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         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/2903abf83cc58df6a23661d7a5a17b882/lorisburth",         
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         "url": "https://link.aps.org/doi/10.1103/PhysRevE.74.021403", 
         
         "author": [ 
            "Martin Hecht","Jens Harting","Markus Bier","Jörg Reinshagen","Hans J. Herrmann"
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         "authors": [
         	
            	{"first" : "Martin",	"last" : "Hecht"},
            	{"first" : "Jens",	"last" : "Harting"},
            	{"first" : "Markus",	"last" : "Bier"},
            	{"first" : "Jörg",	"last" : "Reinshagen"},
            	{"first" : "Hans J.",	"last" : "Herrmann"}
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         "volume": "74","number": "2","pages": "021403","abstract": "Dense suspensions of small strongly interacting particles are complex systems that are rarely understood on the microscopic level. We investigate properties of dense suspensions and sediments of small spherical $Al_2O_3$ particles in a shear cell by means of a combined molecular-dynamics and stochastic rotation dynamics simulation. We study structuring effects and the dependence of the suspension&#39;s viscosity on the shear rate and shear thinning for systems of varying salt concentration and $pH$ value. To show the agreement of our results with experimental data, the relation between the bulk $pH$ value and surface charge of spherical colloidal particles is modeled by Debye-H&quot;uckel theory in conjunction with a $2\\rule0.3em0expK$ charge regulation model.",
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         "doi" : "10.1103/PhysRevE.74.021403",
         
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         "author": [ 
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         "volume": "99","number": "17","pages": "176001","abstract": "Surface roughness becomes relevant if typical length scales of the system are comparable to the variations as it is the case in microfluidic setups. Here, an apparent slip is often detected which can have its origin in the misleading assumption of perfectly smooth boundaries. We investigate the problem by means of lattice Boltzmann simulations and introduce an ``effective no-slip plane&#39;&#39; at an intermediate position between peaks and valleys of the surface. Our simulations agree with analytical results for sinusoidal boundaries, but can be extended to arbitrary geometries and experimentally obtained data. We find that the apparent slip is independent of the detailed boundary shape, but only given by the distribution of surface heights. Further, we show that slip diverges as the amplitude of the roughness increases which highlights the importance of a proper treatment of surface variations in very confined geometries.",
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         "label" : "Stability diagram for dense suspensions of model colloidal $Al_2O_3$ particles in shear flow",
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         "author": [ 
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            	{"first" : "Martin",	"last" : "Hecht"},
            	{"first" : "Jens",	"last" : "Harting"},
            	{"first" : "Hans J.",	"last" : "Herrmann"}
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         "volume": "75","number": "5","pages": "051404","abstract": "In $Al_2O_3$ suspensions, depending on the experimental conditions, very different microstructures can be found, comprising fluidlike suspensions, a repulsive structure, and a clustered microstructure. For technical processing in ceramics, the knowledge of the microstructure is of importance, since it essentially determines the stability of a workpiece to be produced. To enlighten this topic, we investigate these suspensions under shear by means of simulations. We observe cluster formation on two different length scales: the distance of nearest neighbors and on the length scale of the system size. We find that the clustering behavior does not depend on the length scale of observation. If interparticle interactions are not attractive the particles form layers in the shear flow. The results are summarized in a stability diagram.",
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         "doi" : "10.1103/PhysRevE.75.051404",
         
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         "journal": "International Journal of Modern Physics C","publisher":"World Scientific Pub Co Pte Lt",
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         ],
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            	{"first" : "JENS",	"last" : "HARTING"},
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         "author": [ 
            "M. Hecht"
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            	{"first" : "M.",	"last" : "Hecht"}
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            	{"first" : "H. J.",	"last" : "Herrmann"},
            	{"first" : "J.",	"last" : "Harting"},
            	{"first" : "M.",	"last" : "Hecht"},
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         "author": [ 
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         "label" : "Anomalous distribution functions in sheared suspensions",
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         "author": [ 
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         ],
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            	{"first" : "J.",	"last" : "Harting"},
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         "label" : "Colloids dragged through a polymer solution: Experiment, theory, and simulation",
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         "url": "https://doi.org/10.1063%2F1.2965127", 
         
         "author": [ 
            "Christof Gutsche","Friedrich Kremer","Matthias Krüger","Markus Rauscher","Rudolf Weeber","Jens Harting"
         ],
         "authors": [
         	
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            	{"first" : "Markus",	"last" : "Rauscher"},
            	{"first" : "Rudolf",	"last" : "Weeber"},
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         "volume": "129","number": "8",
         "doi" : "10.1063/1.2965127",
         
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         "author": [ 
            "F. Janoschek","F. Toschi","J. Harting"
         ],
         "authors": [
         	
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         "volume": "82","number": "5","pages": "056710","abstract": "Human blood flow is a multiscale problem: in first approximation, blood is a dense suspension of plasma and deformable red cells. Physiological vessel diameters range from about one to thousands of cell radii. Current computational models either involve a homogeneous fluid and cannot track particulate effects or describe a relatively small number of cells with high resolution but are incapable to reach relevant time and length scales. Our approach is to simplify much further than existing particulate models. We combine well-established methods from other areas of physics in order to find the essential ingredients for a minimalist description that still recovers hemorheology. These ingredients are a lattice Boltzmann method describing rigid particle suspensions to account for hydrodynamic long-range interactions and---in order to describe the more complex short-range behavior of cells---anisotropic model potentials known from molecular-dynamics simulations. Paying detailedness, we achieve an efficient and scalable implementation which is crucial for our ultimate goal: establishing a link between the collective behavior of millions of cells and the macroscopic properties of blood in realistic flow situations. In this paper we present our model and demonstrate its applicability to conditions typical for the microvasculature.",
         "numpages" : "11",
         
         "doi" : "10.1103/PhysRevE.82.056710",
         
         "bibtexKey": "PhysRevE.82.056710"

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            	{"first" : "Thomas",	"last" : "Zauner"},
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            	{"first" : "Rudolf",	"last" : "Hilfer"},
            	{"first" : "Jens",	"last" : "Harting"}
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         "label" : "Lattice Boltzmann simulations in microfluidics: probing the no-slip boundary condition in hydrophobic, rough, and surface nanobubble laden microchannels",
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         "url": "https://doi.org/10.1007/s10404-009-0506-6", 
         
         "author": [ 
            "Jens Harting","Christian Kunert","Jari Hyväluoma"
         ],
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            	{"first" : "Jens",	"last" : "Harting"},
            	{"first" : "Christian",	"last" : "Kunert"},
            	{"first" : "Jari",	"last" : "Hyväluoma"}
         ],
         "volume": "8","number": "1","pages": "1--10","abstract": "In this contribution, we review recent efforts on investigations of the effect of (apparent) boundary slip by utilizing lattice Boltzmann simulations. We demonstrate the applicability of the method to treat fundamental questions in microfluidics by investigating fluid flow in hydrophobic and rough microchannels as well as over surfaces covered by nano- or microscale gas bubbles.",
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         "doi" : "10.1007/s10404-009-0506-6",
         
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         ],
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            	{"first" : "Martin",	"last" : "Hecht"},
            	{"first" : "Jens",	"last" : "Harting"},
            	{"first" : "Hermann",	"last" : "Nirschl"}
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      {
         "type" : "Publication",
         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/214c849b6f495b4ffcbb61fdda69de5de/lorisburth",         
         "tags" : [
            "fom","scc","sfb716","dfg","jsc","nwo/stw"
         ],
         
         "intraHash" : "14c849b6f495b4ffcbb61fdda69de5de",
         "interHash" : "9abe72fa5a79cb4e9d6a7ff3515c90dd",
         "label" : "From bijels to Pickering emulsions: A lattice Boltzmann study",
         "user" : "lorisburth",
         "description" : "",
         "date" : "2023-09-24 21:51:07",
         "changeDate" : "2023-09-24 21:51:07",
         "count" : 2,
         "pub-type": "article",
         "journal": "Phys. Rev. E","publisher":"American Physical Society",
         "year": "2011", 
         "url": "https://link.aps.org/doi/10.1103/PhysRevE.83.046707", 
         
         "author": [ 
            "Fabian Jansen","Jens Harting"
         ],
         "authors": [
         	
            	{"first" : "Fabian",	"last" : "Jansen"},
            	{"first" : "Jens",	"last" : "Harting"}
         ],
         "volume": "83","number": "4","pages": "046707","abstract": "Particle stabilized emulsions are ubiquitous in the food and cosmetics industry, but our understanding of the influence of microscopic fluid-particle and particle-particle interactions on the macroscopic rheology is still limited. In this paper we present a simulation algorithm based on a multicomponent lattice Boltzmann model to describe the solvents combined with a molecular dynamics solver for the description of the solved particles. It is shown that the model allows a wide variation of fluid properties and arbitrary contact angles on the particle surfaces. We demonstrate its applicability by studying the transition from a ``bicontinuous interfacially jammed emulsion gel&#39;&#39; (bijel) to a ``Pickering emulsion&#39;&#39; in dependence on the contact angle, the particle concentration, and the ratio of the solvents.",
         "numpages" : "11",
         
         "doi" : "10.1103/PhysRevE.83.046707",
         
         "bibtexKey": "PhysRevE.83.046707"

      }
,
      {
         "type" : "Publication",
         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/2edb13264a73e105b07599b29b2bcdccf/lorisburth",         
         "tags" : [
            "scc","icp","jsc"
         ],
         
         "intraHash" : "edb13264a73e105b07599b29b2bcdccf",
         "interHash" : "e1772a617cf1bd6e9e749304ff6c8268",
         "label" : "Lattice Boltzmann simulations of liquid film drainage between smooth surfaces",
         "user" : "lorisburth",
         "description" : "",
         "date" : "2023-09-24 21:49:22",
         "changeDate" : "2023-09-24 21:49:22",
         "count" : 2,
         "pub-type": "article",
         "journal": "IMA Journal of Applied Mathematics",
         "year": "2011", 
         "url": "https://doi.org/10.1093/imamat/hxr001", 
         
         "author": [ 
            "Christian Kunert","Jens Harting"
         ],
         "authors": [
         	
            	{"first" : "Christian",	"last" : "Kunert"},
            	{"first" : "Jens",	"last" : "Harting"}
         ],
         "volume": "76","number": "5","pages": "761-773","abstract": "Exploring the hydrodynamic boundary of a surface by approaching a colloidal sphere and measuring the occurring drag force is a common experimental technique. However, numerous parameters like the wettability and surface roughness influence the result. In experiments, these cannot be separated easily. For a deeper understanding of such surface effects, a tool is required that predicts the influence of different surface properties. In this paper, we present computer simulations based on the lattice Boltzmann method of a sphere submerged in a Newtonian liquid. We show that our method is able to reproduce the theoretical predictions for flat and non-interacting surfaces. In order to provide high-precision simulation results, the influence of finite size effects has to be well controlled. Therefore, we study the influence of the required system size and resolution of the sphere and demonstrate that even moderate computing resources allow the error to be kept below 1\\\\%.",
         "eprint" : "https://academic.oup.com/imamat/article-pdf/76/5/761/1835564/hxr001.pdf",
         
         "issn" : "0272-4960",
         
         "doi" : "10.1093/imamat/hxr001",
         
         "bibtexKey": "10.1093/imamat/hxr001"

      }
,
      {
         "type" : "Publication",
         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/2c95cb288a158892e81fbf2ff9e9b62e9/lorisburth",         
         "tags" : [
            "tu/e","CSC","SSC","icp","nwo","JSC","EPCC","SARA"
         ],
         
         "intraHash" : "c95cb288a158892e81fbf2ff9e9b62e9",
         "interHash" : "2bd97b2add455acd5ee892795954c319",
         "label" : "Rotational behaviour of red blood cells in suspension: a mesoscale simulation study",
         "user" : "lorisburth",
         "description" : "",
         "date" : "2023-09-24 21:47:41",
         "changeDate" : "2023-09-24 21:47:41",
         "count" : 2,
         "pub-type": "article",
         "journal": "Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences","publisher":"The Royal Society",
         "year": "2011", 
         "url": "https://doi.org/10.1098%2Frsta.2011.0086", 
         
         "author": [ 
            "F. Janoschek","F. Mancini","J. Harting","F. Toschi"
         ],
         "authors": [
         	
            	{"first" : "F.",	"last" : "Janoschek"},
            	{"first" : "F.",	"last" : "Mancini"},
            	{"first" : "J.",	"last" : "Harting"},
            	{"first" : "F.",	"last" : "Toschi"}
         ],
         "volume": "369","number": "1944","pages": "2337--2344",
         "doi" : "10.1098/rsta.2011.0086",
         
         "bibtexKey": "Janoschek_2011"

      }
,
      {
         "type" : "Publication",
         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/29fd8e7107d87e73ab608d479047951e4/lorisburth",         
         "tags" : [
            "tu/e","HPC-Europa2","csc","scc","icp","nwo","epcc","jsc","sara"
         ],
         
         "intraHash" : "9fd8e7107d87e73ab608d479047951e4",
         "interHash" : "225a28504cb71caf8885786d0d555aab",
         "label" : "Simulations of Blood Flow in Plain Cylindrical and Constricted Vessels with Single Cell Resolution",
         "user" : "lorisburth",
         "description" : "",
         "date" : "2023-09-24 21:46:34",
         "changeDate" : "2023-09-24 21:46:34",
         "count" : 2,
         "pub-type": "article",
         "journal": "Macromolecular Theory and Simulations","publisher":"Wiley",
         "year": "2011", 
         "url": "https://doi.org/10.1002%2Fmats.201100013", 
         
         "author": [ 
            "Florian Janoschek","Federico Toschi","Jens Harting"
         ],
         "authors": [
         	
            	{"first" : "Florian",	"last" : "Janoschek"},
            	{"first" : "Federico",	"last" : "Toschi"},
            	{"first" : "Jens",	"last" : "Harting"}
         ],
         "volume": "20","number": "7","pages": "562--570",
         "doi" : "10.1002/mats.201100013",
         
         "bibtexKey": "Janoschek_2011"

      }
,
      {
         "type" : "Publication",
         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/2e89e7a7b4626b9f6a97bd8cfbdc672de/lorisburth",         
         "tags" : [
            "scc","icp","dfg","HPC-EUROPA2","aka","jsc","sara"
         ],
         
         "intraHash" : "e89e7a7b4626b9f6a97bd8cfbdc672de",
         "interHash" : "215164fd7d5ff32e31d228f98bd0b5e6",
         "label" : "Simulations of slip flow on nanobubble-laden surfaces",
         "user" : "lorisburth",
         "description" : "",
         "date" : "2023-09-24 21:44:57",
         "changeDate" : "2023-09-24 21:44:57",
         "count" : 2,
         "pub-type": "article",
         "journal": "Journal of Physics: Condensed Matter","publisher":"IOP Publishing",
         "year": "2011", 
         "url": "https://doi.org/10.1088%2F0953-8984%2F23%2F18%2F184106", 
         
         "author": [ 
            "J Hyväluoma","C Kunert","J Harting"
         ],
         "authors": [
         	
            	{"first" : "J",	"last" : "Hyväluoma"},
            	{"first" : "C",	"last" : "Kunert"},
            	{"first" : "J",	"last" : "Harting"}
         ],
         "volume": "23","number": "18","pages": "184106",
         "doi" : "10.1088/0953-8984/23/18/184106",
         
         "bibtexKey": "Hyv_luoma_2011"

      }
	  
   ]
}
