Neogene Fluvia
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140 Chapter 6. Upper Neogene Fluvia
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142 Chapter 6. Upper Neogene Fluvia
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144 Chapter 6. Upper Neogene Fluvia
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146 Chapter 6. Upper Neogene Fluvia
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148 Chapter 6. Upper Neogene Fluvia
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150 Chapter 6. Upper Neogene Fluvia
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152 Chapter 6. Upper Neogene Fluvia
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154 Chapter 6. Upper Neogene Fluvia
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The large and continuous rock expos
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158 Chapter 7. The Point Bar Facies
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160 Chapter 7. The Point Bar Facies
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162 Chapter 7. The Point Bar Facies
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164 Chapter 7. The Point Bar Facies
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166 Chapter 7. The Point Bar Facies
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168 Chapter 7. The Point Bar Facies
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172 Chapter 7. The Point Bar Facies
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176 Chapter 7. The Point Bar Facies
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178 Chapter 7. The Point Bar Facies
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180 Chapter 7. The Point Bar Facies
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182 Chapter 7. The Point Bar Facies
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184 Chapter 7. The Point Bar Facies
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186 Chapter 7. The Point Bar Facies
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188 Chapter 7. The Point Bar Facies
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190 Chapter 8. The Paleoenvironment
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192 Chapter 8. The Paleoenvironment
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194 Chapter 8. The Paleoenvironment
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196 Chapter 8. The Paleoenvironment
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The evolution and architecture of a
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200 Chapter 9. Source-Areas in the
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202 Chapter 9. Source-Areas in the
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204 Chapter 9. Source-Areas in the
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206 Chapter 9. Source-Areas in the
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208 Chapter 9. Source-Areas in the
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210 Chapter 9. Source-Areas in the
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