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Transfer Function Models for Cylindrical MC Channels with Diffusion and Laminar Flow [article]

Maximilian Schäfer, Wayan Wicke, Lukas Brand, Rudolf Rabenstein, Robert Schober
<span title="2020-07-03">2020</span> <i > arXiv </i> &nbsp; <span class="release-stage" >pre-print</span>
The modeling procedure is based on a transfer function approach and the main focus lies on the incorporation of laminar flow into the analytical model.  ...  The propagation of particles in these systems is caused by a combination of diffusion and flow with a parabolic velocity profile, i.e., laminar flow.  ...  The CGF in (63) and the representation in terms of transfer functions in (64) provide an analytical description of the MC channel and allow a representation of the channel response in analytical form for  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener" href="https://arxiv.org/abs/2007.01799v1">arXiv:2007.01799v1</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/nlwc24fffnbs3prdikzk4rugsa">fatcat:nlwc24fffnbs3prdikzk4rugsa</a> </span>
<a target="_blank" rel="noopener" href="https://web.archive.org/web/20200710055813/https://arxiv.org/pdf/2007.01799v1.pdf" title="fulltext PDF download" data-goatcounter-click="serp-fulltext" data-goatcounter-title="serp-fulltext"> <button class="ui simple right pointing dropdown compact black labeled icon button serp-button"> <i class="icon ia-icon"></i> Web Archive [PDF] <div class="menu fulltext-thumbnail"> <img src="https://blobs.fatcat.wiki/thumbnail/pdf/d3/09/d30969c5f49a157df97dcd2bf60debe24275410e.180px.jpg" alt="fulltext thumbnail" loading="lazy"> </div> </button> </a> <a target="_blank" rel="external noopener" href="https://arxiv.org/abs/2007.01799v1" title="arxiv.org access"> <button class="ui compact blue labeled icon button serp-button"> <i class="file alternate outline icon"></i> arxiv.org </button> </a>

2021 Index IEEE Transactions on Molecular, Biological and Multi-Scale Communications Vol. 7

<span title="">2021</span> <i title="Institute of Electrical and Electronics Engineers (IEEE)"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/keoxhn4oizfkpmaxjtjpwjmenq" style="color: black;">IEEE Transactions on Molecular Biological and Multi-Scale Communications</a> </i> &nbsp;
Damrath, M., +, TMBMC June 2021 78-82 Transfer Function Models for Cylindrical MC Channels With Diffusion and Radiofrequency interference Laminar Flow.  ...  Transfer Function Models for Cylindrical MC Channels With Diffusion and Hughes, A., +, TMBMC June 2021 89-93 Laminar Flow.  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1109/tmbmc.2021.3134122">doi:10.1109/tmbmc.2021.3134122</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/t5whlcvydzhjxkad25f6h64ucm">fatcat:t5whlcvydzhjxkad25f6h64ucm</a> </span>
<a target="_blank" rel="noopener" href="https://web.archive.org/web/20220106080731/https://ieeexplore.ieee.org/ielx7/6687308/9638593/09648371.pdf?tp=&amp;arnumber=9648371&amp;isnumber=9638593&amp;ref=" title="fulltext PDF download" data-goatcounter-click="serp-fulltext" data-goatcounter-title="serp-fulltext"> <button class="ui simple right pointing dropdown compact black labeled icon button serp-button"> <i class="icon ia-icon"></i> Web Archive [PDF] <div class="menu fulltext-thumbnail"> <img src="https://blobs.fatcat.wiki/thumbnail/pdf/e0/3e/e03eb082d3412411327bb203dfc83753ea70b5ce.180px.jpg" alt="fulltext thumbnail" loading="lazy"> </div> </button> </a> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1109/tmbmc.2021.3134122"> <button class="ui left aligned compact blue labeled icon button serp-button"> <i class="external alternate icon"></i> ieee.com </button> </a>

Modeling of the Interactions Between Catalytic Surfaces and Gas-Phase

Olaf Deutschmann
<span title="2014-11-27">2014</span> <i title="Springer Nature"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/3j7dxgnutzgevnceuf6kcqmnym" style="color: black;">Catalysis Letters</a> </i> &nbsp;
The state-of-the-art modelling of reactive flows and its coupling with the catalytic surface is summarized.  ...  The potentials and limitations of the numerical simulations will be discussed including experimental techniques for model validation.  ...  Acknowledgments The author would like to thank his former and current co-workers at the Karlsruhe Institute of Technology for their dedicated work that led to many of the results shown here.  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1007/s10562-014-1431-1">doi:10.1007/s10562-014-1431-1</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/3typpm4fpbftnojlzneuzck5ry">fatcat:3typpm4fpbftnojlzneuzck5ry</a> </span>
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Computational Fluid Dynamics of Catalytic Reactors [chapter]

Vinod M. Janardhanan, Olaf Deutschmann
<span title="2011-12-12">2011</span> <i title="Wiley-VCH Verlag GmbH &amp; Co. KGaA"> Modeling and Simulation of Heterogeneous Catalytic Reactions </i> &nbsp;
As the flow rate in the channel increases (i.e., high Reynolds number but still laminar), the axial diffusive transport is diminished in comparison to the radial diffusion and the convective transport.  ...  [15] applied the k- model, a presumed (Gaussian) probability density function for gaseous reactions, and a laminar-like closure for surface reactions to study turbulent catalytically stabilized combustion  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1002/9783527639878.ch8">doi:10.1002/9783527639878.ch8</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/nfu3t6spuvfx7k3ifu6ar2ruza">fatcat:nfu3t6spuvfx7k3ifu6ar2ruza</a> </span>
<a target="_blank" rel="noopener" href="https://web.archive.org/web/20170809051031/http://www.itcp.kit.edu/deutschmann/download/book-chapters-not-listed-by-ISI/14_2011_Chapter07_Janardhanan_Deutschmann_CFD_ModelingHeterogeneousCatalyticReactions.pdf" title="fulltext PDF download" data-goatcounter-click="serp-fulltext" data-goatcounter-title="serp-fulltext"> <button class="ui simple right pointing dropdown compact black labeled icon button serp-button"> <i class="icon ia-icon"></i> Web Archive [PDF] <div class="menu fulltext-thumbnail"> <img src="https://blobs.fatcat.wiki/thumbnail/pdf/44/e9/44e9f97f2cb81bc2c1be393f836c1c4e874fb7e7.180px.jpg" alt="fulltext thumbnail" loading="lazy"> </div> </button> </a> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1002/9783527639878.ch8"> <button class="ui left aligned compact blue labeled icon button serp-button"> <i class="external alternate icon"></i> wiley.com </button> </a>

CFD ANALYSIS OF LAMINAR FORCED CONVECTIVE HEAT TRANSFER FOR TiO2/WATER NANOFLUID IN A SEMI-CIRCULAR CROSS-SECTIONED MICRO-CHANNEL

Recep Ekiciler
<span title="2019-03-14">2019</span> <i title="Journal of Thermal Engineering"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/jw7ll4baoral5jjos4yvx6zit4" style="color: black;">Journal of Thermal Engineering</a> </i> &nbsp;
In this study, forced convection flow and heat transfer characteristics of TiO2/water nanofluid flow with different nanoparticle volume fractions (1.0%, 2.0%, 3.0% and 4.0%) in semi -circular cross -sectioned  ...  CFD model has been generated by using ANSYS FLUENT 15.0 software based on finite volume method. The flow was under hydrodynamically and thermally developing flow condition.  ...  [9] for fully developed laminar flow and heat transfer in periodic semi -circular cross -sectioned trapezoidal channels.  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.18186/thermal.540043">doi:10.18186/thermal.540043</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/hki55ubysvesbdj3x4ldoq37bu">fatcat:hki55ubysvesbdj3x4ldoq37bu</a> </span>
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A Molecular Communication System Model for Particulate Drug Delivery Systems

Youssef Chahibi, Massimiliano Pierobon, Sang Ok Song, Ian F. Akyildiz
<span title="">2013</span> <i title="Institute of Electrical and Electronics Engineers (IEEE)"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/nrcoa2vuhjcvfctty6zgus57um" style="color: black;">IEEE Transactions on Biomedical Engineering</a> </i> &nbsp;
This is achieved by modeling the MC channel as two separate contributions, namely, the cardiovascular network model and the drug propagation network.  ...  The study of novel optimization techniques for a more effective and less invasive drug delivery will be aided by this model, while paving the way for novel communication techniques for Intrabody communication  ...  advection and diffusion in the blood flowing through the cardiovascular system as function of the cardiac input q in (t). y(t) = f (I, x(t), q in (t), O) (3) The output of this MC channel is the received  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1109/tbme.2013.2271503">doi:10.1109/tbme.2013.2271503</a> <a target="_blank" rel="external noopener" href="https://www.ncbi.nlm.nih.gov/pubmed/23807425">pmid:23807425</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/vm4zrlfyqvfkjj32ygdjosiku4">fatcat:vm4zrlfyqvfkjj32ygdjosiku4</a> </span>
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Yearly Index of Articles/Papers

<span title="">1962</span> <i title="American Institute of Aeronautics and Astronautics (AIAA)"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/xaz26mlbxjdjnay3azbva3twwe" style="color: black;">Journal of the Aerospace Sciences</a> </i> &nbsp;
Debler and Chia- Shun Yih* Heat Transfer to Laminar Flat-Duct Slip Flow With In- ternal Heat Generation, Robert M. Inman* A Note on Design of a Two-Dimensional Contracting Channel, Y. S.  ...  On the Magnetic Field in MGD Channel Flow* ; BERLOT, ROBERT R Some Explicit Solutions for Con stant-Temperature Magneto-Gasdynamic Channel Flow* BERT, CHARLES W Anisotropic, Complete Stress Function for  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.2514/8.9853">doi:10.2514/8.9853</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/irmqzy5tprh23oa47zadpeiox4">fatcat:irmqzy5tprh23oa47zadpeiox4</a> </span>
<a target="_blank" rel="noopener" href="https://archive.org/details/sim_journal-of-the-aerospace-sciences_1962-12_29_12/page/1491" title="read fulltext microfilm" data-goatcounter-click="serp-fulltext" data-goatcounter-title="serp-fulltext"> <button class="ui simple right pointing dropdown compact black labeled icon button serp-button"> <i class="icon ia-icon"></i> Archive [Microfilm] <div class="menu fulltext-thumbnail"> <img src="https://archive.org/serve/sim_journal-of-the-aerospace-sciences_1962-12_29_12/__ia_thumb.jpg" alt="fulltext thumbnail" loading="lazy"> </div> </button> </a> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.2514/8.9853"> <button class="ui left aligned compact blue labeled icon button serp-button"> <i class="external alternate icon"></i> Publisher / doi.org </button> </a>

An experimental study of air–water Taylor flow and mass transfer inside square microchannels

Jun Yue, Lingai Luo, Yves Gonthier, Guangwen Chen, Quan Yuan
<span title="">2009</span> <i title="Elsevier BV"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/5tgajaqjmrfmnpra5rznxmrvlm" style="color: black;">Chemical Engineering Science</a> </i> &nbsp;
Flow and mass transfer properties under air-water Taylor flow have been investigated in two square microchannels with hydraulic diameters of 400 and 200 m.  ...  film and the liquid slug, which was not in accordance with mass transfer assumptions associated with these correlations.  ...  Rhaphaël Boichot and Mr. Raymond Sedano for assistance with the experiments.  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1016/j.ces.2009.05.026">doi:10.1016/j.ces.2009.05.026</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/kh5oomatxnacfopov4hru5kjfm">fatcat:kh5oomatxnacfopov4hru5kjfm</a> </span>
<a target="_blank" rel="noopener" href="https://web.archive.org/web/20190307101429/http://pdfs.semanticscholar.org/deae/d4f476236f4f4c4f5f10360a44731f755fdb.pdf" title="fulltext PDF download" data-goatcounter-click="serp-fulltext" data-goatcounter-title="serp-fulltext"> <button class="ui simple right pointing dropdown compact black labeled icon button serp-button"> <i class="icon ia-icon"></i> Web Archive [PDF] <div class="menu fulltext-thumbnail"> <img src="https://blobs.fatcat.wiki/thumbnail/pdf/de/ae/deaed4f476236f4f4c4f5f10360a44731f755fdb.180px.jpg" alt="fulltext thumbnail" loading="lazy"> </div> </button> </a> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1016/j.ces.2009.05.026"> <button class="ui left aligned compact blue labeled icon button serp-button"> <i class="external alternate icon"></i> elsevier.com </button> </a>

Experimental verification of mathematical model of the heat transfer in exhaust system

Snezana Petkovic, Radivoje Pesic, Jovanka Lukic
<span title="">2011</span> <i title="National Library of Serbia"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/tmeepammybhehbbosy6lpmotly" style="color: black;">Thermal Science</a> </i> &nbsp;
Measurement installations have been developed and used for verification of the mathematical model of unsteady heat transfer in exhaust systems.  ...  Comparisons between experimental results and the mathematical model are presented in this paper.  ...  Description of the catalyst model In formulating the model of heat transfer in the catalyst during the cold start engine, the following assumptions were taken into account: monolith channel with non-cylindrical  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.2298/tsci110517102p">doi:10.2298/tsci110517102p</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/ekjsmvqbrzcnnerq5q7fs7altq">fatcat:ekjsmvqbrzcnnerq5q7fs7altq</a> </span>
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Establishing the diffuse correlation spectroscopy signal relationship with blood flow

David A. Boas, Sava Sakadžic, Juliette Selb, Parisa Farzam, Maria Angela Franceschini, Stefan A. Carp
<span title="2016-06-13">2016</span> <i title="SPIE-Intl Soc Optical Eng"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/5nspzi7dnrakfng3ccbyybymou" style="color: black;">Neurophotonics</a> </i> &nbsp;
We assumed laminar vessel flow profiles and accounted for shear-induced diffusion effects.  ...  Furthermore, our model offers a quantitative relationship between the RBC diffusion coefficient and absolute tissue blood flow.  ...  P41-EB015896, R01-NS091230, R21-NS093259, and R01-CA187595.  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1117/1.nph.3.3.031412">doi:10.1117/1.nph.3.3.031412</a> <a target="_blank" rel="external noopener" href="https://www.ncbi.nlm.nih.gov/pubmed/27335889">pmid:27335889</a> <a target="_blank" rel="external noopener" href="https://pubmed.ncbi.nlm.nih.gov/PMC4904065/">pmcid:PMC4904065</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/xg6mjwfwtbdf7mj4ygejwsisfm">fatcat:xg6mjwfwtbdf7mj4ygejwsisfm</a> </span>
<a target="_blank" rel="noopener" href="https://web.archive.org/web/20180723013620/https://www.spiedigitallibrary.org/journals/Neurophotonics/volume-3/issue-3/031412/Establishing-the-diffuse-correlation-spectroscopy-signal-relationship-with-blood-flow/10.1117/1.NPh.3.3.031412.pdf" title="fulltext PDF download" data-goatcounter-click="serp-fulltext" data-goatcounter-title="serp-fulltext"> <button class="ui simple right pointing dropdown compact black labeled icon button serp-button"> <i class="icon ia-icon"></i> Web Archive [PDF] <div class="menu fulltext-thumbnail"> <img src="https://blobs.fatcat.wiki/thumbnail/pdf/c0/15/c01565b4fd12ae451e2613a6483170a8174e77d6.180px.jpg" alt="fulltext thumbnail" loading="lazy"> </div> </button> </a> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.1117/1.nph.3.3.031412"> <button class="ui left aligned compact blue labeled icon button serp-button"> <i class="unlock alternate icon" style="background-color: #fb971f;"></i> Publisher / doi.org </button> </a> <a target="_blank" rel="external noopener" href="https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4904065" title="pubmed link"> <button class="ui compact blue labeled icon button serp-button"> <i class="file alternate outline icon"></i> pubmed.gov </button> </a>

Applications of Heat Transfer Enhancement Techniques: A State-of-the-Art Review [chapter]

Suvanjan Bhattacharyya, Devendra K. Vishwakarma, Sanghati Roy, Ranjib Biswas, Mohammad Moghimi Ardekani
<span title="2020-12-02">2020</span> <i title="IntechOpen"> Inverse Heat Conduction and Heat Exchangers </i> &nbsp;
The fundamentals of heat transfer and its applications, the classification of heat transfer technology and different heat transfer techniques, and the needs for augmentation and its benefits and the different  ...  combinations of two or more inserts and integral roughness elements for heat transfer augmentation purpose have been introduced and discussed in this chapter.  ...  and temperature can be predicted, renormalization is used to determine the eddy diffusion in turbulence flow, intermittency model was developed for studying the laminar boundary transition at supersonic  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener noreferrer" href="https://doi.org/10.5772/intechopen.92873">doi:10.5772/intechopen.92873</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/st6zpnrz7ncu7kmo4qyiixfdni">fatcat:st6zpnrz7ncu7kmo4qyiixfdni</a> </span>
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A Survey on Estimation Schemes in Molecular Communications [article]

Xinyu Huang, Yuting Fang, Nan Yang
<span title="2021-03-22">2021</span> <i > arXiv </i> &nbsp; <span class="release-stage" >pre-print</span>
., distance, diffusion coefficient, and flow velocity) and channel estimation.  ...  (i.e. the parameters excluding distance), and iii) channel estimation that focuses on the channel impulse response (CIR).  ...  [3] provided a tutorial review on mathematical channel modeling for diffusive MC systems.  ... 
<span class="external-identifiers"> <a target="_blank" rel="external noopener" href="https://arxiv.org/abs/2103.11564v1">arXiv:2103.11564v1</a> <a target="_blank" rel="external noopener" href="https://fatcat.wiki/release/arczj4ehbjht3ft3msvwd74nfu">fatcat:arczj4ehbjht3ft3msvwd74nfu</a> </span>
<a target="_blank" rel="noopener" href="https://web.archive.org/web/20210327035233/https://arxiv.org/pdf/2103.11564v1.pdf" title="fulltext PDF download" data-goatcounter-click="serp-fulltext" data-goatcounter-title="serp-fulltext"> <button class="ui simple right pointing dropdown compact black labeled icon button serp-button"> <i class="icon ia-icon"></i> Web Archive [PDF] <div class="menu fulltext-thumbnail"> <img src="https://blobs.fatcat.wiki/thumbnail/pdf/3c/e0/3ce0bea58473a2bd15cb604049b294a8c77fd6ce.180px.jpg" alt="fulltext thumbnail" loading="lazy"> </div> </button> </a> <a target="_blank" rel="external noopener" href="https://arxiv.org/abs/2103.11564v1" title="arxiv.org access"> <button class="ui compact blue labeled icon button serp-button"> <i class="file alternate outline icon"></i> arxiv.org </button> </a>

Carbon Nanotubes in a Fluidic Medium: Critical Analysis [chapter]

Maria Alexandra, Sylvio Freitas, Bruno Lamas, Bruno Abreu, Hugo Calisto, Nelson Martins, Monica Oliveir
<span title="2013-02-27">2013</span> <i title="InTech"> Physical and Chemical Properties of Carbon Nanotubes </i> &nbsp;
Author details Maria "lexandra Fonseca , , Sylvio Freitas , "runo Lamas , , "runo "breu , , Hugo Calisto , , Nelson Martins and Mónica Oliveira TEM" ª Centre for Mechanical Technology and "utomation, Portugal  ...  Physical and Chemical Properties of Carbon Nanotubes  ...  "mrohalli et al. [ ] evaluated the convective heat transfer enhancement of functionalized MWCNT/water nanofluids for both laminar and turbulent flow modes.  ... 
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Approximate solution to predict the enhancement factor for the reactive absorption of a gas in a liquid flowing through a microporous membrane hollow fiber

P Kumar
<span title="2003-03-01">2003</span> <i title="Elsevier BV"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/wgys7g46zzb63h6czuhfpqlkou" style="color: black;">Journal of Membrane Science</a> </i> &nbsp;
Approximate solution to predict the enhancement factor for the reactive absorption of a gas in a liquid flowing through a microporous membrane hollow fiber Kumar, P.S.; Hogendoorn, J.A.; Feron, P.H.M.;  ...  Acknowledgements This research is part of the research programme carried out within the Centre for Separation Technology, a cooperation between the University of Twente and TNO, The Netherlands Organization  ...  for Applied Scientific Research.  ... 
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Numerical simulation of power-law fluids flow and heat transfer in a parallel-plate channel with transverse rectangular cavities

Mehrzad Mirzaei Nejad, K. Javaherdeh
<span title="">2014</span> <i title="Elsevier BV"> <a target="_blank" rel="noopener" href="https://fatcat.wiki/container/mqlz4d5birenpa46dn6rvpt5ci" style="color: black;">Case Studies in Thermal Engineering</a> </i> &nbsp;
It is aimed to study forced convection heat transfer for non-Newtonian power-law fluids in a parallel-plate channel with transverse rectangular cavities numerically.  ...  A finite volume based computation was performed using power-law discretization scheme and SIMPLE algorithm. The flow is assumed to be two-dimensional, incompressible, laminar and steady.  ...  [12] numerically studied the heat transfer and pressure drop characteristics of laminar air flows flowing in a parallel plate channel with transverse hemi-cylindrical cavities.  ... 
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